Multilayer network connection communication system, smart terminal device, and communication method therefor
Abstract
Problem to be solved.To provide a multi-layer network connection communication system capable of providing a temporary Internet service to a user, a smart terminal device, and a communication method thereof. A mobile device 110 sends an inquiry message over a first layer network 140 to inquire whether the smart terminal device 120 supports at least one first application. The smart terminal device can support at least one second application in the first application. The smart terminal device sends at least one activation message over the first layer network to request the mobile device to launch the second application. The smart terminal device receives the user data from the mobile device via the first layer network and sends the user data to the server 130 via the second layer network 150. [Selection diagram] Fig. 1

Term
6.9 yearsto projected expiry
Projected expiry 7 August 2033, counted from filing; an application has no term until it is granted.
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34 claims: 7 independent, 27 dependent
- 1モバイルデバイスと、 スマート端末装置と、 サーバーと、 前記モバイルデバイスと前記スマート端末装置の間の第1接続を確立する第1層ネットワークと、 前記スマート端末装置と前記サーバーの間の第2接続を確立する第2層ネットワークと を含み、前記モバイルデバイスが、少なくとも1つの照会メッセージを送信して、前記スマート端末装置が少なくとも1つの第1アプリケーションをサポートしているかどうかを照会し、 前記スマート端末装置が、前記少なくとも1つの照会メッセージを受信し、且つ前記少なくとも1つの照会メッセージに基づいて、前記少なくとも1つの第1アプリケーションをサポートしているかどうか検査し、前記スマート端末装置が、前記少なくとも1つの第1アプリケーションの中の少なくとも1つの第2アプリケーションをサポートすることができ、前記少なくとも1つの第2アプリケーションが、第3アプリケーションを含み、 前記スマート端末装置が、少なくとも1つの起動メッセージを送信して、前記少なくとも1つの第2アプリケーションを起動するよう前記モバイルデバイスに要求し、前記第3アプリケーションが、前記少なくとも1つの起動メッセージに応答するために起動され、 前記スマート端末装置が、前記第1層ネットワークを介して前記モバイルデバイスから前記第3アプリケーションが送信したユーザーデータを受信し、 前記スマート端末装置が、前記第2ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信する多層ネットワーク接続通信システム。
- 2前記スマート端末装置が、エリアサービス情報を前記第3アプリケーションが送信した前記ユーザーデータに追加し、且つ前記スマート端末装置が、さらに、前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータと前記エリアサービス情報を前記サーバーに一括送信する請求項1に記載の多層ネットワーク接続通信システム。
- 3前記スマート端末装置が、さらに、前記モバイルデバイスの識別コードに基づいて前記サーバーにおいて認証プロセスまたは支払プロセスを行う請求項1に記載の多層ネットワーク接続通信システム。
- 4前記第3アプリケーションを起動した後、前記モバイルデバイスが、送信待ちのデータがあるかどうかを検査する請求項1に記載の多層ネットワーク接続通信システム。
- 5前記送信待ちのデータがある場合、前記モバイルデバイスが、前記送信待ちのデータを暗号化して前記ユーザーデータを生成する請求項4に記載の多層ネットワーク接続通信システム。
- 6前記スマート端末装置が、前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーが、さらに、前記ユーザーデータに基づいてステータスを更新するとともに、前記スマート端末装置にステータス更新情報を送信し、且つ前記スマート端末装置が、前記モバイルデバイスに前記ステータス更新情報を送信する請求項1に記載の多層ネットワーク接続通信システム。
- 7前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーが前記ユーザーデータを解読して、さらに、解読した前記ユーザーデータに基づいてステータスを更新するとともに、前記スマート端末装置にステータス更新情報を送信し、且つ前記スマート端末装置が、前記モバイルデバイスに前記ステータス更新情報を送信する請求項5に記載の多層ネットワーク接続通信システム。
- 8前記第3アプリケーションを起動した後、前記モバイルデバイスが、さらに、前記第3アプリケーションに対応するIDとパスワードを入力し、前記ユーザーデータが、前記IDと前記パスワードを含み、且つ前記サーバーが、さらに、前記ユーザーデータの中の前記IDおよび前記パスワードに基づいてアカウント認証プロセスを行う請求項1に記載の多層ネットワーク接続通信システム。
- 9前記第1接続が、近距離情報接続を含む請求項1に記載の多層ネットワーク接続通信システム。
- 10前記第2接続が、無線ネットワーク接続または有線ネットワーク接続を含む請求項1に記載の多層ネットワーク接続通信システム。
- 11第1層ネットワークを介してモバイルデバイスを検出し、且つ前記第1層ネットワークと前記モバイルデバイスを介して第1接続を確立する第1ネットワークモジュールと、 アプリケーションサポートモジュールと、 前記モバイルデバイスから少なくとも1つの照会メッセージを受信するメッセージ送受信モジュールと、 第2層ネットワークを介して第2接続を確立し、且つ前記第2層ネットワークを介して第3アプリケーションが送信したユーザーデータをサーバーに送信する第2ネットワークモジュールと を含み、前記少なくとも1つの照会メッセージが、スマート端末装置が少なくとも1つの第1アプリケーションをサポートしているかどうかを照会し、 前記アプリケーションサポートモジュールが、前記少なくとも1つの照会メッセージに基づいて、前記少なくとも1つの第1アプリケーションをサポートしているかどうかを検査し、前記スマート端末装置が、前記少なくとも1つの第1アプリケーションの中の少なくとも1つの第2アプリケーションをサポートすることができ、前記少なくとも1つの第2アプリケーションが、第3アプリケーションを含み、 前記メッセージ送受信モジュールが、少なくとも1つの起動メッセージを送信して、前記少なくとも1つの第2アプリケーションを起動するよう前記モバイルデバイスに要求し、前記第3アプリケーションが、前記少なくとも1つの起動メッセージに応答するために起動され、 前記メッセージ送受信モジュールが、前記第1層ネットワークを介して前記モバイルデバイスから前記第3アプリケーションが送信したユーザーデータを受信するスマート端末装置。
- 12前記第2ネットワークモジュールが、エリアサービス情報を前記第3アプリケーションが送信した前記ユーザーデータに追加し、且つ前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータと前記エリアサービス情報を前記サーバーに一括送信する請求項11に記載のスマート端末装置。
- 13前記スマート端末装置が、さらに、 前記モバイルデバイスの識別コードに基づいて前記サーバーにおいて認証プロセスまたは支払プロセスを行う識別モジュールを含む請求項11に記載のスマート端末装置。
- 14前記スマート端末装置が、さらに、 前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーからステータス更新情報を受信し、且つ前記モバイルデバイスに前記ステータス更新情報を送信する情報更新モジュールを含む請求項11に記載のスマート端末装置。
- 15前記第1ネットワークモジュールが、さらに、前記モバイルデバイスからオフラインメッセージを受信し、且つ前記モバイルデバイスが確立した前記第1接続を中断して、前記オフラインメッセージに応答する請求項11に記載のスマート端末装置。
- 16前記第1接続が、近距離情報接続を含む請求項11に記載のスマート端末装置。
- 17前記第2接続が、無線ネットワーク接続または有線ネットワーク接続を含む請求項11に記載のスマート端末装置。
- 18第1層ネットワークを介してモバイルデバイスとスマート端末装置の間の第1接続を確立することと、 前記モバイルデバイスにより少なくとも1つの照会メッセージを送信して、前記スマート端末装置が前記少なくとも1つの第1アプリケーションをサポートしているかどうかを照会することと、 前記スマート端末装置が前記少なくとも1つの照会メッセージを受信し、且つ前記少なくとも1つの照会メッセージに基づいて前記少なくとも1つの第1アプリケーションをサポートしているかどうかを検査し、前記スマート端末装置が、前記少なくとも1つの第1アプリケーションの中の少なくとも1つの第2アプリケーションをサポートすることができ、前記少なくとも1つの第2アプリケーションが、第3アプリケーションを含むことと、 前記スマート端末装置により少なくとも1つの起動メッセージを送信して、前記少なくとも1つの第2アプリケーションを起動するよう前記モバイルデバイスに要求し、前記第3アプリケーションが、前記少なくとも1つの起動メッセージに応答するために起動されることと、 前記スマート端末装置により前記第1層ネットワークを介して前記モバイルデバイスから前記第3アプリケーションが送信したユーザーデータを受信することと、 第2層ネットワークを介して前記スマート端末装置とサーバーの間の第2接続を確立することと、 前記スマート端末装置により前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信することと を含む多層ネットワーク接続通信方法。
- 19前記スマート端末装置により前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信する前記ステップが、 前記スマート端末装置によりエリアサービス情報を前記第3アプリケーションが送信した前記ユーザーデータに追加することと、 前記スマート端末装置により前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータと前記エリアサービス情報を前記サーバーに一括送信することと を含む請求項18に記載の多層ネットワーク接続通信方法。
- 20前記スマート端末装置により、前記モバイルデバイスの識別コードに基づいて前記サーバーにおいて認証プロセスまたは支払プロセスを行うことをさらに含む請求項18に記載の多層ネットワーク接続通信方法。
- 21前記第3アプリケーションを起動した後、前記モバイルデバイスにより送信待ちのデータがあるかどうかを検査することをさらに含む請求項18に記載の多層ネットワーク接続通信方法。
- 22前記送信待ちのデータがある場合、前記モバイルデバイスにより前記送信待ちのデータを暗号化して、前記ユーザーデータを生成することをさらに含む請求項21に記載の多層ネットワーク接続通信方法。
- 23前記スマート端末装置により前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーにより、前記ユーザーデータに基づいてステータスを更新するとともに、前記スマート端末装置にステータス更新情報を送信することと、 前記スマート端末装置により前記モバイルデバイスに前記ステータス更新情報を送信することと をさらに含む請求項18に記載の多層ネットワーク接続通信方法。
- 24前記スマート端末装置により前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーにより前記ユーザーデータを解読し、さらに解読した前記ユーザーデータに基づいてステータスを更新するとともに、前記スマート端末装置にステータス更新情報を送信することと、 前記スマート端末装置により前記モバイルデバイスに前記ステータス更新情報を送信することと をさらに含む請求項22に記載の多層ネットワーク接続通信方法。
- 25前記第3アプリケーションを起動した後、前記モバイルデバイスにより前記第3アプリケーションに対応するIDとパスワードを入力し、前記ユーザーデータが、前記IDと前記パスワードを含むことと、 前記サーバーにより前記ユーザーデータの中の前記IDおよび前記パスワードに基づいてアカウント認証プロセスを行うことと をさらに含む請求項18に記載の多層ネットワーク接続通信方法。
- 26前記第1層ネットワークを介して前記モバイルデバイスと前記スマート端末装置の間の前記第1接続を確立する前記ステップが、さらに、 前記第1層ネットワークを介して前記モバイルデバイスと前記スマート端末装置の間の近距離情報接続を確立することを含む請求項18に記載の多層ネットワーク接続通信方法。
- 27前記第2層ネットワークを介して前記スマート端末装置と前記サーバーの間の前記第2接続を確立する前記ステップが、さらに、 前記第2層ネットワークを介して前記スマート端末装置と前記サーバーの間の無線ネットワーク接続または有線ネットワーク接続を確立することを含む請求項18に記載の多層ネットワーク接続通信方法。
- 28第1層ネットワークを介してモバイルデバイスを検出することと、 前記第1層ネットワークと前記モバイルデバイスを介して第1接続を確立して、前記モバイルデバイスから少なくとも1つの照会メッセージを受信し、前記少なくとも1つの照会メッセージが、少なくとも1つの第1アプリケーションをサポートしているかどうかを照会することと、 前記少なくとも1つの照会メッセージに基づいて、前記少なくとも1つの第1アプリケーションをサポートしているかどうかを検査することと、 少なくとも1つの起動メッセージを送信して、前記少なくとも1つの第1アプリケーションの中でサポートすることのできる少なくとも1つの第2アプリケーションを起動するよう前記モバイルデバイスに要求し、前記少なくとも1つの第2アプリケーションが、第3アプリケーションを含み、前記第3アプリケーションが、前記起動メッセージに応答するために起動されることと、 前記第1層ネットワークを介して前記モバイルデバイスから前記第3アプリケーションが送信したユーザーデータを受信することと、 第2層ネットワークを介して第2接続を確立し、且つ前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータをサーバーに送信することと を含む多層ネットワーク接続通信方法。
- 29前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信する前記ステップが、 エリアサービス情報を前記第3アプリケーションが送信した前記ユーザーデータに追加することと、 前記第2層ネットワークを介して前記第3アプリケーションが送信した前記ユーザーデータと前記エリアサービス情報を前記サーバーに一括送信することと を含む請求項28に記載の多層ネットワーク接続通信方法。
- 30前記モバイルデバイスの識別コードに基づいて前記サーバーにおいて認証プロセスまたは支払プロセスを行うことをさらに含む請求項28に記載の多層ネットワーク接続通信方法。
- 31前記第3アプリケーションが送信した前記ユーザーデータを前記サーバーに送信した後、前記サーバーからステータス更新情報を受信し、且つ前記モバイルデバイスに前記ステータス更新情報を送信することをさらに含む請求項28に記載の多層ネットワーク接続通信方法。
- 32前記モバイルデバイスからオフラインメッセージを受信すること、 前記モバイルデバイスが確立した前記第1接続を中断して、前記オフラインメッセージに応答することと をさらに含む請求項28に記載の多層ネットワーク接続通信方法。
- 33前記第1層ネットワークを介して前記モバイルデバイスと前記第1接続を確立する前記ステップが、さらに、 前記第1層ネットワークを介して前記モバイルデバイスと近距離情報接続を確立することを含む請求項28に記載の多層ネットワーク接続通信方法。
- 34前記第2層ネットワークを介して前記スマート端末装置と前記第2接続を確立する前記ステップが、さらに、 前記第2層ネットワークを介して前記スマート端末装置と無線ネットワーク接続または有線ネットワーク接続を確立することを含む請求項28に記載の多層ネットワーク接続通信方法。
Independent claims34
61 paragraphs, as filed
The present invention relates to a multi-layer network connection communication system, a smart terminal device, and a communication method thereof.
As Internet usage on smartphones has increased, users have become able to interact and share information on social networks and emails anytime, anywhere. Users can not only share their status and location with close friends by checking in, but also share the fun of life by knowing the status of close friends in the same way. be able to. In addition, recently, many stores allow users to receive preferential product services by check-in, and at the same time, sharing information on social networks can be effective in marketing.
<p> However, when the user checks in or sends and receives e-mail, for example, if the user does not subscribe to a plan that allows unlimited use of 3G data communication (commonly known as 3G unlimited data plan). Internet is not available in situations such as when the user is abroad and has not turned on internet roaming due to high cost, or when the user cannot connect to the internet using Wi-Fi. Is. Also, when a user wants to check in a location abroad or find a special service at a nearby store, he / she may not be able to find the necessary data from the list due to lack of language.</p>
<p> The present invention provides a multi-layer network connection communication system, a smart terminal device, and a communication method thereof that can provide a temporary Internet service to a user.</p><p> The present invention provides a multi-layer network connection communication system including a mobile device, a smart terminal device, a server, a first-layer network, and a second-layer network. Mobile devices and smart terminals establish a first connection over a first layer network. The smart terminal device and server establish a second connection via the second layer network. The mobile device sends at least one query message to query whether the smart device supports at least one primary application. The smart terminal device receives the inquiry message and checks whether or not the first application described above is supported based on the inquiry message. Among them, the smart terminal device can support at least one second application in the first application, and the second application includes the third application. The smart terminal device sends at least one activation message requesting the mobile device to launch the second application. Among them, the third application is started in order to respond to the start message. The smart terminal device receives the user data transmitted by the third application from the mobile device via the first layer network, and transmits the user data transmitted by the third application via the second network to the server.</p><p> The present invention provides a smart terminal device including a first network module, an application support module, a message sending module, a message receiving module, and a second network module. The first network module detects the mobile device via the first layer network and establishes the first connection via the first layer network and the mobile device. The message send / receive module receives at least one inquiry message from the mobile device. Among them, the inquiry message inquires whether the smart terminal device supports at least one first application. The application support module checks whether or not the first application is supported based on the inquiry message. Among them, the smart terminal device can support at least one second application in the first application, and the second application includes the third application. The message sending module sends at least one launch message to request the mobile device to launch the second application. Among them, the third application is started in order to respond to the start message. The message receiving module receives user data sent by the third application from the mobile device via the first layer network. The second network module establishes a second connection via the second layer network, and further transmits user data transmitted by the third application via the second layer network to the server.</p><p> The present invention provides a multi-layer network connection communication method including the following steps. First, a first connection is established between the mobile device and the smart terminal device via the first layer network. The mobile device sends at least one query message to query whether the smart device supports at least one primary application. The smart terminal device receives at least one inquiry message and checks whether the first application is supported based on the inquiry message. Among them, the smart terminal device can support at least one second application in the first application, and the second application includes the third application. The smart terminal device sends at least one launch message requesting the mobile device to launch the second application. Among them, the third application is started to respond to the at least one start message. The smart terminal device receives the user data transmitted by the third application from the mobile device via the first layer network. Subsequently, the second connection between the smart terminal device and the server is established via the second layer network, and the user data transmitted by the third application via the second layer network is transmitted to the server by the smart terminal device. ..</p><p> The present invention provides a multi-layer network connection communication method including the following steps. First, it detects mobile devices via the first layer network. It then establishes a first connection over the first layer network and the mobile device and receives at least one inquiry message from the mobile device. Among them, the inquiry message inquires whether or not at least one first application is supported. Then, based on the inquiry message, it checks whether the first application is supported and sends at least one launch message to request the mobile device to launch the second application. Among them, the third application is started in order to respond to the start message. Subsequently, the user data transmitted by the third application is received from the mobile device via the first layer network. The second connection is established via the second layer network, and the user data transmitted by the third application via the second layer network is transmitted to the server.</p>
<p> As described above, the multi-layer network connection communication system, the smart terminal device and its communication method provided by the present invention have a two-layer network structure, and the smart terminal device is supported via the first layer network. The mobile device can be requested to launch the launched application, and the mobile device can transmit the user data of the launched application to the smart terminal device via the first layer network. Further, the smart terminal device can update the data by transmitting the user data to the server via the second layer network. Under this multi-layer network connection communication system structure, the smart terminal device can provide a temporary Internet service to the mobile device even if the user's mobile device does not have the Internet function.</p><p> To better understand the above and other objects, features, and advantages of the present invention, some embodiments in conjunction with the drawings are described below.</p>
<figref num="1">It is a multi-layer network connection communication system according to one embodiment of the present invention.</figref><figref num="2">It is a schematic block diagram of the smart terminal apparatus which concerns on one Embodiment of this invention.</figref><figref num="3">It is a data flow diagram of the multilayer network connection communication method which concerns on 1st Embodiment of this invention.</figref><figref num="4">It is a flowchart of the multilayer network connection communication method which concerns on 1st Embodiment of this invention.</figref><figref num="5">It is a data flow diagram of the multilayer network connection communication method which concerns on 2nd Embodiment of this invention.</figref><figref num="6">It is a flowchart of the multilayer network connection communication method which concerns on 2nd Embodiment of this invention.</figref><figref num="7">It is a data flow diagram of the multilayer network connection communication method which concerns on 3rd Embodiment of this invention.</figref><figref num="8">It is a flowchart of the multilayer network connection communication method which concerns on 3rd Embodiment of this invention.</figref>
FIG. 1 shows a multi-layer network connection communication system according to one embodiment of the present invention, but it is used for convenience of explanation and does not limit the present invention.
Referring to FIG. 1, the multi-layer network connection communication system 100 includes a mobile device 110, a smart terminal device 120, a server 130, a first layer network 140, and a second layer network 150.
In the present embodiment, the mobile device 110 may be a smartphone having a D2D (device-to-device) transmission function such as infrared (infrared), Bluetooth (bluetooth), and near field communication (NFC). Good. In other embodiments, the mobile device may be an electronic device such as a tablet PC (tablet personal computer, tablet PC), PDA (personal digital assistance), laptop computer or digital camera, and further, RFID (radio frequency). It may be an identification card, a Mifare card, or a smart card such as FeliCa.
The server 130 is an application server and can provide an environment for executing applications. In this embodiment, the application server may be, for example, an application server that provides an e-mail such as Gmail or a social network such as Facebook or Twitter.
The smart terminal device 120 provides multi-layer network connection communication so that the mobile device 110 can connect to the server 130 via the multi-layer network.
To give an example, the smart terminal device 120 can be used for wireless network connections such as WiMAX communication protocol, Wi-Fi communication protocol, 2G communication protocol, 3G communication protocol or 4G communication protocol, ADSL broadband or fiber network, etc. Not only can it provide a wired network connection, but it can also provide a short-range communication connection such as the above-mentioned D2D transmission function.
The first layer network 140 is connected to the mobile device 110 and the smart terminal device 120. That is, the smart terminal device 120 establishes a connection via the first layer network 140 and the mobile device 110. Here, the connection between the smart terminal device 120 and the mobile device 110 is referred to as a "first connection". In the present embodiment, this first connection is a short-range communication connection, that is, the smart terminal device 120 utilizes an infrared, Bluetooth, NFC or Wi-Fi Direct method and a mobile device 110. To establish the first connection.
The second layer network 150 is connected to the smart terminal device 120 and the server 130. That is, the smart terminal device 120 establishes a connection via the second layer network 150 and the server 130. Here, the connection between the smart terminal device 120 and the server 130 is referred to as a "second connection". In this embodiment, the second connection is a wireless network connection or a wired network connection, that is, the smart terminal device 120 and the server 130 have a WiMAX communication protocol, a Wi-Fi communication protocol, a 2G communication protocol, a 3G communication protocol or a 4G. Establish a second connection using wireless network connections such as communication protocols, or ADSL broadband or fiber optic network methods.
Under the structure of the multi-layer network connection communication system 100 described above, the smart terminal device 120 can connect to the server 130 even when the mobile device 110 itself does not have network support.
FIG. 2 is a schematic block diagram of a smart terminal device according to one embodiment of the present invention.
Referring to FIGS. 1 and 2 at the same time, the smart terminal device 120 includes a processor circuit 202, a memory circuit 204, a first network module 210, an application support module 220, a message transmission / reception module 235, and a second network module 250. And include.
The processor circuit 202 controls the overall operation of the smart terminal device 120.
The memory circuit 204 is connected to the processor circuit 202 and stores data. For example, memory circuit 204 is a flash memory or other suitable storage device.
The first network module 210 detects whether or not it is connected to the processor circuit 202 and the mobile device 110 is within a range in which the connection can be established. In addition, the first network module 210 of the present embodiment further establishes a first connection via the first layer network 140 and the mobile device 110.
The application support module 220 is connected to the processor circuit 202 and supports the application of the mobile device 110. To give an example, this application includes a social application, an e-mail application, and the like.
Whether the message transmission / reception module 235 is connected to the processor circuit 202, the mobile device 110 sends an inquiry message, and the smart terminal device 120 supports at least one application (defined here as the "first application"). When inquiring whether or not, the message transmission / reception module 235 receives the inquiry message.
The application support module 220 is connected to the processor circuit 202 and checks whether the smart terminal device 120 supports the first application based on the inquiry message. Here, in the first application, an application that can be supported by the smart terminal device 120 is defined as a second application.
Further, the message transmission / reception module 235 further sends a start-up message to request the mobile device 110 to start the second application. The message sending / receiving module 235 also receives data from within the application of the mobile device 110. For example, when the third application in the second application is activated by the mobile device 110, the message receiving module 240 receives the data transmitted from the third application of the mobile device 110 via the first layer network 140. .. In the present embodiment, the data transmitted from the third application of the mobile device 110 is defined as "user data".
In the present embodiment, the first network module 210, the application support module 220, the message transmission / reception module 235, and the second network module 250 are implemented by a hardware device composed of logic circuit elements. However, the present invention is not limited to this, and in another embodiment, the functions executed by the first network module 210, the application support module 220, the message transmission / reception module 235, and the second network module 250 are program codes. It may be carried out according to the type of. For example, the program code that executes the functions executed by the first network module 210, the application support module 220, the message transmission / reception module 235, and the second network module 250 is stored in the memory circuit 204, and the smart terminal device 120 is turned on. At that time, these program codes are operated by the processor circuit 202.
In particular, the smart terminal device 120 in the present embodiment establishes a second connection via the second layer network 150 and the server 130 by the second network module 250, and uses the user data received from the application of the mobile device 110 as the server. Can be sent. The different usage conditions in the structure of the multi-layer network connection communication system 100 will be described by the following embodiments.
FIG. 3 is a data flow diagram of the multilayer network connection communication method according to the first embodiment of the present invention. In the present embodiment, data can be transmitted or received via the smart terminal device 120 even in a situation where the user's mobile device 110 itself does not have network support.
Referring to FIG. 3, when the user wants to send or receive e-mail, the mobile device 110 is brought closer to the smart terminal device 120 to the first network module 210 of the smart terminal device 120 via the first layer network 140. Establish a first connection between them and send an inquiry message T to query whether the smart terminal 120 supports the email application sent or received by the user (Data Flow S301). At this time, the application support module 220 of the smart terminal device 120 checks whether or not it itself supports an application for sending and receiving e-mail, and responds to the inquiry message T (data flow S303). If the smart terminal 120 supports an application that sends and receives e-mail, the message sending and receiving module 235 of the smart terminal 120 sends a startup message K to request the mobile device 110 to launch the application ( Data flow S305). Subsequently, the mobile device 110 launches the application and responds to the launch message K (data flow S307).
To give an example, sending and receiving e-mail may be, for example, a Gmail application. When the mobile device 110 and the smart device 120 establish the first connection, the mobile device 110 sends an inquiry message T corresponding to the Gmail application to inquire whether the smart device 120 supports the Gmail application. To do. When the smart terminal device 120 supports the Gmail application, the message transmission / reception module 235 of the smart terminal device 120 sends the startup message K of the Gmail application to the mobile device 110. Further, when the user wants to use a different application by using the mobile device 110, the inquiry message T can be transmitted to the smart terminal device 120 in a list format. Similarly, when the smart terminal device 120 supports a plurality of applications in the list, the activation message K can be collectively transmitted from the smart terminal device 120 to the mobile device 110 in the form of a list.
When the mobile device 110 responds to the smart terminal device 120 with the activation message K, the message transmission / reception module 235 of the smart terminal device 120 receives the user data M transmitted by the mobile device 110 via the first layer network 140. (Data flow S309). For example, when you open a Gmail application, you can ask users to enter their Gmail ID and password. The user data M here includes a Gmail ID and password, or an email waiting to be sent.
After the smart terminal device 120 finishes receiving the user data M from the mobile device 110, the second network module 250 of the smart terminal device 120 establishes a second connection to and from the server 130 via the tier network 150. Then, the user data M is sent to the server 130 (data flow S311). Here, the second network module 250 of the smart terminal device 120 can use the Gmail ID and password in the user data M, and logs in to the Gmail application server by a wireless network connection or a wired network connection. After the Gmail application server completes the account verification process based on the user's Gmail ID and password, it can also send pending emails in user data M (Data Flow S312).
In the present embodiment, the smart terminal device 120 further includes a data update module (not shown), and after the user data M is transmitted to the server 130, the data update module of the smart terminal device 120 is a second network module 250. Status update information S1 from server 130 via<sub>update</sub>(Data flow S314) and status update information S1 via the first network module 210<sub>update</sub>To mobile device 110 (data flow S316) to complete the data sync update. That is, the mobile device 110 can not only send the data corresponding to the application through the smart terminal device 120 to the corresponding application, but also receive a new message corresponding to this application from the corresponding application server via the smart terminal device 120. To do. For example, the mobile device 110 can not only send e-mail via the smart terminal device 120, but can also receive new e-mail via the smart terminal device 120. Further, for example, the mobile device 110 can not only send its own message to the social application server via the smart terminal device 120, but also send a new message on the social application server through the smart terminal device 120. You can also receive.
After the mobile device 110 completes the data synchronization update, the mobile data 110 leaves the first layer network 140. For example, in the present embodiment, the first network module 210 of the smart terminal device 120 further receives the offline message L from the mobile device 110 (data flow S318) and interrupts the short-range communication connection established by the mobile device 110. Then (data flow S320), respond to offline message L. After that, the smart terminal device 120 can continuously detect whether or not the other mobile device has established a short-range communication connection via the first layer network 140.
In another embodiment, after the user brings the mobile device 110 closer to the smart terminal device 120 and establishes a first connection with the smart terminal device 120, the smart terminal device 120 performs an authentication process for the mobile device 110. Or you can do the payment process. More specifically, the smart terminal device 120 further includes an identification module (not shown), and the user can provide the provider provided by the smart terminal device 120 via the second network module 250 based on the identification code of the mobile device 110. You can go through the authentication or payment process online with your (provider). In the present embodiment, the identification code of the mobile device 110 may be, for example, a subscriber identity module (SIM) card number of a smartphone that identifies the mobile device 110. The payment process may be prepaid, monthly or pay-as-you-go.
Taking the prepaid system as an example, after the user brings the mobile device 110 closer to the smart terminal device 120 and establishes the first connection with the smart terminal device 120, the smart terminal device 120 is the SIM card number of the mobile device 110. Based on, you can run the authentication process online and check if enough money has been deposited on this number. When a sufficient amount has been deposited, the smart terminal 120 can continue to detect the application on the mobile device 110 and perform subsequent processes. When the amount is insufficient, the smart device 120 sends a related message to inform the user, or further asks the user to enter the credit card number in the browser displayed by the mobile device 110 to deposit. It can be performed. For monthly payments, the smart device 120 records the usage time and location of the mobile device 110 online, and the provider can bill the user monthly.
FIG. 4 is a flowchart of the multi-layer network connection communication method according to the first embodiment of the present invention.
Referring to FIG. 4, in step S401, the user brings the mobile device 110 closer to the smart terminal device 120 to establish a first connection to and from the smart terminal device 120 over the first layer network 140. Send at least one query message to query whether the smart terminal 120 supports at least one primary application. In step S403, the smart terminal device 120 checks whether it supports the first application. In step S405, the smart terminal device 120 sends a launch message requesting the mobile device 110 to launch at least one second application in the first application. In step S407, the mobile device 110 activates at least one application (hereinafter referred to as a third application) in the second application and responds to the activation message. In step S409, the smart terminal device 120 receives the user data of the third application transmitted by the mobile device 110 via the first layer network 140. In step S411, the smart terminal device 120 establishes a second connection with the server 130 via the layer 2 network 150 and transmits the user data of the third application to the server 130. In step S413, the smart terminal device 120 receives the status update information from the server 130 and transmits the status update information to the mobile device 110 to complete the data synchronization update of the third application. Since the implementation method of each step in FIG. 4 has already been described in detail in FIG. 3, it will not be repeatedly described here.
FIG. 5 is a data flow diagram of the multilayer network connection communication method according to the second embodiment of the invention.
Referring to FIG. 5, the user establishes a first connection with the first network module 210 of the smart terminal device 120 via the first layer network 140 by bringing the mobile device 110 closer to the smart terminal device 120. In addition, the inquiry message T is sent to inquire whether the smart terminal device 120 supports at least one first application (data flow S501). In certain embodiments, the smart terminal device 120 can perform an authentication or payment process on the mobile device 110. Since the first embodiment can be referred to for the related description, the description will not be repeated here.
Subsequently, the application support module 220 of the smart terminal device 120 checks whether the smart terminal device 120 supports the first application and responds to the inquiry message T (data flow S503). The message transmission / reception module 235 of the smart terminal device 120 sends a start message K to request the mobile device 110 to start at least one second application supported by the smart terminal device 120 in the first application. (Data flow S505). Subsequently, the mobile device 110 starts the third application in the second application and responds to the start message K (data flow S507).
In this embodiment, the application used by the user of the mobile device 110 may be, for example, a Facebook application and a Twitter application. When the smart device 120 and the mobile device 110 establish the first connection, it simultaneously queries whether the smart device 120 supports the Facebook application and the Twitter application. The application support module 220 of the smart terminal device 120 first checks whether it supports these two types of applications. If supported, the message sending and receiving module 235 of the smart device 120 similarly sends a launch message K or list of two corresponding Facebook and Twitter applications to the mobile device 110.
Users may also open an application and pre-populate a message or photo they want to share before bringing the mobile device 110 closer to the smart device 120. Here, the message to be input in advance may be the user's evaluation of the store A, the target to visit the store A together, the authority to see this message, and the like. When the mobile device 110 responds to the smart terminal device 120 with the activation message, the message transmission / reception module 235 of the smart terminal device 120 receives the user data N of the application transmitted by the mobile device 110 via the first layer network 140. (Data flow S509). For example, in the present embodiment, the user data N is an ID and password used by the user in a social service (for example, Facebook), and a pre-entered message / photo to be shared.
It should be mentioned that in the present embodiment, the memory circuit 204 of the smart terminal device 120 can store the area service information. This area service information may be related materials of store A, for example, latitude and longitude data acquired by GPS (global positioning system) and its corresponding address, store A's name and discount coupon manually entered, and further. It may be weather information obtained via an Internet connection or other store information near store A.
Therefore, in this embodiment, the smart terminal device 120 further includes an area information module (not shown). After the smart terminal device 120 finishes receiving the user data from the mobile device 110, the area information module of the smart terminal device 120 first stores the area service information B of the memory circuit, and then the application layer of the smart terminal device 120 ( application Add user data N to layer) (data flow S511). Subsequently, the second network module 250 of the smart terminal device 120 establishes a second connection with the server 130 via the second layer network 150, and collectively transmits the user data N and the area service information B to the server 130. (Data flow S513). Here, the second network module 250 of the smart terminal device 120 uses the ID and password used for the social service in the user data, and logs in to the application server of the social service via a wireless network connection or a wired network connection. be able to. After the social service application server completes the account verification process based on the user's ID and password, it causes the user to send more new status (for example, check-in) (Dataflow S514). For example, the check-in content may be, for example, the name and address of store A (area service information B), the user's evaluation of store A, and the user-uploaded photo (user data N). Since the area service information B is the information preset by the smart terminal device 120, even if the store A is in another country, the smart terminal device 120 provided by the store A solves the user's language problem. You can make it easier for users to check in.
Further, in the present embodiment, after the user data N and the area service information B are transmitted to the server 130, the data update module of the smart terminal device 120 further receives the status update information S2 from the server 130.<sub>update</sub>(Data flow S516) and status update information S2 via the first network module 210<sub>update</sub>To mobile device 110 (data flow S518) to complete the data sync update. In other words, the mobile device 110 can not only update its status through the smart device 120, but also because the social applications in the mobile device 110 have already been synchronously updated, the user can read unread messages or friends. You can browse the latest news feed of. After the mobile device 110 completes the data synchronization update of the social application, the first network module 210 of the smart terminal device 120 further receives an offline message L from the mobile device 110 (data flow S520), and the mobile device 110 Suspend the established short-range communication connection (data flow S522) and respond to offline message L. Since the first embodiment can be referred to for the related description, the description will not be repeated here.
FIG. 6 is a flowchart of the multi-layer network connection communication method according to the second embodiment of the present invention.
Referring to FIG. 6, in step S601, the user brings the mobile device 110 closer to the smart terminal device 120 to establish and query the first connection to and from the smart terminal device 120 over the first layer network 140. Send a message to inquire whether the smart terminal 120 supports at least one primary application. In step S603, the smart terminal device 120 checks whether it supports the first application. When the smart terminal device 120 supports at least one second application in the first application, in step S605, the smart terminal device 120 sends at least one activation message to send the second application. Request the mobile device to launch. In step S607, the mobile device 110 activates at least one application (hereinafter referred to as a third application) in the second application and responds to the activation message. In step S609, the smart terminal device 120 receives the user data of the third application transmitted by the mobile device 110 via the first layer network 140. In step S611, the smart terminal device 120 adds the area service information to the user data. In step S613, the smart terminal device 120 establishes a second connection with the server 130 via the second layer network 150, and collectively transmits the user data and the area service information to the server 130. In step S615, the smart terminal device 120 receives the status update information from the server 130 and transmits the status update information to the mobile device 110 to complete the data synchronization update of the third application. Finally, in step S617, the mobile device 110 leaves the first layer network 140. The implementation method of each step in Fig. 6 has already been explained in detail in Fig. 5.
When the smart terminal device 120 is a multi-layer network connection communication provided by a store, the mobile device 110 utilizes cryptography technology to ensure user privacy in order to ensure the confidentiality of information transmission. It may be protected to prevent user data from being stolen or tampered with. FIG. 7 is a data flow diagram of the multilayer network connection communication method according to the third embodiment of the present invention.
Referring to FIG. 7, the user establishes a first connection with the first network module 210 of the smart terminal device 120 via the first layer network 140 by bringing the mobile device 110 closer to the smart terminal device 120. In addition, at least one inquiry message T of the first application is transmitted to inquire whether the smart terminal device 120 supports the first application (data flow S701). In certain embodiments, the smart terminal device 120 can perform an authentication or payment process on the mobile device 110. It should be mentioned that in this embodiment, the smart terminal device 120 also provides a security mechanism for internet payments, as the authentication and payment processes relate to the SIM card number of the smartphone and the user's credit card number. Good. To give an example, the smart terminal 120 is a 128-bit SSL (secure sockets layer) encryption technology that is popular in today's browsers or a more secure SET (secure electronic). By adopting transaction) encryption technology and providing encryption between providers of mobile device 110 and smart terminal device 120, it is possible to guarantee the security of data transmission in the authentication process and payment process.
Subsequently, the application support module 220 of the smart terminal device 120 checks whether or not the smart terminal device 120 itself supports the first application, and responds to the inquiry message T (data flow S703). When the smart terminal device 120 supports at least one second application in the first application, the message transmission / reception module 235 of the smart terminal device 120 sends a start message K to start the second application. Request mobile device 110 to do so (Dataflow S705).
Subsequently, the mobile device 110 activates the third application in the second application and responds to the activation message K. In particular, in the present embodiment, after the mobile device 110 launches the application, the mobile device 110 checks whether there is data waiting to be transmitted. Among them, the data waiting to be sent is, for example, a message input in advance / a photo to be shared, an e-mail waiting to be sent, or the like. If the mobile device 110 has data waiting to be transmitted, the mobile device 110 encrypts the data waiting to be transmitted (data flow S711). This encrypted data waiting to be sent is called "user data Q". The mobile device 110 calls an encryption program via an application interface (API) to process data waiting to be sent. The encryption program is, for example, symmetric encryption (symmetric encryption) having a high execution speed such as DES (data encryption standard) encryption calculation method, or RSA (Ron Rivest,). Adi Shamir, and Leonard Adleman) It may be asymmetric encryption, which is more secure and widely used in electronic business, such as cryptographic algorithms. To explain the more secure RSA cryptosystem, SHA (secure hash algorithm) and MD5 (Message-Digest Algorithm 5) are one-way hash function and private key (private). It encrypts by combining key), and is currently two types of arithmetic methods that ensure exact matching of message transmission and are widely used.
After the mobile device 110 encrypts the data waiting to be transmitted to generate the user data Q, the message receiving module 240 of the smart terminal device 120 receives the user data Q transmitted by the mobile device 110 via the first layer network 140. (Data flow S709). After the smart terminal device 120 finishes receiving the user data from the mobile device 110, the area information module first stores the area service information C of the memory circuit and adds the user data Q to the application layer of the smart terminal device 120. (Data flow S711). Subsequently, the second network module 250 of the smart terminal device 120 establishes a second connection with the server 130 via the second layer network 150, and collectively collects the user data Q and the area service information C into the server 130. Send (Data Flow S713).
After the server 130 receives the user data Q, it decrypts it, and the decrypted user data Q<sub>decrypt</sub>Data is updated based on (Data flow S715). Taking the MD5 arithmetic method as an example, decryption is performed by combining a one-way hash function and a public key to ensure the integrity and confidentiality of the data and prevent the data from being tampered with during transmission. Can be prevented.
After the user data Q and area service information C are sent to the server 130, the data update module of the smart terminal device 120 further receives the status update information S3 from the server 130.<sub>update</sub>(Data flow S717) and status update information S3 via the first network module 210<sub>update</sub>To mobile device 110 (data flow S719) to complete the data sync update. Further, after the mobile device 110 completes the data synchronization update, the first network module 210 of the smart terminal device 120 further receives the offline message L from the mobile device 110 (data flow S721), and the mobile device 110 is established. Suspends the short-range communication connection (data flow S723) and responds to offline message L. Since the second embodiment can be referred to, the related description will not be repeated here.
Also, after the mobile device 110 launches the third application, if there is no data waiting to be sent to the mobile device 110 after inspection, the related processes of encryption and decryption can be omitted, so that the user can, for example, You can view unread messages or the latest trends of your friends.
In certain embodiments, taking security into account, when an application is opened, the mobile device 110 prompts the user for an ID and password that corresponds to this application, using 128-bit SSL encryption technology or SET encryption. It can be protected using technology, and server 130 can complete the account authentication program on subsequent logins. In addition, the provider of the smart terminal device 120 can notify the user's other mobile device each time the user's mobile device 120 is used. Of these, this notification may include the usage time and location of the mobile device 110, which is useful for tracking when the mobile device 110 is lost or stolen.
FIG. 8 is a flowchart of the multi-layer network connection communication method according to the third embodiment of the present invention.
Referring to FIG. 8, in step S801, the user brings the mobile device 110 closer to the smart terminal device 120 to establish and query the first connection to and from the smart terminal device 120 over the first layer network 140. Send a message to inquire whether the smart terminal 120 supports at least one primary application. In step S803, the smart terminal device 120 checks whether it supports the first application. When the smart terminal device 120 supports at least one second application in the first application, in step S805, the smart terminal device 120 sends a start message to start the second application. Request mobile device 110. In step S807, the mobile device 110 activates at least one application (hereinafter referred to as a third application) in the second application and responds to the activation message. In step S809, the mobile device 110 checks if the third application has data waiting to be sent. If there is data waiting to be transmitted, in step S811, the mobile device 110 encrypts the data waiting to be transmitted and generates user data. In step S813, the smart terminal device 120 receives the user data transmitted by the mobile device 110 via the first layer network 140. In step S815, the smart terminal device 120 adds the area service information to the user data. In step S817, the smart terminal device 120 establishes a second connection with the server 130 via the second layer network 150, and collectively transmits user data and area service information to the server 130. In step S819, the server 130 decodes the user data and updates the data. In step S821, the smart terminal device 120 , Receives the status update information from the server 130 and sends the status update information to the mobile device 110 to complete the data synchronization update of the third application. On the other hand, in step S809, if there is no data waiting to be transmitted to the mobile device 110 even after the inspection, the process directly proceeds to step S821. In step S823, the mobile device 110 leaves the first layer network 140. However, since the implementation method of each step in FIG. 8 has already been described in detail in FIG. 7, it will not be repeatedly described here.
As described above, the present invention provides a multi-layer network connection communication system, an apparatus and a method. An embodiment of the present invention utilizes a two-layer network structure, in which a smart terminal device can launch a user's mobile device application, and the mobile device application is via a first-tier network. And send the user data to the smart terminal device. Further, the smart terminal device can update the data by selectively adding the preset area data and then collectively transmitting the area data and the user data to the server via the second layer network. With this structure, if your device does not have 3G Internet capabilities, you are abroad and you have not turned on Internet roaming due to the high cost, or you cannot connect to the Internet using Wi-Fi. In such situations, the smart terminal device can not only temporarily provide Internet services to the user's device, but also location based service (location based service). By providing LBS), it is possible for users to obtain related information such as public notices and preferential services. In addition, the mobile device can protect the privacy of user data in the process of transmitting data in the multi-layer network connection communication system by utilizing the encryption mechanism.
As described above, the present invention has been disclosed by an embodiment, but of course, it is not intended to limit the present invention, and is suitable within the scope of the technical idea of the present invention so that those skilled in the art can easily understand it. Since various changes and amendments can be made as a matter of course, the scope of the patent protection must be determined based on the scope of claims and the area equivalent thereto.
100 multi-layer network connection communication system 110 mobile device 120 smart terminal device 130 server 140 Layer 1 Network 150 Layer 2 Network 200 smart terminal device 202 processor circuit 204 Memory circuit 210 1st network module 220 Application Support Module 235 Message Send / Receive Module 250 2nd network module S301 ~ S320 Data flow of multi-layer network connection communication method S401 ~ S413 Multi-layer network connection Communication method flowchart S501 ~ S522 Data flow of multi-layer network connection communication method S601 ~ S617 Multi-layer network connection Communication method flowchart S701 ~ S723 Data flow of multi-layer network connection communication method S801 ~ S823 Multi-layer network connection Communication method flowchart
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Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| WO03052960A1 | Cites | World Intellectual Property Organization (WIPO) | Search report |
| JP2003051772A | Cites | Japan | Search report |
| JP2003258808A | Cites | Japan | Search report |
| JP2007328624A | Cites | Japan | Search report |
| WO2010017501A1 | Cites | World Intellectual Property Organization (WIPO) | Search report |
| JP2010219824A | Cites | Japan | Search report |
10 members in 6 offices
Priority claims10
| Document | Office | Kind | Date |
|---|---|---|---|
| 201261681640 | United States of America | P | |
| 201261681640 | United States of America | P | |
| 61681640 | United States of America | – | |
| 102126001 | Taiwan Province of China | A | |
| 102126001 | Taiwan Province of China | A | |
| 102126001 | Taiwan Province of China | – | |
| 2012681640 | – | – | – |
| 2013102126001 | – | – | – |
| TW20130126001 | – | – | – |
| US201261681640P | – | – | – |
Members10
| Document | Office | Kind | |
|---|---|---|---|
| CN103582169A | China | A | |
| EP2696604A1 | European Patent Office (EPO) | A1 | |
| US2014047008A1 | United States of America | A1 | |
| TW201408111A | Taiwan Province of China | A | |
| KR20140020769A | Republic of Korea | A | |
| JP2014039254AThis record | Japan | A | |
| JP5612180B2 | Japan | B2 | |
| KR101556507B1 | Republic of Korea | B1 | |
| US9485131B2 | United States of America | B2 | |
| CN103582169B | China | B |
13 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Receipt of annual feesJAPANESE INTERMEDIATE CODE: R250R250 | R250 | |
| Certificate of patent or registration of utility modelJAPANESE INTERMEDIATE CODE: R150R150 | R150 | |
| First payment of annual fees (during grant procedure)JAPANESE INTERMEDIATE CODE: A61A61 | A61 | |
| Written decision to grant a patent or to grant a registration (utility model)JAPANESE INTERMEDIATE CODE: A01A01 | A01 | |
| Decision of grant or rejection writtenTRDD | TRDD | |
| Report on retrievalJAPANESE INTERMEDIATE CODE: A971007A977 | A977 |
Numbers
- Publication
- 2014039254
- Publication, DOCDB
- 2014039254
- Publication, EPODOC
- JP2014039254
- Application
- 164302
- Application, DOCDB
- 2013164302
- Application, EPODOC
- JP20130164302
Titles2
- Japanese
- 多層ネットワーク接続通信システム、スマート端末装置およびその通信方法
- English
- Multi-layer network connection communication system, smart terminal device and its communication method
Classification
- CPC, 9
- H04W4/18
- H04W88/06
- H04L69/18
- H04W4/80
- H04L67/563
- H04L67/51
- H04W84/10
- H04L67/00
- H04L67/01
- IPC, 5
- H04W76 02
- H04W84 10
- H04B5 48
- H04W4 80
- H04W76 10