IP Library › Granted Patent US 9,686,005
Granted Patent B2
US 9,686,005 · App. 14/765,192 · Granted Jun 20, 2017

Method and apparatus for feeding back channel estimation in multi-input multi-output system

Inventors: Younsun Kim (Gyeonggi-do, KR); Sooyong Choi (Seoul, KR); Taehyoung Kim (Seoul, KR); Kyungsik Min (Seoul, KR); Jungkyun Park (Seoul, KR); Juho Lee (Gyeonggi-do, KR); Hyojin Lee (Gyeonggi-do, KR); Minchae Jung (Seoul, KR); Hyoungju Ji (Seoul, KR)
Assignees: Samsung Electronics Co., Ltd; Industry-Academic Cooperation Foundation, Yonsei University
H04B7/0632H04B7/0413H04B7/0452H04B7/0456H04B7/0617H04B7/0639H04B7/0641H04L1/0026H04L1/0029H04L1/0072H04L1/0078H04L1/06H04W88/08
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Quick Facts
Patent No.
US 9,686,005
App. No.
14/765,192
Granted
Jun 20, 2017
Kind
B2
Abstract

Disclosed are a method and an apparatus for feeding back channel estimation in a MIMO system. A terminal receives a reference signal for estimating a channel from a base station; estimates the channel based on the reference signal; generates channel estimation information according to the channel estimation result and generates error information indicating an error of the channel estimation; and transmits feedback information including the channel estimation information and the error information to the base station.

Claims (40)

1. A method of feeding back channel estimation of a terminal in a Multi-Input Multi-Output (MIMO) system, the method comprising:

receiving a reference signal for estimating a channel from a base station;

estimating the channel based on the reference signal;

generating channel estimation information according to the channel estimation result, and generating error information indicating an error of the channel estimation; and

transmitting feedback information including the channel estimation information and the error information to the base station,

wherein the error information is determined based on a number of antennas, a number of bits of a precoding matrix index (PMI) of the feedback information, and a number of bits of the error information.

2. The method of claim 1 , wherein the error information corresponds to an error between a quantized channel determined by the channel estimation and an actual wireless channel.

3. The method of claim 1 , wherein the error information is quantized based on a codebook predetermined according to the number of bits allocated for the error information in the feedback information.

4. The method of claim 1 , wherein a part of bits previously allocated for the channel estimation information is allocated for the error information again, in the feedback information.

5. The method of claim 1 , wherein the feedback information comprises the PMI and a Channel Quality Indicator (CQI) for a wideband, error information for each subband, and a differential value of the CQI.

6. A method of receiving channel estimation feedback of a base station in a MIMO system, the method comprising:

transmitting a reference signal for channel estimation of a terminal to the terminal;

receiving feedback information including channel estimation information generated based on the reference signal and error information indicating an error of the channel estimation, from the terminal;

estimating channel quality information of the terminal by applying the error information to the channel estimation information; and

transmitting data scheduled based on the estimated channel quality information, to the terminal,

wherein the error information is determined based on a number of antennas, a number of bits of a precoding matrix index (PMI) of the feedback information, and a number of bits of the error information.

7. The method of claim 6 , wherein the error information corresponds to an error between a quantized channel determined by the channel estimation and an actual wireless channel.

8. The method of claim 6 , wherein the error information is quantized based on a codebook predetermined according to the number of bits allocated for the error information in the feedback information.

9. The method of claim 6 , wherein a part of bits previously allocated for the channel estimation information is allocated for the error information again, in the feedback information.

10. The method of claim 6 , wherein the feedback information comprises the PMI and a CQI for a wideband, error information for each subband, and a differential value of the CQI.

11. An apparatus for feeding back channel estimation of a MIMO system, the apparatus comprising:

a reception unit that receives a reference signal for channel estimation from a base station;

a channel estimation unit that estimates a channel based on the reference signal;

a feedback information generation unit that generates channel estimation information according to the channel estimation result, and generates error information indicating an error of the channel estimation; and

a feedback transmission unit that transmits feedback information including the channel estimation information and the error information, to the base station,

wherein the error information is determined based on a number of antennas, a number of bits of a precoding matrix index (PMI) of the feedback information, and a number of bits of the error information.

12. The apparatus of claim 11 , wherein the error information corresponds to an error between a quantized channel determined by the channel estimation and an actual wireless channel.

13. The apparatus of claim 11 , wherein the error information is quantized based on a codebook predetermined according to the number of bits allocated for the error information in the feedback information.

14. The apparatus of claim 11 , wherein a part of bits previously allocated for the channel estimation information is allocated for the error information again, in the feedback information.

15. The apparatus of claim 11 , wherein the feedback information comprises the PMI and a CQI for a wideband, error information for each subband, and a differential value of the CQI.

16. An apparatus for receiving channel estimation feedback of a MIMO system, the apparatus comprising:

a transmission unit that transmits a reference signal for channel estimation of a terminal to the terminal;

a feedback information reception unit that receives feedback information including channel estimation information generated based on the reference signal and error information indicating an error of the channel estimation, from the terminal;

a channel quality estimation unit that estimates channel quality information of the terminal by applying the error information to the channel estimation information; and

a scheduling unit that transmits data scheduled based on the estimated channel quality information, to the terminal,

wherein the error information is determined based on a number of antennas, a number of bits of a precoding matrix index (PMI) of the feedback information, and a number of bits of the error information.

17. The apparatus of claim 16 , wherein the error information corresponds to an error between a quantized channel determined by the channel estimation and an actual wireless channel.

18. The apparatus of claim 16 , wherein the error information is quantized based on a codebook predetermined according to the number of bits allocated for the error information in the feedback information.

19. The apparatus of claim 16 , wherein a part of bits previously allocated for the channel estimation information is allocated for the error information again, in the feedback information.

20. The apparatus of claim 16 , wherein the feedback information comprises the PMI and a CQI for a wideband, error information for each subband, and a differential value of the CQI.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2015
From: KIM, YOUNSUN; CHOI, SOOYONG; KIM, TAEHYOUNG; MIN, KYUNGSIK; PARK, JUNGKYUN; LEE, JUHO; JUNG, MINCHAE; JI, HYOUNGJU
To: SAMSUNG ELECTRONICS CO., LTD.; INDUSTRY-ACADEMIC COOPERATION FOUNDATION, YONSEI UNIVERSITY
Reel/Frame 036736/0066 →
Priority Claims (1)
KR 10-2013-0011306 · Jan 31, 2013 · national
Continuity (1)
Related Publication 20150372741A1 · Dec 24, 2015