Two-Way Training for Discriminatory Channel Estimation in Wireless MIMO Systems

被引:48
作者
Huang, Chao-Wei [1 ]
Chang, Tsung-Hui [2 ]
Zhou, Xiangyun [3 ]
Hong, Y. -W. Peter [1 ]
机构
[1] Natl Tsing Hua Univ, Inst Commun Engn, Hsinchu 30013, Taiwan
[2] Natl Taiwan Univ Sci & Technol, Dept Elect & Comp Engn, Taipei 106, Taiwan
[3] Australian Natl Univ, Res Sch Engn, Canberra, ACT 0200, Australia
基金
澳大利亚研究理事会;
关键词
Channel estimation; multiple-input multipleoutput (MIMO); physical layer secrecy; two-way training; TIME BLOCK-CODES; BLIND ML DETECTION; SECURE TRANSMISSION; POWER ALLOCATION; ARTIFICIAL-NOISE; CAPACITY; SECRECY; DOWNLINK;
D O I
10.1109/TSP.2013.2245124
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This work examines the use of two-way training to efficiently discriminate the channel estimation performances at a legitimate receiver (LR) and an unauthorized receiver (UR) in a multiple-input multiple-output (MIMO) wireless system. This work improves upon the original discriminatory channel estimation (DCE) scheme proposed by Chang et al. where multiple stages of feedback and retraining were used. While most studies on physical layer secrecy are under the information-theoretic framework and focus directly on the data transmission phase, studies on DCE focus on the training phase and aim to provide a practical signal processing technique to discriminate between the channel estimation performances (and, thus, the effective received signal qualities) at LR and UR. A key feature of DCE designs is the insertion of artificial noise (AN) in the training signal to degrade the channel estimation performance at UR. To do so, AN must be placed in a carefully chosen subspace, based on the transmitter's knowledge of LR's channel, in order to minimize its effect on LR. In this paper, we adopt the idea of two-way training that allows both the transmitter and LR to send training signals to facilitate channel estimation at both ends. Both reciprocal and nonreciprocal channels are considered and a two-way DCE scheme is proposed for each scenario. For mathematical tractability, we assume that all terminals employ the linear minimum mean square error criterion for channel estimation. Based on the mean square error (MSE) of the channel estimates at all terminals, we formulate and solve an optimization problem where the optimal power allocation between the training signal and AN is found by minimizing the MSE of LR's channel estimate subject to a constraint on the MSE achievable at UR. Numerical results show that the proposed DCE schemes can effectively discriminate between the channel estimation and, hence, the data detection performances at LR and UR.
引用
收藏
页码:2724 / 2738
页数:15
相关论文
共 42 条
[1]  
Bloch M, 2009, 2009 INFORMATION THEORY AND APPLICATIONS WORKSHOP, P20
[2]   A tutorial on geometric programming [J].
Boyd, Stephen ;
Kim, Seung-Jean ;
Vandenberghe, Lieven ;
Hassibi, Arash .
OPTIMIZATION AND ENGINEERING, 2007, 8 (01) :67-127
[3]  
Chan TM, 2011, COMPUTATIONAL GEOMETRY (SCG 11), P1
[4]   Training Sequence Design for Discriminatory Channel Estimation in Wireless MIMO Systems [J].
Chang, Tsung-Hui ;
Chiang, Wei-Cheng ;
Hong, Y. -W. Peter ;
Chi, Chong-Yung .
IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2010, 58 (12) :6223-6237
[5]   A Linear Fractional Semidefinite Relaxation Approach to Maximum-Likelihood Detection of Higher-Order QAM OSTBC in Unknown Channels [J].
Chang, Tsung-Hui ;
Hsin, Chien-Wei ;
Ma, Wing-Kin ;
Chi, Chong-Yung .
IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2010, 58 (04) :2315-2326
[6]   Wiretap Channel With Causal State Information [J].
Chia, Yeow-Khiang ;
El Gamal, Abbas .
IEEE TRANSACTIONS ON INFORMATION THEORY, 2012, 58 (05) :2838-2849
[7]   Power control by geometric programming [J].
Chiang, Mung ;
Tan, Chee Wei ;
Palomar, Daniel P. ;
O'Neill, Daniel ;
Julian, David .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2007, 6 (07) :2640-2651
[8]  
CSISZAR I, 1978, IEEE T INFORM THEORY, V24, P339, DOI 10.1109/TIT.1978.1055892
[9]   Downlink Wireless Channel Estimation for Linear MIMO Transmission Precoding [J].
Dong, Xiaofei ;
Ding, Zhi .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2009, 57 (04) :1151-1161
[10]  
Edelman A, 2005, ACT NUMERIC, V14, P233, DOI 10.1017/S0962492904000236