IP Library Granted Patent US 8,737,347
Granted Patent B2
US 8,737,347 · App. 13/497,150 · Granted May 27, 2014

Pilot and channel estimation method for SDMA MIMO transmission downlink

Inventors: Xiqi Gao (Nanjing, CN); Bin Jiang (Nanjing, CN); Xiaohu You (Nanjing, CN); Teer Ba (Nanjing, CN); Shi Jin (Nanjing, CN); Jue Wang (Nanjing, CN); Dongming Wang (Nanjing, CN); Yanxiang Jiang (Nanjing, CN)
Assignee: Southeast University
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Quick Facts
Patent No.
US 8,737,347
App. No.
13/497,150
Granted
May 27, 2014
Kind
B2
Abstract

A pilot and channel estimation method for SDMA MIMO transmission downlink is provided in the present invention, and the method provides possibility for saving the orthogonal pilot resources; the pilot signals of different users in the transmitting antenna domain can occupy the same time-frequency resources, and thereby the pilot overhead of system resources can be reduced greatly; the method includes: for the MIMO transmission downlink that employs pre-coding for SDMA, taking the quantity of orthogonal pilot resources occupied by the users in the pre-coding domain as the number of data streams that can be transmitted or the number of spatial dimensions occupied first, at the transmitting end of the base station; then, performing SDMA transmission pre-coding for the orthogonal pilots in the pre-coding domain in the same way as the data signals, to obtain the pilot signals of the users in the transmitting antenna domain; wherein, the pilots of the users in the pre-coding domain can be orthogonal in the frequency domain or code domain, and the pilots of different users in the pre-coding domain can be identical or not identical to each other; the pilot signals of different users in the transmitting antenna domain can occupy the same time-frequency resources.

Claims (13)

1. A pilot and channel estimation method, for SDMA MIMO transmission downlink, including:

for the MIMO transmission downlink that employs pre-coding for SDMA, taking the quantity of orthogonal pilot resources occupied by one or more users in a pre-coding domain as a number of data streams that are transmitted or a number of spatial dimensions occupied first, at the transmitting end of a base station; then,

performing SDMA transmission pre-coding for one or more orthogonal pilots in the pre-coding domain in the same way as one or more data signals, to obtain one or more pilot signals of the users in a transmitting antenna domain;

wherein, the one or more pilot signals of the users in the pre-coding domain are orthogonal in a frequency domain or a code domain, and the one or more pilot signals of different users in the pre-coding domain are identical or not identical to each other; and the one or more pilot signals of different users in the transmitting antenna domain occupy same time-frequency resources; and

at the receiving end of the users, obtaining a channel state information required for coherent detection and channel measurement for the users, with one or more transmitted pilot signals and one or more received known pilot signals.

2. The pilot and channel estimation method, for SDMA MIMO transmission downlink according to claim 1 , wherein,

the pre-coding is one of short-time pre-coding that utilizes short-time channel state information or long-time pre-coding that utilizes long-time channel state information;

if short-time pre-coding is used to implement SDMA, both the pilot signals and data signals are transmitted in a short-time pre-coding domain;

if long-time pre-coding is used to implement SDMA, the pilot signals are transmitted in a long-time pre-coding domain, while the data signals are transmitted in the long-time pre-coding domain or in the pre-coding domain where long-time pre-coding and short-time pre-coding are compounded.

3. The pilot and channel estimation method, for SDMA MIMO transmission downlink according to claim 1 , wherein,

the channel state information required for coherent detection and channel measurement for the users refers to the channel state information in the pre-coding domain for implementing SDMA, and

at least one of a matrix, vector or scalar, used to describe the channel state information at a single frequency point is the product of a corresponding channel matrix or vector of the users and the pre-coding matrix or vector of the users;

one or more compounded channel parameters in the pre-coding domain of the users are estimated initially using a common least square channel estimation method.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2018
From: SOUTHEAST UNIVERSITY
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 045484/0763 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2012
From: GAO, XIQI; JIANG, BIN; YOU, XIAOHU; BA, TEER; JIN, SHI; WANG, JUE; WANG, DONGMING; JIANG, YANXIANG
To: SOUTHEAST UNIVERSITY
Reel/Frame 027894/0730 →
Priority Claims (1)
CN 2010 1 0184565 · May 27, 2010 · national
Continuity (1)
Related Publication 20120182964A1 · Jul 19, 2012