Efficient and Low-Complex Signal Detection with Iterative Feedback in Wireless MIMO-OFDM Systems

Author:

Chen Ying1ORCID,Tang Yue23ORCID,Jiang Bin2ORCID,Zhao Yinan2ORCID,Bao Jianrong24ORCID,Tang Xianghong2ORCID

Affiliation:

1. Information Engineering College, Hangzhou Dianzi University, Hangzhou 311305, China

2. School of Communication Engineering, Hangzhou Dianzi University, Hangzhou 310018, China

3. Sichuan Provincial Energy Investment Group Co., Ltd., Chengdu 610041, China

4. National Mobile Communications Research Laboratory, Southeast University, Nanjing 210096, China

Abstract

To solve error propagation and exorbitant computational complexity of signal detection in wireless multiple-input multiple-output-orthogonal frequency division multiplexing (MIMO-OFDM) systems, a low-complex and efficient signal detection with iterative feedback is proposed via a constellation point feedback optimization of minimum mean square error-ordered successive interference cancellation (MMSE-OSIC) to approach the optimal detection. The candidate vectors are formed by selecting the candidate constellation points. Additionally, the vector most approaching received signals is chosen by the maximum likelihood (ML) criterion in formed candidate vectors to reduce the error propagation by previous erroneous decision, thus improving the detection performance. Under a large number of matrix inversion operations in the above iterative MMSE process, effective and fast signal detection is hard to be achieved. Then, a symmetric successive relaxation iterative algorithm is proposed to avoid the complex matrix inversion calculation process. The relaxation factor and initial iteration value are reasonably configured with low computational complexity to achieve good detection close to that of the MMSE with fewer iterations. Simultaneously, the error diffusion and complexity accumulation caused by the successive detection of the subsequent OSIC scheme are also improved. In addition, a method via a parallel coarse and fine detection deals with several layers to both reduce iterations and improve performance. Therefore, the proposed scheme significantly promotes the MIMO-OFDM performance and thus plays an irreplaceable role in the future sixth generation (6G) mobile communications and wireless sensor networks, and so on.

Funder

Zhejiang Provincial Natural Science Foundation of China

National Natural Science Foundation of China

Scientific Research Fund of Hangzhou Dianzi University Information Engineering College

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference21 articles.

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2. Analysis of MIMO-OFDM signals with optimum equalization;Aggarwal;Int. J. Comput. Trends Technol.,2013

3. Liu, Y. (2017, January 14–15). Linear mmse interference cancellation detection for MIMO-OFDM system. Proceedings of the 2017 9th International Conference on Measuring Technology and Mechatronics Automation (ICMTMA), Changsha, China.

4. Iterative detection and decoding with an improved V-BLAST for MIMO-OFDM systems;Lee;IEEE J. Sel. Areas Commun.,2006

5. Tran, V.D., Lam, D.K., and Tran, T.H. (2023). Hardware-based architecture for DNN wireless communication models. Sensors, 23.

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