IP Library Granted Patent US 8,432,824
Granted Patent B2
US 8,432,824 · App. 12/769,778 · Granted Apr 30, 2013

Method and apparatus for selecting a receiving apparatus for co-channel operation

Inventor: Zhi-Zhong Yu (San Diego, CA)
Assignee: QUALCOMM Incorporated
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Quick Facts
Patent No.
US 8,432,824
App. No.
12/769,778
Granted
Apr 30, 2013
Kind
B2
Abstract

A method of selecting a receiving apparatus for co-channel operation, the method comprising: transmitting a first and a second data at predetermined respective power levels on a single first channel comprising a single frequency and time slot; receiving the data; measuring a characteristic of the data; transmitting a signal indicating the measured characteristic; receiving the indicating signal; and responding to the received indicating signal by selecting the receiving apparatus for co-channel operation depending on the measured characteristic.

Claims (108)

1. A transmitting apparatus comprising:

a transmitter for transmitting a first set of frames comprising a first frame with a first time interval during which a discovery burst is transmitted containing a first data and a second data at respective first and second power levels on a first channel comprising a single frequency and time slot;

a receiver for receiving a first signal, the first signal indicating a measured characteristic of received;

a selector, responsive to the received first signal, configured to select a receiving apparatus for co-channel operation depending on the measured characteristic; and

wherein the transmitter is configured to, depending on the measured characteristic, transmit a second set of frames that comprise a greater proportion of frames containing discovery bursts relative to the first frame.

2. The transmitting apparatus of claim 1 , wherein the first data comprises a first predefined sequence of data; and the second data comprises a second predefined sequence of data.

3. The transmitting apparatus of claim 1 , wherein the transmitting apparatus is configured:

to transmit the first and second data on the first channel during a first time interval if the measured characteristic is within a predetermined range; and

to transmit the first data on the first channel and the second data on a second channel during a second time interval.

4. The transmitting apparatus of claim 3 wherein the transmitting apparatus is configured to determine the first and second time intervals depending on the measured characteristic.

5. The transmitting apparatus of claim 1 , wherein the transmitter is configured to determine said first and second power levels depending on the measured characteristic.

6. The transmitting apparatus of claim 1 wherein the received data is the first data.

7. The transmitting apparatus of claim 2 , wherein the first and second predefined sequences are training sequences.

8. The transmitting apparatus of claim 3 , wherein the measured characteristic is within the predetermined range when a RxQual is less than 2.

9. The transmitting apparatus of claim 3 , wherein the measured characteristic is within the predetermined range when a bit error probability is greater than or equal to 25.

10. The transmitting apparatus of claim 3 , wherein the second channel comprises a different frequency than the first channel.

11. The transmitting apparatus of claim 3 , wherein the second channel comprises a different time slot than the first channel.

12. The transmitting apparatus of claim 3 , wherein the second channel comprises the same frequency as, but a different time slot than, the first channel.

13. The transmitting apparatus of claim 1 , wherein the transmitting apparatus is configured: to receive a second signal indicating an interference rejection capability of said receiving apparatus; and to further select the receiving apparatus depending on the second signal.

14. A method of selecting a receiving apparatus for co-channel operation, the method comprising:

transmitting, via a transmitting apparatus, a first set of frames comprising a first frame with a first frame time interval during which a discovery burst is transmitted containing a first and a second data at respective first and second power levels on a first channel comprising a single frequency and time slot;

receiving, at the transmitting apparatus, a first signal, wherein the first signal indicates a measured characteristic of received data; and

the transmitting apparatus responding to the received first signal by selecting a receiving apparatus for co-channel operation depending on the measured characteristic; and

the transmitting apparatus transmitting to the selected receiving apparatus, depending on the measured characteristic, a second set of frames that comprise a greater proportion of frames containing discovery bursts relative to the first frame.

15. The method of claim 14 , wherein the first data comprises a first predefined sequence of data; and the second data comprises a second predefined sequence of data.

16. The method of claim 14 , comprising:

transmitting the first and second data on the first channel during a first time interval if the measured characteristic is within a predetermined range; and

transmitting the first data on the first channel and the second data on a second channel during a second time interval.

17. The method of claim 16 further comprising: determining the first and second time intervals depending on the measured characteristic.

18. The method of claim 14 , further comprising:

determining the first and second power levels for transmission of said first and second data depending on the measured characteristic.

19. The method of claim 14 , whereby the received data comprises the first data.

20. The method of claim 15 , wherein the first and second predefined sequences of data are training sequences.

21. The method of claim 16 , wherein the measured characteristic is within the predetermined range when a RxQual is less than 2.

22. The method of claim 16 , wherein the measured characteristic is within the predetermined range when a bit error probability is greater than or equal to 25.

23. The method of claim 16 , wherein the second channel comprises a different frequency than the first channel.

24. The method of claim 16 , wherein the second channel comprises a different time slot than the first channel.

25. The method of claim 16 , wherein the second channel comprises the same frequency as, but a different time slot than, the first channel.

26. The method of claim 14 , further comprising:

receiving a second signal indicating an interference rejection capability of said receiving apparatus; and

further selecting the receiving apparatus depending on the second signal.

27. A transmitting apparatus for selecting a receiving apparatus for co-channel operation, comprising:

a processor;

memory in electronic communication with the processor;

instructions stored in the memory, the instructions being executable by the processor to:

provide a first and a second data;

transmit a first set of frames comprising a first frame with a first time interval during which a discovery burst is transmitted containing the first and second data at respective first and second power levels on a first channel comprising a single frequency and time slot;

receive a first signal transmitted by a receiving apparatus, the first signal indicating a measured characteristic of received data;

respond to the received first signal by selecting a receiving apparatus for co-channel operation depending on the measured characteristic; and

wherein the transmitter is configured to, depending on the measured characteristic, transmit a second set of frames that comprise a greater proportion of frames containing discovery bursts relative to the first frame.

28. The transmitting apparatus of claim 27 , wherein the instructions are further executable by the processor:

to provide the first data so that the first data comprises the first predefined sequence of data, and provide the second data so that the second data comprises the second predefined sequence of data.

29. The transmitting apparatus of claim 27 , wherein the instructions are further executable by the processor:

to transmit the first and second data on the first channel during a first time interval if the measured characteristic is within a predetermined range; and

to transmit the first data on the first channel and the second data on a second channel during a second time interval.

30. The transmitting apparatus of claim 29 , wherein the instructions are further executable by the processor to determine the first and second time intervals depending on the measured characteristic.

31. The transmitting apparatus of claim 27 , wherein the instructions are further executable by the processor to determine said first and said second power levels for transmission of said first and second data depending on the measured characteristic.

32. The transmitting apparatus of claim 27 , wherein the instructions are further executable by the processor to treat the measured characteristic of received data as a measured characteristic of the first data.

33. The transmitting apparatus of claim 28 , wherein the instructions are further executable by the processor to provide the first and second predefined sequences of data so that the sequences are training sequences.

34. The transmitting apparatus of claim 29 , wherein the instructions are executable by the processor so that the measured characteristic is determined to be within the predetermined range when the measured characteristic is a RxQual and has a value of less than 2.

35. The transmitting apparatus of claim 29 , wherein the instructions are further executable by the processor so that the measured characteristic is determined to be within the predetermined range when the measured characteristic is a bit error probability having a value greater than or equal to 25.

36. The transmitting apparatus of claim 29 , wherein the instructions are further executable by the processor so that the second channel comprises a different frequency than the first channel.

37. The transmitting apparatus of claim 29 , wherein the instructions are further executable by the processor so that the second channel comprises a different time slot than the first channel.

38. The transmitting apparatus of claim 29 , wherein the instructions are further executable by the processor so that the second channel comprises the same frequency as, but a different timeslot than, the first channel.

39. A transmitting apparatus for selecting a receiving apparatus for co-channel operation, the apparatus comprising:

means for transmitting a first set of frames comprising a first frame with a first frame time interval during which a discovery burst is transmitted containing a first and a second data at predetermined first and second respective power levels on a single first channel comprising a single frequency and time slot;

means for receiving a first signal, wherein the first signal indicates a measured characteristic of received data; and

means for responding to the received first signal by selecting a receiving apparatus for co-channel operation depending on the measured characteristic; and

wherein the means for transmitting is configured to transmit to the selected receiving apparatus, depending on the measured characteristic, a second set of frames that comprise a greater proportion of frames containing discovery bursts relative to the first frame.

40. The transmitting apparatus of claim 39 , wherein the means for transmitting is configured to transmit the first and second data so that the first data comprises a first predefined sequence of data; and the second data comprises a second predefined sequence of data.

41. The transmitting apparatus of claim 39 , wherein the means for transmitting is configured:

to transmit the first and second data on the first channel during a first time interval if the measured characteristic is within a predetermined range; and

to transmit the first data on the first channel and the second data on a second channel during a second time interval.

42. The transmitting apparatus of claim 41 wherein the transmitting apparatus is configured to determine the first and second time intervals depending on the measured characteristic.

43. The transmitting apparatus of claim 39 wherein the transmitting apparatus is configured to determine said first and said second power levels depending on the measured characteristic.

44. The transmitting apparatus of claim 39 wherein the means for receiving the first signal is configured to treat the characteristic as a characteristic of the first data.

45. The transmitting apparatus of claim 40 wherein the means for transmitting is configured to use training sequences as the first and second predefined sequences.

46. The transmitting apparatus of claim 41 wherein the measured characteristic is within the predetermined range when the measured characteristic is a RxQual having value of less than 2.

47. The transmitting apparatus of claim 41 , wherein the means for receiving the first signal is configured to treat the measured characteristic as being within the predetermined range when the measured characteristic is a bit error probability which has a value greater than or equal to 25.

48. The transmitting apparatus of claim 41 , wherein the means for transmitting is configured to transmit the second data so that the second channel comprises a different frequency than the first channel.

49. The transmitting apparatus of claim 41 , wherein the means for transmitting is configured to transmit the second data so that the second channel comprises a different time slot than the first channel.

50. The transmitting apparatus of claim 49 , wherein the means for transmitting is configured to transmit the second data so that the second channel comprises the same frequency as, but a different time slot than, the first channel.

51. The transmitting apparatus of claim 39 , further comprising a means for receiving a second signal, the second signal indicating an interference rejection capability of said receiving apparatus and wherein: the means for responding is configured to further select the receiving apparatus depending on the second signal.

52. A computer program product comprising:

computer-readable non-transitory media comprising:

code for causing a computer to select a receiving apparatus for co-channel operation, comprising instructions to:

provide a first and a second data;

transmit a first set of frames comprising a first frame with a first time interval during which a discovery burst is transmitted containing the first and second data at respective first and second power levels on a first channel comprising a single frequency and time slot;

receive a first signal transmitted by a receiving apparatus, the first signal indicating a measured characteristic of the data;

respond to the received first signal by selecting a receiving apparatus for co-channel operation depending on the measured characteristic; and

transmit, depending on the measured characteristic, a second set of frames that comprise a greater proportion of frames containing discovery bursts relative to the first frame.

53. The computer program product of claim 52 comprising instructions to:

provide the first and second data so that the first data comprises a first predefined sequence of data, and the second data comprises a second predefined sequence of data.

54. The computer program product of claim 52 comprising instructions to:

transmit the first and second data on the first channel during a first time interval if the measured characteristic is within a predetermined range; and

transmit the first data on the first channel and the second data on a second channel during a second time interval.

55. The computer program product of claim 52 comprising instructions to determine the first and second time intervals depending on the measured characteristic.

56. The computer program product of claim 52 comprising instructions to determine said first and said second power levels depending on the measured characteristic.

57. The computer program product of claim 52 comprising instructions to treat the first signal as indicating a measured characteristic of the first data.

58. The computer program product of claim 53 comprising instructions to transmit the first and second data so that the first data comprises a first predefined sequence and the second data comprises a second predefined sequence.

59. The computer program product of claim 54 comprising instructions to treat the measured characteristic as being within the predetermined range when the measured characteristic is RxQual and has a value less than 2.

60. The computer program product of claim 54 comprising instructions to treat the measured characteristic as being within the predetermined range when the measured characteristic is a bit error probability and has a value greater than or equal to 25.

61. The computer program product of claim 54 comprising instructions to transmit the second data so that the second channel comprises a different frequency than the first channel.

62. The computer program product of claim 54 comprising instructions to transmit the second data so that the second channel comprises a different time slot than the first channel.

63. The computer program product of claim 54 comprising instructions to transmit the second data so that the second channel comprises the same frequency as, but a different time slot than, the first channel.

64. The computer program product of claim 52 comprising instructions:

to receive a second signal indicating an interference rejection capability of said receiving apparatus; and

to further select the receiving apparatus depending on the signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2010
From: YU, ZHI-ZHONG
To: QUALCOMM INCORPORATED
Reel/Frame 024481/0528 →
Continuity (2)
Provisional Application 61174801 · May 1, 2009
Related Publication 20100322092A1 · Dec 23, 2010