IP Library Granted Patent US 11,653,230
Granted Patent B2
US 11,653,230 · App. 17/394,682 · Granted May 16, 2023

Optimization of distributed Wi-Fi networks

Inventors: Balaji Rengarajan (Campbell, CA); William McFarland (Portola Valley, CA); Qinghai Gao (Sunnyvale, CA); Andrea Goldsmith (Menlo Park, CA); Vikram Chandrasekhar (Sunnyvale, CA); Ritesh K. Madan (Berkley, CA); Santhosh Krishna (Sunnyvale, CA)
Assignee: PLUME DESIGN, INC.
H04W24/02H04W84/12
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Quick Facts
Patent No.
US 11,653,230
App. No.
17/394,682
Granted
May 16, 2023
Kind
B2
Abstract

Systems and methods for Wi-Fi network optimization include receiving inputs related to signal strength and interference during operation of the Wi-Fi network; performing an optimization to determine operational parameters of one or more access points in the Wi-Fi network, wherein the optimization is based on the inputs and is configured to address an objective associated with the Wi-Fi network; and providing outputs comprising the operational parameters for configuration of the Wi-Fi network, based on the optimization, wherein the operational parameters include channel and bandwidth selection, and topology of the one or more access points.

Claims (35)

1. A method, implemented in a controller which is communicatively coupled to a Wi-Fi network, the method comprising:

receiving inputs related to signal strength and interference during operation of the Wi-Fi network;

performing an optimization to determine operational parameters of one or more access points in the Wi-Fi network, wherein the optimization is based on the inputs and is configured to address an objective associated with the Wi-Fi network; and

providing outputs comprising the operational parameters for configuration of the Wi-Fi network, based on the optimization, wherein the operational parameters include channel and bandwidth selection of the one or more access points, wherein the channel includes a channel in one or more of a 2.4 GHz band and a 5 GHz band and the bandwidth includes a size of the channel including any of 20 MHz, 40 MHz, 80 MHz, and 160 MHz.

2. The method of claim 1 , wherein the one or more access points include a plurality of access points collectively forming the Wi-Fi network.

3. The method of claim 2 , wherein the plurality of access points utilize a same channel for backhaul links and client links.

4. The method of claim 2 , wherein the plurality of access points utilize different channels for backhaul links and client links.

5. The method of claim 1 , wherein the optimization is performed with one or more additional Wi-Fi networks in a cluster.

6. The method of claim 1 , wherein the controller is in a cloud.

7. The method of claim 1 , further comprising

performing the providing based on a hysteresis threshold, the hysteresis threshold configured to maintain stability of the Wi-Fi network by preventing configuration changes with minor changes in operational circumstances of the Wi-Fi network.

8. The method of claim 1 , wherein some of the one or more access points are assigned a bandwidth less than a maximum supported bandwidth, in the optimization.

9. A controller comprising:

a network interface communicatively coupled to a plurality of Wi-Fi networks;

one or more processors communicatively coupled to the network interface; and

memory storing instructions that, when executed, cause the one or more processors to

receive inputs related to signal strength and interference during operation of a Wi-Fi network of the plurality of Wi-Fi networks,

perform an optimization to determine operational parameters of one or more access points in the Wi-Fi network, wherein the optimization is based on the inputs and is configured to address an objective associated with the Wi-Fi network, and

provide outputs comprising the operational parameters for configuration of the Wi-Fi network, based on the optimization, wherein the operational parameters include channel and bandwidth selection of the one or more access points, wherein the channel includes a channel in one or more of a 2.4 GHz band and a 5 GHz band and the bandwidth includes a size of the channel including any of 20 MHz, 40 Mhz, 80 Mhz, and 160 MHz.

10. The controller of claim 9 , wherein the one or more access points include a plurality of access points collectively forming the Wi-Fi network.

11. The controller of claim 10 , wherein the plurality of access points utilize a same channel for backhaul links and client links.

12. The controller of claim 10 , wherein the plurality of access points utilize different channels for backhaul links and client links.

13. The controller of claim 9 , wherein the optimization is performed with one or more additional Wi-Fi networks of the plurality of Wi-Fi networks in a cluster.

14. The controller of claim 9 , wherein the instructions that, when executed, cause the one or more processors to

provide the outputs based on a hysteresis threshold, the hysteresis threshold configured to maintain stability of the Wi-Fi network by preventing configuration changes with minor changes in operational circumstances of the Wi-Fi network.

15. The controller of claim 9 , wherein some of the one or more access points are assigned a bandwidth less than a maximum supported bandwidth, in the optimization.

16. A non-transitory computer-readable medium comprising instructions that, when executed, cause one or more processors to perform steps of:

receiving inputs related to signal strength and interference during operation of the Wi-Fi network;

performing an optimization to determine operational parameters of one or more access points in the Wi-Fi network, wherein the optimization is based on the inputs and is configured to address an objective associated with the Wi-Fi network; and

providing outputs comprising the operational parameters for configuration of the Wi-Fi network, based on the optimization, wherein the operational parameters include channel and bandwidth selection of the one or more access points, wherein the channel includes a channel in one or more of a 2.4 GHz band and a 5 GHz band and the bandwidth includes a size of the channel including any of 20 MHz, 40 MHz, 80 MHz, and 160 MHz.

17. The non-transitory computer-readable medium of claim 16 , wherein the one or more access points include a plurality of access points collectively forming the Wi-Fi network.

18. The non-transitory computer-readable medium of claim 17 , wherein the plurality of access points utilize a same channel for backhaul links and client links.

19. The non-transitory computer-readable medium of claim 17 , wherein the plurality of access points utilize different channels for backhaul links and client links.

20. The non-transitory computer-readable medium of claim 16 , wherein the steps further include

performing the providing based on a hysteresis threshold, the hysteresis threshold configured to maintain stability of the Wi-Fi network by preventing configuration changes with minor changes in operational circumstances of the Wi-Fi network.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: GOLDSMITH, ANDREA; CHANDRASEKHAR, VIKRAM; MADAN, RITESH K.; KRISHNA, SANTHOSH
To: ACCELERA MOBILE BROADBAND, INC.
Reel/Frame 057150/0928 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: GOLDSMITH, ANDREA; CHANDRASEKHAR, VIKRAM; MADAN, RITESH K.
To: ACCELERA MOBILE BROADBAND, INC.
Reel/Frame 057151/0096 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: WILDFIRE.EXCHANGE, INC.
To: PLUME DESIGN, INC.
Reel/Frame 057151/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: RENGARAJAN, BALAJI; MCFARLAND, WILLIAM; GAO, QINGHAI
To: PLUME DESIGN, INC.
Reel/Frame 057151/0261 →
Continuity (8)
Continuation 16032584 · Jul 11, 2018
Continuation In Part 15659969 · Jul 26, 2017
Continuation In Part 15463154 · Mar 20, 2017
Continuation 13857096 · Apr 4, 2013
Provisional Application 62310596 · Mar 18, 2016
Provisional Application 61698426 · Sep 7, 2012
Provisional Application 61621316 · Apr 6, 2012
Related Publication 20210368362A1 · Nov 25, 2021