IP Library › Granted Patent US 12,615,566
Granted Patent B2
US 12,615,566 · App. 17/896,701 · Granted Apr 28, 2026

OFDMA assisted fast roaming in label switched mobile networks

Inventors: Jun Liu (Shanghai, CN); Yaojun Wei (Shanghai, CN); Jianhui Wu (Shanghai, CN); Xia Ke (Shanghai, CN)
H04W36/08H04W8/02H04W36/0061H04W36/00837
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Quick Facts
Patent No.
US 12,615,566
App. No.
17/896,701
Granted
Apr 28, 2026
Kind
B2
Abstract

In one embodiment, a wireless access point receives, from a mobile system, a broadcast beacon that includes a roaming notification indicating that the mobile system intends to roam to the wireless access point. The wireless access point allocates, after receiving the broadcast beacon from the mobile system, an orthogonal frequency-division multiple access resource unit for use by the mobile system. The wireless access point sends a trigger message to the mobile system that includes an indication of the orthogonal frequency-division multiple access resource unit. The wireless access point performs, after sending the trigger message, a handoff exchange with the mobile system using the orthogonal frequency-division multiple access resource unit to attach the mobile system to the wireless access point.

Claims (39)

1 . A method comprising:

receiving, at a wireless access point and from a mobile system, a broadcast beacon that includes a roaming notification indicating that the mobile system intends to roam to the wireless access point;

allocating, by the wireless access point and after receiving the broadcast beacon from the mobile system, an orthogonal frequency-division multiple access resource unit comprising a sub-channel within a single wireless frequency channel for use by the mobile system;

sending, by a wireless transmission from the wireless access point, a trigger message to the mobile system while the mobile system is unassociated with the wireless access point, the trigger message identifying the orthogonal frequency-division multiple access resource unit allocated by the wireless access point for uplink transmission by the mobile system during a handoff exchange; and

performing, by the wireless access point and after sending the trigger message, the handoff exchange with the mobile system using the orthogonal frequency-division multiple access resource unit to attach the mobile system to the wireless access point.

2 . The method as in claim 1 , wherein the orthogonal frequency-division multiple access resource unit is a wireless sub-channel.

3 . The method as in claim 1 , wherein the roaming notification of the broadcast beacon from the mobile system comprises a basic service set identifier (BSSID) of the wireless access point.

4 . The method as in claim 1 , wherein performing the handoff exchange with the mobile system comprises:

receiving a handoff request from the mobile system using the orthogonal frequency-division multiple access resource unit; and

sending a handoff response to the mobile system.

5 . The method as in claim 1 , wherein the handoff exchange establishes a label-switched path between the wireless access point and the mobile system.

6 . The method as in claim 1 , wherein the roaming notification comprises a buffer status report.

7 . The method as in claim 6 , wherein the wireless access point selects the orthogonal frequency-division multiple access resource unit based in part on the buffer status report.

8 . The method as in claim 1 , wherein the wireless access point selects the orthogonal frequency-division multiple access resource unit from among a set of resource units reserved on the wireless access point for use with roaming clients.

9 . The method as in claim 1 , wherein mobile system stops including the roaming notification in its broadcast beacons after performing the handoff exchange with the wireless access point.

10 . The method as in claim 1 , wherein the mobile system comprises a passenger vehicle or an autonomous vehicle.

11 . An apparatus, comprising:

one or more interfaces to communicate with a wireless network;

a processor coupled to the one or more interfaces that is configured to execute one or more processes; and

a memory configured to store a process that is executable by the processor, the process when executed configured to:

receive, from a mobile system, a broadcast beacon that includes a roaming notification indicating that the mobile system intends to roam to the apparatus;

allocate, after receiving the broadcast beacon from the mobile system, an orthogonal frequency-division multiple access resource unit comprising a sub-channel within a single wireless frequency channel for use by the mobile system;

send, by a wireless transmission from the apparatus, a trigger message to the mobile system while the mobile system is unassociated with the apparatus, the trigger message identifying the orthogonal frequency-division multiple access resource unit allocated by the apparatus for uplink transmission by the mobile system during a handoff exchange; and

perform, after sending the trigger message, the handoff exchange with the mobile system using the orthogonal frequency-division multiple access resource unit to attach the mobile system to the apparatus.

12 . The apparatus as in claim 11 , wherein the orthogonal frequency-division multiple access resource unit is a wireless sub-channel.

13 . The apparatus as in claim 11 , wherein the roaming notification of the broadcast beacon from the mobile system comprises a basic service set identifier (BSSID) of the apparatus.

14 . The apparatus as in claim 11 , wherein the apparatus performs the handoff exchange with the mobile system by:

receiving a handoff request from the mobile system using the orthogonal frequency-division multiple access resource unit; and

sending a handoff response to the mobile system.

15 . The apparatus as in claim 11 , wherein the handoff exchange establishes a label-switched path between the apparatus and the mobile system.

16 . The apparatus as in claim 11 , wherein the roaming notification comprises a buffer status report.

17 . The apparatus as in claim 16 , wherein the apparatus selects the orthogonal frequency-division multiple access resource unit based in part on the buffer status report.

18 . The apparatus as in claim 11 , wherein the apparatus selects the orthogonal frequency-division multiple access resource unit from among a set of resource units reserved on the apparatus for use with roaming clients.

19 . The apparatus as in claim 11 , wherein mobile system stops including the roaming notification in its broadcast beacons after performing the handoff exchange with the apparatus.

20 . A tangible, non-transitory, computer-readable medium storing program instructions that cause a wireless access point to execute a process comprising:

receiving, at the wireless access point and from a mobile system, a broadcast beacon that includes a roaming notification indicating that the mobile system intends to roam to the wireless access point;

allocating, by the wireless access point and after receiving the broadcast beacon from the mobile system, an orthogonal frequency-division multiple access resource unit comprising a sub-channel within a single wireless frequency channel for use by the mobile system;

sending, by a wireless transmission from the wireless access point, a trigger message to the mobile system while the mobile system is unassociated with the wireless access point, the trigger message identifying the orthogonal frequency-division multiple access resource unit allocated by the wireless access point for uplink transmission by the mobile system during a handoff exchange; and

performing, by the wireless access point and after sending the trigger message, the handoff exchange with the mobile system using the orthogonal frequency-division multiple access resource unit to attach the mobile system to the wireless access point.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2022
From: LIU, JUN; WEI, YAOJUN; WU, JIANHUI; KE, XIA
To: CISCO TECHNOLOGY, INC.
Reel/Frame 060915/0163 →
Continuity (1)
Related Publication 20240073759A1 · Feb 29, 2024
References Cited (16)
US 7394800B2 · Sood et al. · 2008 [cited by applicant]
US 7680079B2 · Jeong et al. · 2010 [cited by applicant]
US 8380196B2 · Andras et al. · 2013 [cited by applicant]
US 9769708B2 · Bisti et al. · 2017 [cited by applicant]
US 11044648B2 · Comstock · 2021 [cited by applicant]
US 20050059437A1 · Son · 2005 [cited by examiner]
US 20050096051A1 · Lee · 2005 [cited by examiner]
US 20050117539A1 · Song · 2005 [cited by examiner]
US 20050124345A1 · Laroia · 2005 [cited by examiner]
US 20090232089A1 · Lott · 2009 [cited by examiner]
US 20180020472A1 · Lin et al. · 2018 [cited by applicant]
US 20210273757A1 · Shellhammer · 2021 [cited by examiner]
US 20230105571A1 · Mohamed · 2023 [cited by examiner]
“Resource Unit”, online: https://en.wikipedia.org/wiki/Resource_Unit, Aug. 17, 2021, accessed Aug. 11, 2022, 3 pages, Wikimedia Foundation, Inc. [cited by applicant]
Avdotin, et al., “OFDMA Resource Allocation for Real-Time Applications in IEEE 802.11ax Networks”, online: https://arxiv.org/pdf/1909.00603.pdf, Sep. 2, 2019, 3 pages, arXiv.org. [cited by applicant]
Kim, et al., “IEEE P802.11 Wireless LANs”, Doc: IEEE 802.11-17/0353r2, Mar. 2017, 4 pages, LG Electronics. [cited by applicant]