IP Library Granted Patent US 10,375,650
Granted Patent B2
US 10,375,650 · App. 16/142,659 · Granted Aug 6, 2019

Combined open loop/closed loop method for controlling uplink power of a mobile station

Inventors: Sung-Hyuk Shin (Northvale, NJ); Zinan Lin (Basking Ridge, NJ); Donald M. Grieco (Manhasset, NY); Robert L. Olesen (Huntington, NY)
Assignee: InterDigital Technology Corporation
H04W52/242H04L1/1812H04W52/06H04W52/08H04W52/10H04W52/146H04W76/28
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Quick Facts
Patent No.
US 10,375,650
App. No.
16/142,659
Granted
Aug 6, 2019
Kind
B2
Abstract

A method and apparatus are disclosed comprising a combined open loop/closed loop uplink power control scheme for E-UTRA. The combined open and closed loop method for UL intra-cell PC controls the wireless transmit receive unit (WTRU) transmit power spectral density (PSD), PSD Tx , (e.g. power per RB).

Claims (31)

1. A method for controlling transmit power of a wireless transmit receive unit (WTRU) comprising:

receiving signaling indicating an uplink (UL) resource assignment, a power control (PC) correction command and an assigned modulation coding set (MCS);

determining a transmit power based on a combination of a power component corresponding to a bandwidth of the UL resource assignment, an open loop power control (PC) component, a closed loop PC component and a power offset, wherein the open loop PC component comprises a cell specific open loop PC nominal component and a pathloss compensation component based on a filtered pathloss estimate and a pathloss compensation factor, wherein the closed loop PC component comprises a correction factor, wherein the correction factor is based on the PC correction command, and wherein the power offset is related to the assigned MCS; and

applying the transmit power.

2. The method of claim 1 , wherein applying the transmit power comprises:

applying the transmit power in accordance with a timing of a Hybrid Access Repeat Request (HARQ) process.

3. The method of claim 1 , wherein applying the transmit power comprises:

applying the transmit power at a next transmission time of a Hybrid Access Repeat Request (HARQ) process following reception of an UL grant.

4. The method of claim 1 , wherein applying the transmit power comprises applying the transmit power to any of data and control signaling.

5. The method of claim 1 , wherein the open loop PC component comprises a WTRU-specific parameter.

6. The method of claim 1 , wherein the correction factor is zero (0) in an initial uplink transmission.

7. The method of claim 1 , wherein applying the transmit power comprises:

applying a maximum transmit power level instead of the transmit power on condition that the transmit power is greater than or equal to the maximum transmit power level.

8. The method of claim 7 , wherein the maximum power transmit level is based on any of a maximum allowed power and a power class of the WTRU.

9. The method of claim 7 , further comprising receiving signaling indicating a maximum power transmit level.

10. The method of claim 1 , further comprising determining the filtered pathloss estimate as a function of a filter coefficient, an instantaneous pathloss and any of a prior pathloss estimate and a prior filtered pathloss estimate.

11. A wireless transmit receive unit (WTRU) comprising circuitry, including a transmitter, a receiver, a processor and memory, configured to:

receive signaling indicating an uplink (UL) resource assignment, a power control (PC) correction command, an assigned modulation coding set (MCS) and a cell-specific pathloss compensation factor;

determine a transmit power based on a combination of a power component corresponding to a bandwidth of the UL resource assignment, an open loop power control (PC) component, a closed loop PC component and a power offset, wherein the open loop PC component comprises a cell specific open loop PC nominal component and a pathloss compensation component based on a filtered pathloss estimate and a pathloss compensation factor, wherein the closed loop PC component comprises a correction factor, wherein the correction factor is based on the PC correction command, and wherein the power offset is related to the assigned MCS; and

apply the transmit power.

12. The WTRU of claim 11 , wherein the circuitry is configured to apply the determined transmit power in accordance with a timing of a Hybrid Automatic Repeat Request (HARQ) process.

13. The WTRU of claim 11 , wherein the circuitry is configured to:

apply the transmit power at a next transmission time of a Hybrid Access Repeat Request (HARQ) process following reception of an UL grant.

14. The WTRU of claim 11 , wherein the circuitry is configured to apply the transmit power to any of data and control signaling.

15. The WTRU of claim 11 , wherein the open loop PC component comprises a WTRU-specific parameter.

16. The WTRU of claim 11 , wherein the correction factor is zero (0) in an initial uplink transmission.

17. The WTRU claim 11 , wherein the circuitry is configured to:

apply a maximum transmit power level instead of the transmit power on condition that the transmit power is greater than or equal to the maximum transmit power level.

18. The WTRU of claim 17 , wherein the maximum power transmit level is based on any of a maximum allowed power and a power class of the WTRU.

19. The WTRU of claim 17 , wherein the circuitry is configured to receive signaling indicating a maximum power transmit level.

20. The WTRU of claim 11 , wherein the circuitry is configured to determine the filtered pathloss estimate as a function of a filter coefficient, an instantaneous pathloss and any of a prior pathloss estimate and a prior filtered pathloss estimate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2025
From: INTERDIGITAL TECHNOLOGY CORPORATION
To: INTERDIGITAL PATENT HOLDINGS, INC.
Reel/Frame 070837/0530 →
Continuity (10)
Continuation 15415289 · Jan 25, 2017
Continuation 15004244 · Jan 22, 2016
Continuation 14669805 · Mar 26, 2015
Continuation 14329165 · Jul 11, 2014
Continuation 13936846 · Jul 8, 2013
Continuation 12044569 · Mar 7, 2008
Provisional Application 60893575 · Mar 7, 2007
Provisional Application 60895561 · Mar 19, 2007
Provisional Application 60945286 · Jun 20, 2007
Related Publication 20190021061A1 · Jan 17, 2019