CA3051661C

Methods and systems of an all purpose broadband network

Abstract

The present disclosure is related to a large-scale broadband wireless network capable of providing a very high wireless data capacity. The broadband wireless network may combine proven leading edge commercial wireless design and architecture methodologies with advanced RF technologies to substantially improve spectrum efficiency, spectrum usage, and data performance, including beam forming, optimization servers, beam forming operations, locating and tracking user equipment, data transmission and reception control, reduction of inter-cell interference, delivery of real-time services, conserving back-haul, integration of a sensor platform, capability for implementing a dual-use network, data rate priority usage, usage-data reporting, mobile base-station replacement, and active hot standby redundancy.

CA3051661C, drawing sheet 1
Sheet 1 of 53

Term

6.7 yearsleft in the term

Expires 13 June 2033.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

12 claims: 4 independent, 8 dependent

  1. 1
    A system comprising:a base station optimization server connected to a back haul network and adapted for association with a cellular LTE base transceiver station having an RF coverage area and configured for RF communication with at least a first and a second mobile transceiver device in the RF coverage area, the cellular LTE base transceiver station being connected to the back haul network, wherein the base station optimization server is connected to the cellular LTE base transceiver station and connected to the back haul network in parallel with the cellular LTE base transceiver station so as to permit a data packet to flow between any of: (a) the cellular LTE base transceiver station and foe back haul network, (b) foe base station optimization server and foe back haul network, and (c) foe cellular LTE base transceiver station and foe base station optimization server, wherein foe base station optimization server is configured to connect to each of foe first and foe second mobile transceiver devices via a corresponding LTE bearer that is redirected through foe cellular LTE base transceiver station to terminate on foe base station optimization server instead of on an initial termination point of that bearer for each of foe first and the second mobile transceiver devices, wherein foe base station optimization server is adapted to route an application data packet stream, on behalf of an application that provides streaming application data, from foe base station optimization server to the first mobile transceiver device via foe corresponding redirected bearer of foe first mobile transceiver device when foe first mobile transceiver device makes a connection to request foe streaming application data, and wherein the base station optimization server is adapted to route a replication of foe same application data packet stream, on behalf of foe application that provides foe streaming application data, from foe base station optimization server to foe second mobile transceiver device via foe corresponding redirected bearer of foe second mobile transceiver device when foe second mobile transceiver device makes a connection to request foe streaming application data, wherein foe replicated application data packet stream 169 Date Reçue/Date Received 2021-06-04 is transmitted to the second mobile transceiver device at a different time than the application data packet stream is transmitted to the first mobile transceiver device, and wherein delivery of the application data packet streams to the first and the second mobile transceiver devices occurs while incurring a minimal use of the back haul network.
  2. 4
    A system comprising:a base station optimization server connected to a back haul network and adapted for association with a cellular LTE base transceiver station having an RF coverage area and configured for RF communication with at least a first and a second mobile transceiver device in the RF coverage area, the cellular LTE base transceiver station being connected to the back haul network, wherein the base station optimization server is connected to the cellular LTE base transceiver station and connected to the back haul network in parallel with the cellular LTE base transceiver station so as to permit a data packet to flow between any of: (a) the cellular LTE base transceiver station and the back haul network, (b) the base station optimization server and the back haul network, and (c) the cellular LTE base transceiver station and the base station optimization server, wherein the base station optimization server is configured to connect to each of the first and the second mobile transceiver devices via a corresponding LTE bearer that is redirected through the cellular LTE base transceiver station to terminate on the base station optimization server instead of on an initial termination point of that bearer for each of the first and the second mobile transceiver devices, wherein the base station optimization server is adapted to route an application data packet stream, on behalf of a first application that provides streaming application data, to the first mobile transceiver device via the corresponding redirected bearer that the first mobile 170 Date Reçue/Date Received 2021-06-04 transceiver device has at the cellular LTE base transceiver station when the first mobile transceiver device makes a connection to request the streaming application data, and wherein the base station optimization server is adapted to route a replication of the same application data packet stream, on behalf of the first application that provides the streaming application data, from the base station optimization server to the second mobile transceiver device via the corresponding redirected bearer that the second mobile transceiver device has at the cellular LTE base transceiver station when the second mobile transceiver device makes a connection to request the streaming application data, wherein the first and the second mobile transceiver devices request the streaming application data at different times, wherein the replicated application data packet stream is transmitted to the second mobile transceiver device at a different time than the application data packet stream is transmitted to the first mobile transceiver device, and wherein delivery of the application data packet streams to the first and the second mobile transceiver devices occurs while incurring a minimal use of the back haul network;and a regional optimization server communicatively connected with a packet data network gateway (PGW) on the packet data network side of the PGW and adapted to run a second application for providing streaming data services to the first and the second mobile transceiver devices, the regional optimization server being adapted to route the separate application data packet streams being transmitted to the first and second mobile transceiver devices to the base station optimization server, on behalf of the second application that provides streaming application data.
  3. 11
    A method comprising:providing a base station optimization server connected to a back haul network and adapted for association with a cellular LTE base transceiver station having an RF coverage area and configured for RF communication with at least a first and a second mobile transceiver device in the RF coverage area, the cellular LTE base transceiver station being connected to the back haul network, wherein the base station optimization server is connected to the cellular LTE base transceiver station and connected to the back haul network in parallel with the cellular LTE base transceiver station so as to permit a data packet to flow between any of: (a) the cellular LTE base transceiver station and the back haul network, (b) the base station optimization server and the back haul network, and (c) the cellular LTE base transceiver station and the 172 Date Reçue/Date Received 2021-06-04 base station optimization server, the base station optimization server being communicatively connected to the first and the second mobile transceiver devices via a corresponding LTE bearer that is redirected through the cellular LTE base transceiver station to terminate on the base station optimization server instead of on the initial termination point of that bearer for each of the first and the second mobile transceiver devices;routing an application data packet stream, by the base station optimization server, on behalf of an application that provides streaming application data, from the base station optimization server to the first mobile transceiver device via the redirected bearer that the first mobile transceiver device has at the cellular LTE base transceiver station when the first mobile transceiver device makes a connection to request the streaming application data;and routing a replication of the same application data packet stream, by the base station optimization server, on behalf of the application that provides streaming application data, from the base station optimization server to the second mobile transceiver device via the redirected bearer that the second mobile transceiver device has at the cellular LTE base transceiver station when the second mobile transceiver device makes a connection to request the streaming application data, wherein the replicated application data packet stream is transmitted to the second mobile transceiver device at a different time than the application data packet stream is transmitted to the first mobile transceiver device, and wherein delivery of the application data packet streams to the first and the second mobile transceiver devices occurs while incurring a minimal use of the back haul network.
  4. 12
    A method comprising:providing a base station optimization server connected to a back haul network and adapted for association with a cellular LTE base transceiver station having an RF coverage area and configured for RF communication with at least a first and a second mobile transceiver device in the RF coverage area, the cellular LTE base transceiver station being connected to the back haul network;wherein the base station optimization server is connected to the cellular LTE base transceiver station and to the back haul network in parallel with the cellular LTE base transceiver station so as to permit a data packet to flow between any of: (a) the cellular LTE base transceiver station and the back haul network, (b) the base station optimization server 173 Date Reçue/Date Received 2021-06-04 and the back haul network, and (c) the cellular LTE base transceiver station and the base station optimization server, the base station optimization server being communicatively connected to the first and the second mobile transceiver devices via a corresponding LTE bearer that is redirected through the cellular LTE base transceiver station to terminate on the base station optimization server instead of on the initial termination point of that bearer for each of the first and the second mobile transceiver devices;routing an application data packet stream, by the base station optimization server, on behalf of a first application that provides streaming application data, from the base station optimization server to the first mobile transceiver device via the redirected bearer that the first mobile transceiver device has at the cellular LTE base transceiver station when the first mobile transceiver device makes a connection to request the streaming application data, and receiving the application data packet stream by the first mobile transceiver device from the base station optimization server;routing a replication of the same application data packet stream, by the base station optimization server, on behalf of the first application that provides the streaming application data, from the base station optimization server to the second mobile transceiver device via the redirected bearer that the second mobile transceiver device has at the cellular LTE base transceiver station when the second mobile transceiver device makes a connection to request the streaming application data, wherein the first and the second mobile transceiver devices request the streaming application data at different times, wherein the replicated application data packet stream is transmitted to the second mobile transceiver device at a different time than the application data packet stream is transmitted to the first mobile transceiver device, and wherein delivery of the application data packet streams to the first and the second mobile transceiver devices occurs while incurring a minimal use of the back haul network;and providing a regional optimization server connected with a packet data network gateway (PGW) on the packet data network side of the PGW and adapted to run a second application for providing streaming data services to the at least first and second mobile transceiver devices, the regional optimization server being adapted to route to the base station optimization server the separate application data packet streams being delivered to the first 174 Date Reçue/Date Received 2021-06-04 and second mobile transceiver devices, on behalf of the second application that provides streaming application data.