IP Library › Granted Patent US 10,375,610
Granted Patent B2
US 10,375,610 · App. 15/579,866 · Granted Aug 6, 2019

Frequency band switching method and terminal

Inventors: Tongbo Wang (Shanghai, CN); Weiqiang Liu (Shanghai, CN)
Assignee: Huawei Technologies Co., Ltd.
H04W36/08H04W36/06H04W76/10H04W36/30H04W84/12
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Quick Facts
Patent No.
US 10,375,610
App. No.
15/579,866
Granted
Aug 6, 2019
Kind
B2
Abstract

A frequency band switching method for a terminal includes: in response to determining that the terminal and a first access point (AP) transmit information by using a first frequency band, detecting a value of a channel quality parameter group, in response to determining that the value of the channel quality parameter group meets a preset condition, sending a connection request to a second AP, the connection request including a request for establishing a connection between the terminal and the second AP by using a second frequency band, and in response to determining that a success message fed back by the second AP according to the connection request is received, establishing, by the terminal, the connection with the second AP by using the second frequency band, and then sending a disconnection instruction to the first AP to break a connection between the terminal and the first AP.

Claims (48)

1. A frequency band switching method for a terminal supporting WiFi communication on at least two frequency bands, the method comprising:

in response to determining that the terminal and a first access point (AP) transmit information by using a first frequency band, detecting a value of a channel quality parameter group of the first frequency band, wherein the channel quality parameter group of the first frequency band comprises at least one channel quality parameter, the at least one channel quality parameter indicating a channel quality of the first frequency band;

in response to determining, by the terminal, that the value of the channel quality parameter group of the first frequency band detected by the terminal meets a preset condition, sending a connection request to a second AP while the terminal is connected with the first AP by using the first frequency band, wherein the connection request comprises a request for establishing a connection between the terminal and the second AP by using a second frequency band; and

in response to determining that a success message fed back by the second AP according to the connection request is received, establishing, by the terminal, the connection with the second AP by using the second frequency band, and then sending a disconnection instruction to the first AP to break a connection between the terminal and the first AP.

2. The method according to claim 1 , wherein the at least one channel quality parameter comprises a received signal strength indicator (RSSI), a physical layer working rate (RATE), and a packet error rate (PER); and

wherein the channel quality parameter group comprises at least one of the RSSI, the RATE, or the PER.

3. The method according to claim 2 , wherein detecting a value of a channel quality parameter group comprises:

collecting the PER by performing volume-weighted exponential moving average.

4. The method according to claim 1 , wherein the channel quality parameter group comprises an RSSI, a RATE, and a PER.

5. The method according to claim 4 , wherein, when the first frequency band is higher than the second frequency band, the preset condition comprises:

a value R of the RSSI is less than a received signal strength indicator switching threshold R 1 ,

a value T of the RATE is less than a physical layer working rate threshold T 1 , and

a value V of the PER is greater than a packet error rate threshold V 1 .

6. The method according to claim 5 , wherein the first frequency band comprises 5 GHz, and the second frequency band comprises 2.4 GHz.

7. The method according to claim 4 , wherein, when the first frequency band is lower than the second frequency band, the preset condition comprises:

a value R of the RSSI is greater than a received signal strength indicator switching threshold R 2 ,

a value T of the RATE is greater than a physical layer working rate threshold T 2 , and

a value V of the PER is less than a packet error rate threshold V 2 .

8. The method according to claim 7 , wherein the first frequency band comprises 2.4 GHz, and the second frequency band comprises 5 GHz.

9. A frequency band switching terminal supporting WiFi communication on at least two frequency bands, the terminal comprising:

at least one processor; and

a non-transitory computer-readable storage medium coupled to the at least one processor and storing programming instructions for execution by the at least one processor, wherein the programming instructions instruct the at least one processor to:

in response to determining that information is transmitted with a first access point (AP) by using a first frequency band, detect a value of a channel quality parameter group of the first frequency band, wherein the channel quality parameter group of the first frequency band comprises at least one channel quality parameter, the at least one channel quality parameter indicating a channel quality of the first frequency band,

in response to determining that the value of the channel quality parameter group of the first frequency band detected by the terminal meets a preset condition, send a connection request to a second AP while the terminal is connected with the first AP by using the first frequency band, wherein the connection request comprises a request for establishing a connection with the second AP by using a second frequency band, and

in response to determining that a success message fed back by the second AP according to the connection request is received, establish the connection with the second AP by using the second frequency band, and then send a disconnection instruction to the first AP, wherein the disconnection instruction is used to break a connection with the first AP.

10. The frequency band switching terminal according to claim 9 , wherein the at least one channel quality parameter comprises a received signal strength indicator (RSSI), a physical layer working rate (RATE), and a packet error rate (PER), and

wherein the channel quality parameter group comprises at least one of the RSSI, the RATE, or the PER.

11. The frequency band switching terminal according to claim 10 , wherein the programming instructions instruct the at least one processor to:

collect the PER by performing volume-weighted exponential moving average.

12. The frequency band switching terminal according to claim 9 , wherein the channel quality parameter group comprises an RSSI, a RATE, and a PER.

13. The frequency band switching terminal according to claim 12 , wherein, when the first frequency band is higher than the second frequency band, the preset condition comprises:

a value R of the RSSI is less than a received signal strength indicator switching threshold R 1 ,

a value T of the RATE is less than a physical layer working rate threshold T 1 , and

a value V of the PER is greater than a packet error rate threshold V 1 .

14. The frequency band switching terminal according to claim 13 , wherein the first frequency band comprises 5 GHz, and the second frequency band comprises 2.4 GHz.

15. The frequency band switching terminal according to claim 12 , wherein, when the first frequency band is lower than the second frequency band, the preset condition comprises:

a value R of the RSSI is greater than a received signal strength indicator switching threshold R 2 ,

a value T of the RATE is greater than a physical layer working rate threshold T 2 , and

a value V of the PER is less than a packet error rate threshold V 2 .

16. The frequency band switching terminal according to claim 15 , wherein the first frequency band comprises 2.4 GHz, and the second frequency band comprises 5 GHz.

17. The frequency band switching terminal according to claim 9 , further comprising:

a first antenna having a first operating frequency around the first frequency band; and

a second antenna having a second operating frequency around the second frequency band.

18. The frequency band switching terminal according to claim 17 , further comprising a radio frequency circuit separately connected to the first antenna and the second antenna.

19. The frequency band switching terminal according to claim 17 , wherein the programming instructions instruct the at least one processor to:

operate the first antenna when using the first frequency band to transmit the information with the first AP,

operate the second antenna when using the second frequency band to transmit second information with the second AP, and

operate the first antenna and the second antenna when establishing the connection with the second AP by using the second frequency band and before sending the disconnection instruction to the first AP by using the first frequency band.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2018
From: WANG, TONGBO; LIU, WEIQIANG
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 046855/0554 →
Continuity (1)
Related Publication 20180184346A1 · Jun 28, 2018