CA3051624C

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.

CA3051624C, 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

32 claims: 4 independent, 28 dependent

  1. 1
    THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED IS DEFINED AS FOLLOWS:1. A system comprising: a base station optimization server connected to a cellular LTE base transceiver station and to an associated back haul network in parallel with the cellular LTE base transceiver station, the base station optimization server being configured to communicatively connect to at least one sensor device and to at least one communicating entity via corresponding LTE bearers that are redirected through the cellular LTE base transceiver station to terminate at the base station optimization server for the at least one sensor device and the at least one communicating entity, and comprising a publish-subscribe broker communications facility to which the at least one sensor device and the at least one communicating entity are connected, wherein the cellular LTE base transceiver station has an RF coverage area and is configured for RF communication with the at least one sensor device and the at least one communicating entity, wherein the publish-subscribe broker communications facility is adapted to route packets of sensor data, on behalf of the at least one sensor device that publishes the sensor data, from the publish-subscribe broker communications facility to an application, wherein the application subscribes to the sensor data, and wherein the application generates application data that is at least in part sensor data from the at least one sensor device, and wherein the publish-subscribe broker communications facility is adapted to route packets of application data, on behalf of the application that publishes the application data, from the publish-subscribe broker communications facility to the at least one communicating entity, and wherein the at least one communicating entity subscribes to the application data.
  2. 15
    A system comprising:a base station optimization server connected to a cellular LTE base transceiver station and to an associated back haul network in parallel with the cellular LTE base transceiver station, the base station optimization server being communicatively connected to at least one sensor device and to at least one communicating entity via corresponding LTE bearers that are redirected through the cellular LTE base transceiver station to terminate at the base station optimization server for the at least one sensor device and the at least one communicating entity, and comprising a first publish-subscribe broker communications 171 CA 3051624 2019-08-09 facility to which the at least one sensor device and the at least one communicating entity are connected, wherein the cellular LTE base transceiver station has an RF coverage area and is configured for RF communication with the at least one sensor device and the at least one communicating entity, wherein the first publish-subscribe broker communications facility is adapted to route packets of sensor data, on behalf of the at least one sensor device that publishes the sensor data, from the first publish-subscribe broker communications facility to an application, wherein the application subscribes to the sensor data, and wherein the application generates application data that is at least in part data collected from the at least one sensor device, and wherein the first publish-subscribe broker communications facility is adapted to route packets of application data, on behalf of the application that publishes the application data, from the first publish-subscribe broker communications facility to the at least one communicating entity, wherein the at least one communicating entity subscribes to the application data;and a regional optimization server communicatively connected with a packet data network gateway (PGW) on a packet data network side of the PGW and adapted to provide services to the at least one sensor device and to the at least one communicating entity, the regional optimization server comprising a second publish-subscribe broker communications facility that is adapted to route data that is published by the application to the first publish-subscribe broker communications facility, wherein the application is adapted to run on at least one of the base station optimization server, the regional optimization server, and a server remote from the cellular LTE wireless network.
  3. 31
    A method comprising:providing a base station optimization server connected to a cellular LTE base transceiver station and to an associated back haul network in parallel with the cellular LTE base transceiver station, the base station optimization server being communicatively connected to at least one sensor device and to at least one communicating entity via corresponding LTE bearers that are redirected through the cellular LTE base transceiver station to terminate at the base station optimization server for the at least one sensor device and the at least one communicating entity, and comprising a publish-subscribe broker communications facility to which the at least one sensor device and the at least one communicating entity are connected, wherein the cellular LTE base transceiver station has an 175 CA 3051624 2019-08-09 RF coverage area and is configured for RF communication with the at least one sensor device and the at least one communicating entity, wherein the publish-subscribe broker communications facility is adapted to route packets of sensor data, on behalf of the sensor device that publishes the sensor data, from the publish-subscribe broker communications facility to an application, wherein the application subscribes to the sensor data, and wherein the application generates application data that is at least in part data collected from the sensor device, and wherein the publish-subscribe broker communications facility is adapted to route packets, on behalf of the application that publishes the application data, from the publishsubscribe broker communications facility to the at least one communicating entity, wherein the at least one communicating entity subscribes to the application data.
  4. 32
    A method comprising:providing a base station optimization server connected to a cellular LTE base transceiver station and to an associated back haul network in parallel with the cellular LTE base transceiver station, the base station optimization server being communicatively connected to at· least one sensor device and at least one communicating entity via corresponding LTE bearers that are redirected through the cellular LTE base transceiver station to terminate at the base station optimization server for the at least one sensor device and the at least one communicating entity and comprising a first publish-subscribe broker communications facility to which the at least one sensor device and the at least one communication entity are connected, wherein the cellular LTE base transceiver station has an RF coverage area and is configured for RF communication with the at least one sensor device and the at least one communicating entity, wherein the first publish-subscribe broker communications facility is adapted to route packets, on behalf of the at least one sensor device, from the first publish-subscribe broker communications facility to an application, wherein the application subscribes to the sensor data, and wherein the application generates application data that is at least in part data collected from the sensor device, and wherein the first publish-subscribe broker communications facility is adapted to route packets, on behalf of the application that publishes the application data, from the first publish-subscribe broker communications facility to the at least one communicating entity, wherein the at least one communicating entity subscribes to the application data;and 176 CA 3051624 2019-08-09 providing a regional optimization server communicatively connected with a packet data network gateway (PGW) on the packet data network side of the PGW and providing services to the at least one sensor device and to the at least one communicating entity, the regional optimization server comprising a second publish-subscribe broker communications facility and adapted to route data that is published by the application to the first publishsubscribe broker communications facility, wherein the application is adapted to run on at least one of the base station optimization server, the regional optimization server, and a server remote from a cellular LTE network encompassing the cellular LTE base transceiver station.