Abstract
A method and apparatus for adjusting a channel quality indicator (CQI) feedback period to increase uplink capacity in a wireless communication system are disclosed. The uplink capacity is increased by reducing the uplink interference caused by CQI transmissions. A wireless transmit/receive unit (WTRU) monitors a status of downlink transmissions to the WTRU and sets the CQI feedback period based on the status of the downlink transmissions to the WTRU. A base station monitors uplink and downlink transmission needs. The base station determines the CQI feedback period of at least one WTRU based on the uplink and downlink transmission needs and sends a command to the WTRU to change the CQI feedback period of the WTRU.
A method and apparatus for adjusting a channel quality indicator (CQI) feedback period to increase uplink capacity in a wireless communication system are disclosed. The uplink capacity is increased by reducing the uplink interference caused by CQI transmissions. A wireless transmit/receive unit (WTRU) monitors a status of downlink transmissions to the WTRU and sets the CQI feedback period based on the status of the downlink transmissions to the WTRU. A base station monitors uplink and downlink transmission needs. The base station determines the CQI feedback period of at least one WTRU based on the uplink and downlink transmission needs and sends a command to the WTRU to change the CQI feedback period of the WTRU.
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Declaration Date | Declaration Reference | Declaring Company | Specification Number | ||||||
3G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC |
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No | Family Member | |||
3G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC |
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Yes | Family Member | |||
4G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC | No | Family Member | ||||
4G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC | Yes | Family Member | ||||
5G | 21/12/2017 | ISLD-201711-005 | INTERDIGITAL INC |
S1
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No | Family Member | |||
5G | 20/06/2019 | ISLD-201906-026 | INTERDIGITAL INC |
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No | Family Member |
Specification Information
Specification Information
Technologies
Family Information
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Publication No | Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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US2007047502A1 | 3G | 18/09/2008 | ISLD-200901-001 | INTERDIGITAL INC |
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Yes | Basis Patent | |||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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No | Family Member | |||
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Technologies


Product

Use Cases

Services

Claim
1. In a wireless communication system including a plurality of wireless transmit/receive units (WTRUs) and a base station wherein the WTRUs report a channel quality indicator (CQI) to the base station every CQI feedback period, a method for adjusting the CQI feedback period to increase uplink capacity, the method comprising: a WTRU monitoring a status of downlink transmissions to the WTRU; and the WTRU setting the CQI feedback period based on the status of the downlink transmissions to the WTRU.
2. The method of claim 1 wherein the status of downlink transmissions is monitored by counting the number of consecutive transmission time intervals (TTIs) that have no transmissions to the WTRU.
3. The method of claim 2 wherein the CQI feedback period is set based on the number of consecutive TTIs that have no transmissions to the WTRU.
4. The method of claim 1 wherein the CQI feedback period is set by using a look-up table (LUT) to map the status of downlink transmission to one of a plurality of CQI feedback periods.
5. The method of claim 4 wherein the LUT is configurable by a higher layer signaling.
6. The method of claim 4 wherein the CQI feedback periods are a factor of a normal CQI feedback period.
7. The method of claim 6 wherein the base station monitors CQI feedback from the WTRU every normal CQI feedback period.
8. The method of claim 3 wherein the CQI feedback period is set by using a piece-wise function to map the status of downlink transmission to one of a plurality of CQI feedback periods.
9. The method of claim 3 wherein the WTRU is given an active CQI feedback period and an inactive CQI feedback period, and the active CQI feedback period is selected when the number of consecutive TTIs that have no transmissions to the WTRU exceeds a threshold, otherwise the inactive CQI feedback period is selected
10. In a wireless communication system including a plurality of wireless transmit/receive units (WTRUs) and a base station wherein the WTRUs report a channel quality indicator (CQI) to the base station every CQI feedback period, a method for adjusting CQI feedback period to increase uplink capacity, the method comprising: a base station monitoring uplink and downlink transmission needs; the base station determining whether it is desirable to change the CQI feedback period of at least one WTRU based on the uplink and downlink transmission needs; and if it is determined that it is desirable to change the CQI feedback period, the base station sending a command to the WTRU to change the CQI feedback period of the WTRU
11. The method of claim 10 wherein the base station sends the command to increase the CQI feedback period of the WTRU when the uplink transmission needs exceed a first threshold and the downlink transmission needs are within a second threshold
12. The method of claim 10 wherein the base station sends the command to decrease the CQI feedback period when either the uplink transmission needs are within the first threshold or the downlink transmission needs exceed the second threshold
13. The method of claim 10 wherein the uplink transmission needs are determined based on an amount of data buffered in each of the WTRUs for uplink transmissions and the downlink transmission needs are determined based on an amount of data buffered in the base station for downlink transmissions to each of the WTRUs
14. The method of claim 10 wherein the uplink transmission needs are determined based on a time required to transmit the data buffered in each of the WTRUs, and the downlink transmission needs are determined based on a time required to transmit the data buffered in the base station for each of the WTRUs
15. The method of claim 13 wherein the amount of data buffered in the WTRU is reported by the WTRU
16. The method of claim 15 wherein the amount of data buffered in the WTRU is indicated by a scheduling request sent by the WTRU
17. The method of claim 15 wherein the amount of data buffered in the WTRU is indicated by a happy bit sent by the WTRU
18. The method of claim 15 wherein the amount of data buffered in the WTRU is indicated by traffic volume measurement
19. The method of claim 10 wherein the base station broadcasts the command to all WTRUs.
20. The method of claim 10 wherein the base station sends the command only to concerned WTRUs.
21. The method of claim 10 wherein the downlink transmissions is transmitted via high speed downlink packet access (HSDPA).
22. The method of claim 21 wherein the command is transmitted via a high speed shared control channel (HS-SCCH).
23. The method of claim 22 wherein the command is transmitted by using an unused channelization code set combinations.
24. The method of claim 22 wherein the command is transmitted using a special WTRU identity (ID) for all WTRUs.
25. The method of claim 10 wherein an amount of change of the CQI feedback period in response to the command is predetermined and signaled to the WTRUs, whereby the WTRU changes the CQI feedback period based on the predetermined amount of change.
26. The method of claim 10 wherein a plurality of CQI feedback periods are given to the WTRUs in advance and one of the CQI feedback periods is selected in accordance with the command.
27. The method of claim 10 wherein the CQI feedback periods are determined as a factor of a normal CQI feedback period.
28. The method of claim 27 wherein the base station monitors CQI feedback from the WTRU every normal CQI feedback period.
29. In a wireless communication system including a plurality of wireless transmit/receive units (WTRUs) and a base station wherein the WTRUs report a channel quality indicator (CQI) to the base station via an uplink channel every CQI feedback period, a WTRU for adjusting the CQI feedback period to increase uplink capacity, the WTRU comprising: a downlink status monitor for monitoring a status of downlink transmissions to the WTRU; and a CQI feedback controller for setting the CQI feedback period based on the status of the downlink transmissions to the WTRU.
30. The WTRU of claim 29 wherein the downlink status monitor includes a counter to count the number of consecutive transmission time intervals (TTIs) that have no transmissions to the WTRU, whereby the CQI feedback controller sets the CQI feedback period based on a counter value.
31. The WTRU of claim 30 further comprises a look-up table (LUT) for mapping the counter value to one of a plurality of CQI feedback periods, whereby the CQI feedback controller sets the CQI feedback period by using the LUT.
32. The WTRU of claim 30 wherein the LUT is configurable by a higher layer signaling.
33. The WTRU of claim 30 wherein the CQI feedback periods are determined as a factor of a normal CQI feedback period.
34. The WTRU of claim 30 wherein the CQI feedback controller sets the CQI feedback period by using a piece-wise function.
35. The WTRU of claim 30 wherein the WTRU is given an active CQI feedback period and an inactive CQI feedback period, and the CQI feedback controller selects the active CQI feedback period when the number of consecutive TTIs that have no transmissions to the WTRU exceeds a threshold, otherwise selects the inactive CQI feedback period.
36. In a wireless communication system including a plurality of wireless transmit/receive units (WTRUs) and a base station wherein the WTRUs report a channel quality indicator (CQI) to the base station via an uplink channel every CQI feedback period, a base station for adjusting CQI feedback period to increase uplink capacity, the base station comprising: a monitor for monitoring uplink and downlink transmission needs; and a CQI feedback controller for determining whether it is desirable to change the CQI feedback period of at least one WTRU based on the uplink and downlink transmission needs and sending a command to the WTRU to change the CQI feedback period of the WTRU.
37. The base station of claim 36 wherein the CQI feedback controller sends a command to increase the CQI feedback period of the WTRU when the uplink transmission needs exceed a first threshold and the downlink transmission needs are within a second threshold.
38. The base station of claim 36 wherein the CQI feedback controller sends a command to decrease the CQI feedback period when either the uplink transmission needs are within the first threshold or the downlink transmission needs exceed the second threshold.
39. The base station of claim 36 wherein the monitor monitors the uplink transmission needs based on an amount of data buffered in each of the WTRUs for uplink transmissions and monitors the downlink transmission needs based on an amount of data buffered in the base station for downlink transmissions to each of the WTRUs.
40. The base station of claim 36 wherein the monitor monitors the uplink transmission needs based on a time required to transmit the data buffered in each of the WTRUs, and monitors the downlink transmission needs based on a time required to transmit the data buffered in the base station for each of the WTRUs.
41. The base station of claim 39 wherein the amount of data buffered in the WTRU is reported by the WTRU.
42. The base station of claim 41 wherein the amount of data buffered in the WTRU is indicated by a scheduling request sent by the WTRU.
43. The base station of claim 41 wherein the amount of data buffered in the WTRU is indicated by a happy bit sent by the WTRU.
44. The base station of claim 41 wherein the amount of data buffered in the WTRU is indicated by traffic volume measurement.
45. The base station of claim 36 wherein the CQI feedback controller broadcasts the command to all WTRUs.
46. The base station of claim 36 wherein the CQI feedback controller sends the command only to concerned WTRUs.
47. The base station of claim 36 wherein the downlink transmissions is transmitted via high speed downlink packet access (HSDPA).
48. The base station of claim 47 wherein the CQI feedback controller sends the command via a high speed shared control channel (HS-SCCH).
49. The base station of claim 48 wherein the CQI feedback controller sends the command using an unused channelization code set combinations.
50. The base station of claim 48 wherein the CQI feedback controller sends the command using a special WTRU identity (ID) for all WTRUs.
51. The base station of claim 36 wherein the monitor monitors CQI feedback from the WTRU every normal CQI feedback period.']
Associated Portfolios

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SUMMARY
ClaimChart-EP1917739A2-STO
Patent number:EP1917739A2
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.