IP Library Granted Patent US 10,470,138
Granted Patent B2
US 10,470,138 · App. 15/292,054 · Granted Nov 5, 2019

Apparatus and methods for virtual channel sensing

Inventor: Young Hoon Kwon (Laguna Niguel, CA)
Assignee: NEWRACOM, INC.
H04W52/244H04W28/0236H04W52/245H04W52/246H04W52/367H04W52/383H04W72/082H04W74/0808H04W84/12
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Quick Facts
Patent No.
US 10,470,138
App. No.
15/292,054
Granted
Nov 5, 2019
Kind
B2
Abstract

A first station is configured to perform a method and system to transmit frames to a second station where the first station is associated with a first basic service set (BSS) and the method manages interference of the transmission amongst overlapping basic service sets (OBSSs). The first station detects a received frame on a wireless medium. The first station determines whether the received frame is from a second station, which is associated with a second BSS. The first station determines a received signal strength of the received frame. The first station determines that the received signal strength is below a first OBSS preamble detection level, where the first OBSS preamble detection level is associated with a first transmission power. The first station then sets the first transmission power as a maximum transmission power used by the first station for all frame transmissions during a time period.

Claims (28)

1. A method of transmitting frames by a first station associated with a first basic service set (BSS) to manage interference amongst overlapping basic service sets (OBSSs), the method comprising:

detecting, by the first station on a wireless medium, a received frame;

determining whether the received frame is from a second station, which is associated with a second BSS;

determining a received signal strength of the received frame;

determining, by the first station, that the received signal strength is below a first OBSS preamble detection level, where the first OBSS preamble detection level is associated with a first transmission power, where bounds of the first OBSS preamble detection level and the first transmission power relationship are governed by an algorithm that expresses an inverse relationship;

setting, by the first station, the first transmission power as a maximum transmission power used by the first station for all frame transmissions during a transmission opportunity;

decrementing, by the first station while the received signal strength is below the first OBSS preamble detection level, a backoff counter until the backoff counter reaches zero, wherein the decrementing of the backoff counter is initiated in response to determining an unconditional network allocation vector (NAV) counter with a first duration has reached zero and a conditional NAV with a second duration has reached zero;

acquiring, by the first station after the backoff counter reaches zero, the transmission opportunity, wherein the first transmission power is the maximum transmission power used by the first station during the transmission opportunity acquired after the backoff counter reaches zero; and

increasing, by the first station, the maximum transmission power used by the first station after the transmission opportunity.

2. The method of claim 1 , further comprising transmitting, by the first station, one or more transmission frames at or below the first transmission power during the transmission opportunity, wherein the one or more transmission frames are all transmissions by the first station during the transmission opportunity.

3. The method of claim 2 , wherein the transmission opportunity is a duration that the first station sets when the first station transmits the one or more transmission frames.

4. The method of claim 1 , wherein the first transmission power is a spectral density for transmitting the one or more transmission frames.

5. The method of claim 1 , wherein the first transmission power is associated with the first OBSS preamble detection level and a second transmission power is associated with a second OBSS preamble detection level, wherein when the first transmission power is greater than the second transmission power then the first OBSS preamble detection level is less than the second OBSS preamble detection level and when the first transmission power is less than the second transmission power then the first OBSS preamble detection threshold is greater than the second OBSS preamble detection level.

6. A station to implement a method of wireless medium assessment where the station is associated with a first basic service set (BSS) to maximize spatial reuse of the wireless medium while limiting interference to overlapping basic service sets (OBSSs), the station comprising:

a radio frequency transmitter to communicate on the wireless medium, the radio frequency transmitter to receive a received frame on the wireless medium; and

a processor communicatively coupled to the radio frequency transmitter, the processor to execute a modified channel assessment module, the modified channel assessment module

to determine whether the received frame is associated with an OBSS,

to determine whether the received frame has a signal strength below an adjusted OBSS preamble detection level, in response to the received frame being associated with the OBSS, where the adjusted OBSS preamble detection level is lower than a reference OBSS preamble detection level,

to set, in response to determining that the signal strength is below the adjusted OBSS preamble detection level, a maximum transmission power of the station to an adjusted transmission power associated with the adjusted OBSS preamble detection level, where bounds of the adjusted OBSS preamble detection level and the adjusted transmission power relationship are governed by an algorithm that expresses an inverse relationship, wherein the maximum transmission power used by the station is used by the station for all frame transmissions during a transmission opportunity,

to decrement, while the received signal strength is below the first OBSS preamble detection level, a backoff counter until the backoff counter reaches zero, wherein the decrementing of the backoff counter is initiated in response to determining an unconditional network allocation vector (NAV) counter with a first duration has reached zero and a conditional NAV with a second duration has reached zero,

to acquire after the backoff counter reaches zero, the transmission opportunity, wherein the first transmission power is the maximum transmission power used by the first station during the transmission opportunity acquired after the backoff counter reaches zero, and

to increase the maximum transmission power used after the transmission opportunity.

7. The station of claim 6 , wherein the reference OBSS preamble detection level is associated with a reference transmission power and the station uses the reference transmission power as the maximum transmission power for all transmission prior to the transmission opportunity.

8. The station of claim 6 , wherein the radio frequency transmitter: transmits one or more frames on the wireless medium below or at the maximum transmission power for the transmission period.

9. The station of claim 8 , wherein the transmission opportunity is a duration that the station sets when transmitting the one or more frames.

10. The station of claim 6 , wherein the maximum transmission power is adjusted by spectral density or channel bandwidth.

11. The station of claim 7 , wherein the reference transmission power is greater than the adjusted transmission power.

12. The station of claim 6 , wherein the reference OBSS preamble detection level is lower than the adjusted OBSS preamble detection level.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2021
From: NEWRACOM, INC.
To: ATLAS GLOBAL TECHNOLOGIES LLC
Reel/Frame 055517/0548 →
CHANGE OF ASSIGNEE ADDRESS Recorded Jun 4, 2019
From: NEWRACOM, INC.
To: NEWRACOM, INC.
Reel/Frame 051462/0699 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2016
From: KWON, YOUNG HOON
To: NEWRACOM, INC.
Reel/Frame 040003/0646 →
Continuity (4)
Provisional Application 62293260 · Feb 9, 2016
Provisional Application 62242197 · Oct 15, 2015
Provisional Application 62240458 · Oct 12, 2015
Related Publication 20170105217A1 · Apr 13, 2017
Cited By (6)
US 12,250,714 US 12,471,140 US 12,532,271 US 12,563,506 US 12,615,581 US 12,672,023