Method and equipment for determining the virtual address of a terminal
Abstract
A method for assigning a virtual address (such as an IP address), a network management unit, and a user-side network connection unit IAD for determining the connection between the terminal S0-0 and the virtual network (such as an IP network) through the terminal device are proposed to connect to the IP-NET The network connection unit of the virtual address (for example, IP address) of the user-side terminal equipment unit EA0. Here, the network management unit BOOTP-S assigns the virtual address of the network connection unit IAD to the address request message, in addition to transmitting the virtual address xxx of the network connection unit IAD, it also transmits the second identification d assigned to the terminal device connection terminal S0-0: e:0. The virtual address requested by the second identifier d:e:0 is used as the virtual address of the terminal equipment unit EA0.

Term
Term ended
Expired 23 January 2022, 4.7 years ago.
- Priority
- Filed
- Granted
- Expired
- Today
11 claims: 4 independent, 7 dependent
- 1用于确定虚拟地址的方法,所述虚拟地址被唯一地分配给用户方终端设备单元, 所述用户方终端设备单元通过虚拟网络的用户连接线路的用户方网络连接单元和该网络 连接单元下属的终端设备连接端连接在所述虚拟网络上,通过: -由网络连接单元向网络管理单元发送带有网络连接单元的唯一性的第一标识的地址 请求报文用于指派虚拟地址,以请求网络连接单元的虚拟地址,和 -网络管理单元利用所述的第一标识指派网络连接单元的虚拟地址, 其特征在于, -从网络管理单元向网络连接单元发送网络连接单元的该虚拟地址和下属终端设备连 接端的唯一性的第二标识,以指派虚拟地址, -网络连接单元向网络管理单元发送带有下属终端设备连接端的唯一性的第二标识的 地址请求报文,以指派虚拟地址; -网络管理单元使用所述的第二标识指派下属终端设备连接端的虚拟地址, -网络管理单元向网络连接单元发送下属的终端设备连接端的该虚拟地址, -把下属的终端设备连接端的该虚拟地址向终端设备单元作为该终端设备单元的虚拟 地址传输。
- 2用于确定虚拟地址的方法,所述虚拟地址被唯一地分配给用户方终端设备单元, 所述用户方终端设备单元通过虚拟网络的用户连接线路的用户方网络连接单元和该网络 连接单元下属的终端设备连接端连接在所述虚拟网络上,通过: -由网络连接单元向网络管理单元发送带有网络连接单元的唯一性的第一标识的地址 请求报文用于指派虚拟地址,以请求网络连接单元的虚拟地址,和 -网络管理单元利用所述的第一标识指派网络连接单元的虚拟地址, 其特征在于, -网络管理单元向网络连接单元发送网络连接单元的该虚拟地址和下属终端设备连接 端的唯一性的第二标识以指派虚拟地址, -向用户方终端设备单元传送下属终端设备连接端的唯一性的第二标识,以指派虚拟 地址; -用户方终端设备单元向网络管理单元发送带有下属终端设备连接端的唯一性的第二 标识的地址请求报文,以指派虚拟地址; -网络管理单元使用所述的第二标识指派下属终端设备连接端的虚拟地址, -网络管理单元向用户方终端设备单元发送下属的终端设备连接端的该虚拟地址以指 派虚拟地址, -把下属的终端设备连接端的该虚拟地址采取为该终端设备单元的虚拟地址。
- 3如权利要求1或2所述的方法,其特征在于,所述的虚拟网络是IP网络,所述地 址请求报文是IP地址请求报文,而所述虚拟地址是IP地址。
- 4如权利要求1或2所述的方法, 其特征在于, 网络连接单元的唯一性的第一标识是该网络连接单元的硬件MAC地址。
- 5如权利要求1或2所述的方法,其特征在于,网络连接单元是一种属于虚拟网络的 具有用户连接端的电信网络的网络连接单元,并且该网络连接单元的唯一性的第一标识 CN 1528080 Β 是该网络连接单元的用户连接端的准硬件地址。
- 6如权利要求5所述的方法, 其特征在于, 在配置所属用户连接端时把网络连接单元的唯一性的第一标识存储在电信网络的网 络方周围范围内并且在对网络连接单元进行初始化时通过用户连接线路向网络连接单元 传输。
- 7如权利要求1或2所述的方法, 其特征在于, 所述网络连接单元下属的终端设备连接端是电信终端设备连接端,并且电信终端设 备连接端的唯一性的第二标识是其所属的准硬件地址,所述准硬件地址是附加于网络连 接单元的虚拟地址的作为从属于网络连接单元的唯一性的第一标识存储在网络管理单元 中。 如权利要求1或2所述的方法, 其特征在于, 从网络管理单元向网络连接单元发送相应的终端设备连接端的多个唯一性的第二标 识,以指派虚拟地址,并且为每个这样的终端设备连接端向网络管理单元发送具有该终 端设备连接端的相应唯一性的第二标识的地址请求报文,以指派虚拟地址。
- 89. 网络连接单元,具有:通信接口,以连接到虚拟网络上;标识存储设备以存储所 述网络连接单元的唯一性的第一标识, 其特征在于, 通过控制器利用存储的唯一性的第一标识通过通信接口发送地址请求报文,接收 网络连接单元的第一虚拟地址和用户方与网络连接单元连接的终端设备连接端的唯一性 的第一标识,利用该终端设备连接端和唯一性的第一标识通过通信接口发送地址请求报 文,接收终端设备连接端的第二虚拟地址并且向与该终端设备连接端连接的终端设备单 元传输该终端设备连接端的IP地址。
- 910. 如权利要求9所述的网络连接单元, 其特征在于, 所述的虚拟网络是IP网络,所述地址请求报文是IP地址请求报文,而所述第一虚拟 地址和第二虚拟地址是IP地址。
- 1011. 网络管理单元,用于指派虚拟地址, -具有存储器装置,用于存储唯一性地分配网络元件的第一标识和第二标识,用于存 储用第一标识和第二标识分配的第一虚拟地址和第二虚拟地址,并且用于存储分配给该 第一标识的第二标识,和 -具有控制器,用于从网络装置接收含有网络装置的这种第一标识的地址请求报文, 用于确定分配给该第一标识的第一虚拟地址和分配给该第一标识的第二标识,并且用于 向该网络装置发送该第一虚拟地址和该第二标识。
- 1112. 如权利要求11所述的用于指派虚拟地址的网络管理单元, 其特征在于, 所述地址请求报文是IP地址请求报文,而所述第一虚拟地址和第二虚拟地址是IP地 址。 CN 1528080 Β
Independent claims11
79 paragraphs, as filed
Method and equipment technical field for determining virtual address of terminal equipment
[0001] The present invention relates to a method for determining an address that can be allocated to a terminal device unit connected to a virtual network through a terminal device interface and a network connection unit on the user side, and a device suitable for this method.
Background technique
[0002] The most famous virtual network in which virtual addresses are currently used is the Internet or IP network. In the IP network (English: IPNETWORK), that is to say, in the network using the TCP/IP protocol, each network device up to the terminal equipment unit needs a unique virtual address, that is, the Internet Protocol address or IP address. The IP address formed by the website address and the machine address is composed of four numbers (eight binary numbers) separated by a dot in IP version 4 (Ipv4), for example 75.214.64.2. More used in later IP versions The eight digits of the binary number is used as the IP address. IP addresses can be manually generated and fixedly assigned to network devices in the network, including terminal equipment units. The need for the IP address of the network device is to be able to transfer information to the network device purposefully via the Internet protocol. However, it is very expensive to manually configure an IP network, and it is only suitable for small and rarely changed sub-networks.
[0003] Therefore, in order to automate the assignment of IP addresses, network operators generally use the so-called BOOTSTRAP-protocol BOOTP or dynamic Host-configuration protocol (English: DYNAMICHOST CONFIGURATION PROTOCOL) DHCPo BOOTP is a TCP/IP protocol, and network devices can be used It determines its IP address or other network information, such as server address and gateway information. When starting the network device, UDP packets (English: USERDATAPROTOCOL, an unreliable protocol in the TCP/IP protocol suite) are used to transmit the BOOT-REQUST request to the BOOTP server, and the BOOT-RESPONSE packet is sent back by the BOOT-RESPONSE packet. The required IP address. Before the dedicated IP address is known, the BOOT-REQUST message and BOOT-RESPONSE message adopt the IP broadcast function (IPROADCAST) that can be used to send messages. Such a method is described in detail in, for example, US 6,115,545.
[0004] DHCP is also a software for automatically assigning IP addresses to network devices registered in a TCP/IP network. DHCP software generally runs in a server and such a DHCP server is described in US 5,884,024, for example.
[0005] A BOOTP server or a DHCP server needs a hardware address of a network device to allocate an IP address, and the hardware address requests a message from the network interface of the network device with an IP address, for example, BOOT-REQUEST is transmitted to the corresponding server.
[0006] In a network according to the ETHERNET standard, the hardware address (MAC address) of the Ethernet card formed by the network connection unit of the user-side network unit on the network interface in the bus structure data network is used as each IP address request and IP address The uniquely assignable label of the response (BOOT-REQUEST> BOOT-RESPONSE).
[0007] In the telecommunications network that is part of the IP network, most of the hardware addresses of the user-side network interface of the network device are used as the uniqueness of each IP address request and IP address response (BOOT-REQUEST> BOOT-RESPONSE) The label of the sex assignment. Here, such a quasi-hardware address does not need to be allocated to the terminal equipment on the user side, but can be allocated to the user connection terminal or the user side network connection unit on the basis of additional effective telecommunication network switching technology. If such a network connection unit on the user side connects multiple terminal devices through its own telecommunication interface
CN 1528080 Β
Unit, each of these terminal equipment units needs an IP address.
[0008] The role of the network connection unit of the user-side telecommunications network that connects the IP network to the user connection end of the telecommunications network is to multiplex different communication technologies on the user side on a single telecommunications network connection end and transfer the data from the network The data stream is demultiplexed into its own channel. Such a well-known network connection unit is often referred to as IAD according to the English vocabulary ITREGRATED ACCESSDEVICE. Although the telecommunication network connection terminal connected to the IAD can be an analog telephone connection terminal, it can also be an ISDN connection terminal, a DSL connection terminal or a T1 connection terminal. Here, the IAD can also be part of the telecommunications exchange extension, providing multiple ISDN-SO bus connection terminals or POTS user connection units on the user side. This kind of telecommunications exchange extension is also called TK equipment or PBX (English: PrivateBranchExchanger dedicated exchange). The most frequent use of the current IAD unit is to multiplex voice and data through the DSL connection. DSL (English: DIGITALSUBSCRIBERLINE) stands for a digital user connection terminal, which is not started by switching technology like ISDN connection, but is continuously connected and connected to the multiplexer through the central network device, that is, the user connection line DSLAM (English: DSL ACCESS MULTIPLEXER), provides voice information and data According to information. From a certain local digital user connection line DSL, most of these are part of the DSLAM of the surrounding network nodes, and a dedicated user connection data group (English: Portdata) is often stored in the DSLAM for each user connection line and can be used by the center Network manager configuration.
[0009] To centrally manage network devices such as DSLAM or IDA in an IP network, network operators can use SNMP via IP, for example. SNMP stands for English expression SIMPLENETWORK MANAGEMENT PROTOCAL. Here is a widely used network monitoring and Control protocol. In order to manage network devices, the network operator must assign a static IP address that can be used to exchange network management messages for the network management interface to which it belongs. In addition, the IP router and network management system in the IP network of the network operator must also be able to recognize this IP address. For this reason, network operators adopt one of BOOTP or DHCP protocols in the above-mentioned manner. The unique identifier used to determine the IP address in the BOOTP server or the DHCP server is usually the hardware address of the network device. The corresponding IP address is also called the management IP address because it can be used for network management.
[0010] When equipping the network device, the network operator must enter the required information in the BOOTP server with the hardware address of the Internet interface of the corresponding network device of the network device used and the IP address to be assigned to it. To this end, on the users side, the secondary user must be connected to the IAD unit via a telecommunications terminal equipment interface such as DSL connection, ISDNSO bus or POTS user connection unit, or it is required to be manually installed by the user before equipment. Input the accurate hardware address of the terminal equipment unit locally, or after the terminal equipment unit is equipped at the user's place, the user must register the hardware address at the network operator's place by telephone or post office. The IP terminal equipment unit is often connected to the IP network via an IAD unit and, for example, a telecommunication network, on the user side via a telecommunication interface such as an ISDN SO bus or a POTS user connection unit. (POTS stands for ordinary telecommunications system and refers to analog line telecommunications or data transmission based on analog line modem standards such as V.90). In this case, registering the hardware address of the terminal equipment unit by the user is the only solution currently available. The above two registration possibilities are both very troublesome, requiring coordination between the user and the network operator, and failures often occur, and after the user installs the terminal equipment unit, it may unsatisfactorily lead to a delay in service provision capabilities. In addition, the user must connect the terminal through such SO bus Or each terminal device connected to such a POTS user connection unit is registered at the central IP network manager. Such a terminal equipment unit may be, for example, an H323 video phone with a communication interface adapted to the user's connection line. This can also include computers, faxes or IP phones with various corresponding communication interfaces.
CN 1528080 Β
Summary of the invention
[0011] The task of the present invention is to propose an advantageous method for allocating virtual addresses to terminal units connected to an IP network via a terminal device interface and a network connection unit, and a device suitable for this.
[0012] The first method of the present invention for determining a virtual address unique to a user-side terminal device unit connected to a user-side network connection unit of a virtual network through a terminal device connection has the following method steps:
[0013]-The network connection unit uses the unique identifier of the network connection unit to send an address request message for assigning a virtual address to the network management unit to request the virtual address of the network connection unit,
[0014]-the network management unit uses the identifier to assign a virtual address to the network connection unit,
[0015]-the network management unit sends the virtual address and the unique second identifier of the connection end of the subordinate terminal device to the network connection unit,
[0016]-the network connection unit sends to the network management unit an address request message with the unique second acquaintance of the connection terminal of the subordinate terminal device to assign a virtual address;
[0017]-the network management unit uses the second identifier to assign a second virtual address to the connection end of the subordinate terminal device, [0018]-the network management unit sends the second virtual address of the connection end of the subordinate terminal device to the network connection unit, [0019]-Transmit the second virtual address of the subordinate terminal device connection end to the terminal device unit as the virtual address of the terminal device unit.
[0020] The second method of the present invention for determining a virtual address unique to a user-side terminal device unit connected to a user-side network connection unit of a virtual network through a terminal device connection has the following method steps:
[0021]-the network connection unit sends an address request message with a unique identifier of the network connection unit to the network management unit to assign a virtual address to request the virtual address of the network connection unit,
[0022]-the network management unit assigns a virtual address to the network connection unit using the first identifier assigned to it,
[0023]-the network management unit sends the virtual address of the network connection unit and the unique first identifier of the connection end of the subordinate terminal device to the network connection unit,
[0024]-transmit the unique identifier of the connection end of the subordinate terminal device to the terminal device unit on the user side,
[0025]-the user-side terminal equipment unit sends to the network management unit an address request message with the unique second acquaintance of the connected terminal of the subordinate terminal equipment to assign a virtual address;
[0026]-the network management unit uses the second identifier to assign a second virtual address to the connection end of the subordinate terminal device, [0027]-the network management unit sends the second virtual address of the connection end of the subordinate terminal device to the user-side network connection unit address,
[0028]-Use the second virtual address of the subordinate terminal device connection end as the virtual address of the terminal device unit.
[0029] The network connection unit uses an address request message with its own identification to request the network management unit to assign its own virtual address from the virtual address. Because the network connection unit is not a terminal device, its virtual address is only needed for network management purposes. If the virtual network is an IP network, such an IP address is also called a management IP address. The network management unit also uses the virtual address of such a network connection unit to send a unique identification of the connection end of the network terminal device to the network connection unit to assign the virtual address. Because the identifier is assigned to the terminal device connection terminal and not subordinate to the terminal device unit, it can be used in the central network management unit, regardless of the specific terminal device unit, for the network connection unit, the terminal device connected terminal and the terminal device unit. Configure the sub-network of the user side. In an extension of the present invention, in particular, such user-side sub-networks can be set up with multiple terminals.
CN 1528080 Β
The terminal device connection terminal and the network connection unit uses its own virtual address to send a unique hardware identification to each such terminal device connection terminal, such as a quasi-media access control (MAC) corresponding to the format of the IEEE802 standard. )address.
[0030] An advantageous arrangement form of the network connection unit that can be used in the method of the present invention proposes a memory device for storing the second identifier of the connection end of the user's subordinate terminal device received by the network management unit for the allocation of virtual addresses . The second identifier stored in this way can then be transmitted from the network connection unit to the terminal equipment unit corresponding to the terminal device connection end, and the terminal equipment unit may adopt the dedicated second identifier. In this case, the terminal device unit according to the second method of the present invention can send an address request message with a unique identifier of the terminal device connection terminal to the network management unit to assign an IP address. Applicable terminal equipment units must allow the use of identifiers that are not fixedly entered, that is, to supplement the quasi MAC address afterwards.
[0031] Another advantageous arrangement form of the network connection unit that can be used in the method of the present invention proposes that, for each users subordinate terminal device connection end, send to the network management unit the corresponding uniqueness of the terminal device connection end. The second-identified address request message to assign a virtual address.
[0032] The network connection terminal suitable for this has: a communication interface to connect to a virtual network through a user connection line of a telecommunication network; and an identification storage device to store its own first unique identification and a controller. The controller is used to use the stored first identifier to send an address request message through the communication interface, and to receive the first virtual address of the network connection unit and the terminal device connection terminal connected to the network connection unit on the user side and the unique second ID, using the unique second ID of the terminal device connection end to send an address request message through the communication interface, receiving the second virtual address of the terminal device connection end and transmitting the virtual address to the terminal device unit connected to the terminal device connection end The second address.
[0033] Such a network connection unit preferably has a memory device for storing the virtual second address of the connection terminal of the telecommunications terminal device under the user side received from the network management unit. In this case, the virtual first address can be determined for all terminal device connection ends when the network connection unit is initialized, and as needed, for example, in subsequent connections, it is transmitted to the terminal device connected to the terminal device connection end. . When the terminal device is replaced on the terminal device connection end, it is also possible to directly transmit the virtual second address assigned to the terminal device connection end to the later connected terminal device. If the old terminal equipment unit is still to be used, the virtual address allocated for the terminal equipment unit can be configured as a fixed virtual address of the terminal equipment unit on the user side.
[0034] The network management unit particularly suitable for assigning virtual addresses according to the method of the present invention has:
[0035] A memory device for storing the first and second identifiers that uniquely assign the network element, for storing the first and second virtual addresses assigned by the first and second identifiers, and for storing the first Identifies the assigned second identifier. In addition, such a network management unit also has a controller for receiving an address request message containing such a first identification of the network device, and for determining the first virtual address allocated to the first identification and the first identification allocated to the first identification. And used to send the first virtual address and the second identifier to the corresponding network device.
[0036] In order to assign an IP address, the network management unit of the known IP network only transmits the relevant equipment, in addition to transmitting the identifier contained in the request message and the requested IP address to the network device from which the IP address request message is obtained. Information about network elements between the network management unit and the requesting network unit. On the contrary, the network management unit according to the present invention also transmits the identity of the unit subordinate to the user of the network device. For this reason, the current BOOT protocol must be extended with appropriate parameters in the response message of the NME in the case of the Internet protocol.
[0037] The unique identifier of the network connection unit is, for example, the hardware address or the MAC address of the network connection unit.
CN 1528080 Β
If the network connection unit of the virtual network is a network connection unit connected to the virtual network through the user connection end of the telecommunications network, the unique identifier of the network connection unit can also be the user assigned to the network connection unit as described above. The quasi-hardware address of the connection end. The quasi-hardware address of such a user connection terminal can be stored in the surrounding area of the telecommunication network when the user connection terminal is configured, and transmitted to the network connection unit through the user connection line when the network connection unit is initialized. The advantage of such a process is that the first virtual address of the network connection unit can be configured independently of the machine.
[0038] According to a particularly advantageous arrangement of the method of the present invention, each terminal device connection terminal is provided with a quasi-hardware address assigned to it as a unique identification of one or more terminal device connection terminals. If the terminal equipment connection end can be addressed independently of the virtual address, that is, for example, when it involves a circuit-switched telecommunications terminal equipment connection end, the arrangement can be adopted. This kind of quasi-hardware address is appended to the first virtual address of the network connection unit and stored subordinately in the network management unit for assigning a virtual address, so as to be appended to the address request message containing the network connection units identifier. The first virtual address of the network connection unit is transmitted to the network connection unit. In this case, the virtual addresses required by all users can be determined when configuring the network connection unit in the virtual network. The hardware address of each terminal device is not required. The total number and addressing of the telecommunication terminal equipment connection terminals of the network connection unit on the user side remain unchanged when the user side sub-network is put into operation and usually remain constant for a long period of time.
[0039] If the network connection unit has multiple terminal equipment connection terminals under the user side to connect to the terminal equipment unit of the virtual network, an extension of the method according to the present invention sends the terminal equipment connection terminal information from the network management unit to the network connection unit. Unique identification to assign virtual addresses. Then, for each terminal device connection terminal, an address request message with a unique identifier of the corresponding terminal device connection terminal is sent to the network management unit.
[0040] Of course, the above-mentioned arrangements and methods are particularly suitable for determining the IP addresses that can be assigned to the terminal equipment unit connected to the IP network on the user side, for example, through a telecommunication terminal equipment interface and a network connection unit.
Description of the drawings
[0041] The present invention is illustrated in detail below with reference to the accompanying drawings by means of particularly preferred embodiments, and is not limited to the case and the case with a network connection unit connected to an IP network through a user connection terminal of a telecommunication network and an IP network. The situation of the sub-network at the connection end of the telecommunications terminal equipment. In the attached picture:
[0042] FIG. 1 shows in a schematic block diagram the components of an Internet Protocol network in which the method of the present invention can be used;
[0043] FIGS. 2a and 2b show, in schematic block diagrams, the process of an advantageous embodiment of the method according to the present invention with reference to the situation shown in FIG. 1;
[0044] FIG. 3 shows a schematic block diagram of an Internet Protocol network according to FIG. 1 with a particularly advantageous embodiment of the network connection part according to the invention and with a particularly advantageous network management unit as an assigned IP address Implementation of the boot protocol server.
Detailed ways
[0045] FIG. 1 shows a network management system NMS of an Internet protocol network, which has an element management unit EM, a fault management unit FM, and a network management system input unit NMS-E operated by an operator. The element management unit EM also contains a boot protocol server BOOTP-S as a network management unit for assigning IP addresses in addition to subordinate units that are not specifically shown. The network management system NMS is connected to the Internet Protocol data network through a LAN connection, which is
CN 1528080 Β
The figure is represented by three Internet routers IPR1, IPR2 and IPR3 and the network transition Internet Protocol router IPER. The routers IPR1, IPR2, IPR3 and IPER in the network range exchange information on the basis of the Internet Protocol IP.
[0046] The network transition Internet Protocol router IPER, which is also called EDGE router according to the English expression EDGE DEVICE, is equipped with an ATM card not shown in the figure, and thus makes it through the transition from the Internet Protocol network to the asynchronous transfer mode ATM as the basis The telecommunications network for information exchange. In the illustrated embodiment, the network transition Internet Protocol router IPER is connected to the ATM network according to ATM/SDH, and a user connection line access multiplexer is attached to the periphery of the ATM, and the network transitions to the Internet protocol. The router IPER contains the boot protocol transfer function BOOTP-R, which is responsible for routing the boot protocol message to the network element DSLAM, the network connection unit LAD, the network management system NMS, and so on. Because the network transition Internet protocol router IPER takes over the function of Internet protocol relay, it is also called the relay router IPERo
[0047] The user connection line access multiplexer DSLAM has a user connection line port TAL-PRT, and the user connection line TAL is led out from the user connection line port. In the figure, only one user connection line TAL is shown, which is connected to the network connection unit IAD of the user's sub-network TA. Between the network transition Internet Protocol router IPER and the network connection unit IAD, if it is the same for any other one, the network connection unit not shown in the figure is equipped with a permanent virtual ATM connection, that is, the so-called ATM-PVCo through this The virtual ATM connection can transfer the information and control commands of the network management system MMS from the network transition Internet protocol router IPER to the network connection unit IAD on the basis of the above-mentioned protocol SNMP. The network transition Internet Protocol router IPER only has the technical function of exchange in terms of the management channel between the network management system NMS and the network connection unit IAD.
[0048] In addition to the network connection unit IAD, the user-side sub-network TA shown in FIG. 1 also includes three terminal equipment units EAO, EA1, and EA2, each of which passes through an SO interface SOT, SO-2, and S0-3. Connect with the network connection unit IAD.
[00491 FIGS. 2a and 2b show some of the components in FIG. 1, and the method steps of a particularly advantageous embodiment of the method according to the present invention. Specific maps 2a and 2b are shown as functional units: network management system input unit NMS-E; element management unit EM with boot protocol server BOOTP-S and internet protocol address nnn; boot of network transition protocol router with internet protocol address mmm Protocol transfer function BOOTP-R; user connection line access multiplexer DSLAM with user connection line port TAL-PRT; user connection line TAL and network connection unit IAD. In addition, Figure 2b also shows a terminal equipment unit EA0 and the SO interface SO-0o connecting the terminal equipment unit EA0 and the network connection unit IAD.
[0050] In step 1, the network connection unit IAD sends the IP address request message BOOT with the unique identifier as the network connection unit IAD to the boot protocol relay function BOOTP-R by means of the broadcast function -REQUEST ο
[0051] In step 2, the boot protocol transfer function BOOTP-R sends the IP address with the hardware address a: b: c to the Internet protocol address mmm of the network management system NMS, especially to the boot protocol server BOOTP-S, and with it IP address request message BOOT-REQUEST of own Internet Protocol address mmm
[0052] In step 3, the boot protocol server BOOTP-S configures the Internet protocol address xxx and the quasi-hardware address d: e: 0, d: e: 1 according to the hardware address a: b: c of the earlier network connection unit IAD. And d: e: 2 is divided into the unique identification of the telecommunication terminal equipment connection terminals SO-0, SO-ι and S03.
[0053] In step 4, the Internet Protocol address xxx with the hardware address a: b: c, together with the quasi-hardware address
d: e: 0, d: e: 1 and d: e: 2 and additional service information are transmitted with the boot protocol response message BOOT-REPLY to the internet protocol address mmm of the boot protocol transfer function BOOTP-R. In step 5, the boot protocol transfer function BOOTP-R sends this received message to the network connection unit IAD through the virtual ATM connection AAL5PVC by means of broadcast transmission.
[0054] In the embodiment shown in FIGS. 2a and 2b, the network connection unit IAD requests an IP address for each terminal equipment unit EAO, EA1, and EA2, and then starts transmitting the IP address to the respective terminal equipment unit. Figure 2b shows this process for the terminal equipment unit EA0. Of course, it is also possible to transmit the telecommunications terminals allocated to them to the terminal equipment units EAO, EA1, and EA2 after step 5 of the process shown in Figure 2a in another embodiment of the method of the present invention that is not explicitly shown. The quasi-hardware addresses d: e: 0, d: e: 1 and d: e: 2 of the equipment connection terminals S0-0, S0-1 and SO3, and each terminal equipment unit EAO, EA1 and EA2 can be connected to the front of the network Steps 1 to 5 of the connection unit description use the corresponding quasi-hardware addresses d: e: 0, d: e: 1 and d: e: 2 to send out the IP address request message BOOT-REQUEST ο
[0055] In step 6, the network connection unit IAD sends the quasi-hardware addresses d:e:0, d:e:1 and d:e:2 as telecommunication terminal equipment to the boot protocol relay function BOOTP-R by means of the broadcast function. The request message BOOT-REQUEST of the uniquely identified IP address of the connection terminal SO-0, and thus serves as the request message BOOT-REQUEST of the IP address of the terminal equipment unit EA0, and carries its own Internet protocol address xxx.
[0056] If the network connection unit IAD can obtain the Internet Protocol address n.n, n of the boot protocol server BOOTP-S, it may also appropriately send the request to the boot protocol server BOOTP-S. The process described in step 6 requires fewer changes in the existing protocol. Also, the IP protocol address xxx of the sending network connection unit IAD is not necessary for the implementation of this method, but is optional. By transmitting this IP protocol address XXX, the broadcast function of guiding the protocol response message BOOT-REPLY to the network connection unit IAD used in step 5 of the process according to FIG. 2a can be abandoned.
[0057] In step 7, the boot protocol transfer function BOOTP-R sends to the Internet protocol address nnn of the network management system NMS, especially the boot server BOOTP-S sends with a quasi-hardware address d: e:0, with its own Request message BOOT-REQUEST with the IP address xxx of the IP address xxx of the IP address of the network connection unit IAD ο
[0058] In FIG. 8, the server BOOTP-S is guided to connect the terminal SO-0 to the telecommunications terminal device and thereby assigns the hardware address d:e:0 to the terminal unit EA0 with the Internet protocol address yyOo
[0059] In step 9, the Internet Protocol address yy0 together with the quasi-hardware address d: e:0, additional server information, and optionally together with the IP address of the IP address xxx of the network connection unit IAD are included in the boot protocol response message BOOT-REPLY transfers the Internet protocol address mm.ni of BOOT-R to the boot protocol relay function. In step 10, the boot protocol relay function BOOT-R sends the received message to the network connection unit IAD.
[0060] In step 11, the network connection unit IAD sends the telecommunications terminal equipment connection terminal SO-0 to the terminal equipment unit
ΕΑ0 transmits Internet Protocol address yyOo
[0061] FIG. 3 shows a user-side sub-network TA. The sub-network TA includes a network connection unit IAD as shown in FIG. 1 and is connected to the network connection unit IAD through an SO interface so-o, so-1, and SO-2. The three terminal equipment units EA0, EA1 and EA2. In the network connection unit IAD in FIG. 3, it is also shown that the user connection line TAL is connected to it, and there are three S0 interfaces SO-0, SO-1, SO-0, SO-1, and SO-0 for connecting the terminal equipment units EA0, EA1, and EA2. SO-2s communication interface KIFo. In addition, the task of the communication interface KIF is to receive on the users connection line TAL.
CN 1528080 Β
The received information and instructions are forwarded to the SO interfaces so-o, so-l, SO-2 and to the control unit MP, and the control unit MP can process these information or instructions. The format conversion or signal separation process required for this is performed by the communication interface KIF. In the same way, the information or instructions received by the communication interface KIF control unit MP or through the various SO interfaces SO-O, SO-1 and SO-2 should be multiplexed and transformed into their format so that they can be connected to the user line The TAL upstream transmits to the telecommunication network ATM-NET, which is only schematically shown in FIG. 3. The control unit MP of the network connection unit IAD, which is usually implemented by a processor unit with corresponding program instructions, controls the communication interface KIF, and is in read connection with the hardware address memory storing the hardware addresses a: b: c therein. In addition, the control unit MP and the memory device IPM are in a write/read connection to store the IP addresses yyO, yyl and (in the figure) the terminal equipment units EAO, EA1, and EA2 connected to the SO interfaces SO-O, SO-1, and SO-2 (Not shown) yy2o This storage device IPM can also be configured to store the quasi-hardware addresses d: e: 0, d: e: 1 and d: subordinate to the SO interfaces SO-O, SOT and SO-2 as needed. e: 2.
[0062] As mentioned above, the user-side sub-network shown in FIG. 3 is connected to the telecommunication network ATM-NET through the user connection line TAL. This telecommunication network ATM-NET is integrated into the Internet protocol network IP-NET through the network transition Internet introduction router IPER shown as a connecting line, and the Internet protocol network IP-NET is composed of the network management system of the Internet protocol network IP-NET NMS control and management. Such a network management system NMS is implemented corresponding to the illustration and description in FIG. 1, but in FIG. 3, only the boot protocol server BOOTP-S is shown as the network management unit to which the user assigns an IP address. The boot protocol server BOOTP-S contains a control unit CONT for connection IP address management and a distributed storage identification HWA, such as hardware address a: b: c or quasi-hardware address d: e: 0, d: e : 1 or d: e: 2, store the IP address such as I xxx, yyO, yy2, store the subordinate quasi-hardware address SUB-HWA such as d: e: 0, d: e: 1 and d: e: 2 and store them in The information shown in the figure is only dotted lines, such as gateway information or server information.
[0063] If the present invention described the Internet Protocol network and the IP address scheme above, this is only understood as illustrative and not as restrictive. A person of ordinary skill in the art can directly derive many implementations and modifications that fall within the protection scope of the claims from this description of the present invention.
CN 1528080 Β
4 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| WO9639769A1 | Cites | World Intellectual Property Organization (WIPO) | Search report |
| US6012088A | Cites | United States of America | Search report |
| US6073178A | Cites | United States of America | Search report |
11 members in 5 offices
Priority claims14
| Document | Office | Kind | Date |
|---|---|---|---|
| 10106586 | Germany | A | |
| 10106586 | Germany | A | |
| 101065868 | Germany | – | |
| 10148627 | Germany | A | |
| 10148627 | Germany | A | |
| 101486278 | Germany | – | |
| 0200223 | Germany | W | |
| 0200223 | Germany | W | |
| 101065868 | – | – | – |
| 101486278 | – | – | – |
| DE2001106586 | – | – | – |
| DE2001148627 | – | – | – |
| PCTDE2002000223 | – | – | – |
| WO2002DE00223 | – | – | – |
Members11
| Document | Office | Kind | |
|---|---|---|---|
| WO02065725A2 | World Intellectual Property Organization (WIPO) | A2 | |
| DE10148627A1 | Germany | A1 | |
| WO02065725A3 | World Intellectual Property Organization (WIPO) | A3 | |
| EP1360820A2 | European Patent Office (EPO) | A2 | |
| US2004081161A1 | United States of America | A1 | |
| CN1528080A | China | A | |
| US6934765B2 | United States of America | B2 | |
| DE10148627B4 | Germany | B4 | |
| EP1360820B1 | European Patent Office (EPO) | B1 | |
| DE50213868D1 | Germany | D1 | |
| CN1528080BThis record | China | B |
4 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Transfer of patent rightTR01 | TR01 | |
| Grant of patent or utility modelGrantedC14 | C14 | |
| Entry into substantive examinationC10 | C10 | |
| PublicationC06 | C06 |
Numbers
- Publication
- 1528080
- Publication, DOCDB
- 1528080
- Publication, EPODOC
- CN1528080B
- Application
- 28049020
- Application, DOCDB
- 02804902
- Application, EPODOC
- CN2002804902
Titles2
- Chinese
- 确定终端设备的虚拟地址的方法和设备
- English
- Method and equipment for determining virtual address of terminal equipment
Classification
- CPC, 2
- H04L12/2883
- H04L61/5014
- IPC, 2
- H04L29 12
- H04L12 28