IP Library Granted Patent US 10,355,767
Granted Patent B2
US 10,355,767 · App. 16/245,885 · Granted Jul 16, 2019

Network repeater system

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Quick Facts
Patent No.
US 10,355,767
App. No.
16/245,885
Granted
Jul 16, 2019
Kind
B2
Abstract

A system is described where antenna beam steering techniques are implemented to optimize time and frequency channel resources in wireless communication systems where repeaters are used. Beam steering modes of the antenna systems in the repeaters as well as the nodes are optimized to improve system capacity and load balancing. Client devices in a wireless LAN system can be configured to work as repeaters, with the repeaters containing a beam steering capability. The beam steering capability can be implemented in one or multiple nodes and repeaters in the communication system.

Claims (27)

1. A communication system comprising:

a first node, the first node including:

a first baseband unit and a first transceiver, said first transceiver comprising one or more first communication ports; and

one or more first antennas, each of the one or more first antennas connected to one of the one or more first communication ports;

a processor coupled to the first node and configured to execute an algorithm;

a repeater, the repeater being in communication with the first node and adapted to service a communication network thereof, the repeater including:

a receive circuit and a transmit circuit, each of the receive and transmit circuits comprising one or more second communication ports; and

one or more second antennas, each of the one or more second antennas connected to one of the one or more second communication ports, wherein at least one of the second antennas comprises a modal antenna, the modal antenna capable of configuration in one of a plurality of possible antenna modes, wherein the modal antenna comprises a distinct radiation pattern characteristic when configured in each of the plurality of possible modes;

a plurality of client devices, each of the client devices including:

a baseband unit;

a transceiver, the transceiver comprising one or more third communication ports; and

one of more third antennas connected to the transceiver, each of the one or more third antennas connected to one of the one or more third communication ports;

wherein the algorithm comprises:

accessing a first link quality metric associated with a communication link between the first node and each of the plurality of client devices,

accessing a second link quality metric associated with a communication link between the repeater and each of the plurality of client devices,

surveying the first and second link quality metrics; and

based on the first and second link quality metrics, selecting the antenna mode for configuring the modal antenna, wherein the antenna mode is selected to improve performance of the communication network.

2. The communication system of claim 1 wherein the modal antenna is connected to the transmit circuit of the repeater.

3. The communication system of claim 2 , wherein each of the antennas coupled to the receive circuit of the repeater comprises a passive antenna.

4. The communication system of claim 2 , wherein, for each of the plurality of client devices, the system is configured to select one of the first node and the repeater for communicating with the client device, wherein the selecting the one of the first node and the repeater is based on the first and second link quality metrics.

5. The communication system of claim 2 , comprising a plurality of modal antennas, each of the modal antennas connected to one of the second communication ports of the repeater.

6. The communication system of claim 5 , one of the plurality of modal antennas being coupled to the receive circuit of the repeater.

7. The communication system of claim 1 wherein the algorithm comprises: selecting the antenna mode of the modal antenna for load balancing the communication network.

8. The communication system of claim 1 , wherein a fault correction process is implemented to improve communication system performance when a repeater circuit has a partial or complete failure; when a failure in the repeater circuit is detected one of the plurality of clients is commanded by the algorithm to serve as a repeater to provide improved communication link performance to one or a plurality of other clients.

9. The communication system of claim 8 wherein the client selected to operate as a repeater comprises a modal antenna connected to a transmit circuit, receive circuit, or combination thereof.

10. The communication system of claim 1 , wherein at least one of the one or more first antennas comprises a modal antenna, the modal antenna capable of configuration in one of a plurality of possible antenna modes, wherein the modal antenna comprises a distinct radiation pattern characteristic when configured in each of the plurality of possible modes.

11. The communication system of claim 1 further comprising a second repeater, the second repeater including at least one modal antenna and being configurable in one of a plurality of possible antenna modes, the modal antenna exhibiting a distinct radiation pattern characteristic in each of the plurality of possible antenna modes, wherein the communication system is adapted to configure the at least one modal antenna of the second repeater for servicing selected client devices of the plurality of client device and optimizing performance of the communication network.

Assignments (3)
CHANGE OF NAME Recorded May 5, 2023
From: ETHERTRONICS, INC.
To: AVX ANTENNA, INC.
Reel/Frame 063549/0336 →
CHANGE OF NAME Recorded May 4, 2023
From: AVX ANTENNA, INC.
To: KYOCERA AVX COMPONENTS (SAN DIEGO), INC.
Reel/Frame 063543/0302 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2019
From: DESCLOS, LAURENT; SHAMBLIN, JEFFREY
To: ETHERTRONICS, INC.
Reel/Frame 048058/0165 →