IP Library Granted Patent US 9,072,082
Granted Patent B2
US 9,072,082 · App. 13/194,751 · Granted Jun 30, 2015

Systems and methods of communication using tunneled direct link setup (TDLS)

Inventors: Ashwani Dwivedi (Andhra Pradesh, IN); Deepak Jindal Kumar (Andhra Pradesh, IN)
Assignee: QUALCOMM Incorporated
H04W76/023H04W52/02H04W8/005H04W48/16H04W72/085H04W76/022H04W76/048
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Quick Facts
Patent No.
US 9,072,082
App. No.
13/194,751
Granted
Jun 30, 2015
Kind
B2
Abstract

Systems and methods for improved communications using tunneled direct link setup are described herein. The systems and methods relate to discovery, link setup, channel switching, multicasting, link selection, and quality of service implemented in conjunction with tunneled direct link setup.

Claims (54)

1. A method implemented in a wireless apparatus, the method comprising:

buffering data for a wireless station that is in a sleep state;

periodically transmitting a message to the wireless station via an access point using an access point link;

setting up a direct link using tunneled direct link setup; receiving a response directly from the wireless station using the direct link;

measuring link quality of the direct link based on the received response, wherein the measured link quality comprises a measured signal to noise ratio;

transmitting a wakeup message to the wireless station via the access point using the access point link, wherein the wakeup message comprises a peer traffic indication frame;

transmitting the buffered data to the wireless station over one of the access point link or the direct link based on at least the measured link quality; and

subsequently switching from the direct link to the access point link or from the access point link to the direct link for transmitting the buffered data based on a subsequently measured link quality,

wherein the direct link enters into a power save mode when the access point link is being used for transmitting the buffered data.

2. The method of claim 1 , further comprising measuring a response time of the wireless station to the transmission of the message.

3. The method of claim 1 , further comprising setting up the direct link in a wireless local area network.

4. The method of claim 1 , wherein the message comprises a unicast discovery request frame.

5. A wireless apparatus comprising:

a memory; and

a processor coupled to the memory, the memory and processor being cooperatively configured to:

buffer data for a wireless station that is in a sleep state;

periodically transmit a message to the wireless station via an access point using an access point link;

setup a direct link using tunneled direct link setup;

receive a response directly from the wireless station using the direct link;

measure link quality of the direct link based on the received response, wherein the measured link quality comprises a measured signal to noise ratio;

transmit a wakeup message to the wireless station via the access point using the access point link, wherein the wakeup message comprises a peer traffic indication frame;

transmit the buffered data to the wireless station over one of the access point link or the direct link based on at least the measured link quality; and

subsequently switching from the direct link to the access point link or from the access point link to the direct link for transmitting the buffered data based on a subsequently measured link quality,

wherein the direct link enters into a power save mode when the access point link is being used for transmitting the buffered data.

6. The wireless apparatus of claim 5 , wherein the memory and processor are further cooperatively configured to measure a response time of the wireless station to the transmission of the message.

7. The wireless apparatus of claim 5 , wherein the memory and processor are further cooperatively configured to setup the direct link in a wireless local area network.

8. The wireless apparatus of claim 5 , wherein the message comprises a unicast discovery request frame.

9. A wireless apparatus comprising:

means for buffering data for a wireless station that is in a sleep state;

means for periodically transmitting a message to the wireless station via an access point using an access point link;

means for setting up a direct link using tunneled direct link setup;

means for receiving a response directly from the wireless station using the direct link;

means for measuring link quality of the direct link based on the received response,

wherein the measured link quality comprises a measured signal to noise ratio;

means for transmitting a wakeup message to the wireless station via the access point using the access point link, wherein the wakeup message comprises a peer traffic indication frame;

means for transmitting the buffered data to the wireless station over one of the access point link or the direct link based on at least the measured link quality; and

means for subsequently switching from the direct link to the access point link or from the access point link to the direct link for transmitting the buffered data based on a subsequently measured link quality,

wherein the direct link enters into a power save mode when the access point link is being used for transmitting the buffered data.

10. The wireless apparatus of claim 9 , further comprising means for measuring a response time of the wireless station to the transmission of the message.

11. The wireless apparatus of claim 9 , further comprising means for setting up the direct link in a wireless local area network.

12. The wireless apparatus of claim 9 , wherein the message comprises a unicast discovery request frame.

13. A non-transitory, computer readable storage medium comprising instructions that when executed by a processor cause an apparatus to:

buffer data for a wireless station that is in a sleep state;

periodically transmit a message to the wireless station via an access point using an access point link;

setup a direct link using tunneled direct link setup;

receive a response directly from the wireless station using the direct link;

measure link quality of the direct link based on the received response, wherein the measured link quality comprises a measured signal to noise ratio;

transmit a wakeup message to the wireless station via the access point using the access point link, wherein the wakeup message comprises a peer traffic indication frame;

transmit the buffered data to the wireless station over one of the access point link or the direct link based on at least the measured link quality; and

subsequently switch from the direct link to the access point link or from the access point link to the direct link for transmitting the buffered data based on a subsequently measured link quality,

wherein the direct link enters into a power save mode when the access point link is being used for transmitting the buffered data.

14. The non-transitory, computer readable storage medium of claim 13 , wherein the instructions when executed further cause the apparatus to measure a response time of the wireless station to the transmission of the message.

15. The non-transitory, computer readable storage medium of claim 13 , wherein the instructions when executed further cause the apparatus to setup the direct link in a wireless local area network.

16. The non-transitory, computer readable storage medium of claim 13 , wherein the message comprises a unicast discovery request frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2011
From: DWIVEDI, ASHWANI; KUMAR, DEEPAK JINDAL
To: QUALCOMM INCORPORATED
Reel/Frame 027214/0794 →
Continuity (2)
Provisional Application 61368980 · Jul 29, 2010
Related Publication 20120051240A1 · Mar 1, 2012