Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system

Abstract This study discusses the integrated system of full‐duplex (FD) multiple‐input‐multiple‐output (MIMO) communication and MIMO radar, which has been rarely considered in published studies. Such an integrated system is composed of a base station and several uplink (UL) and downlink (DL) users,...

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Main Authors: Shengnan Shi, Zishu He, Ziyang Cheng
Format: Article
Language:English
Published: Wiley 2022-09-01
Series:IET Signal Processing
Subjects:
Online Access:https://doi.org/10.1049/sil2.12099
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author Shengnan Shi
Zishu He
Ziyang Cheng
author_facet Shengnan Shi
Zishu He
Ziyang Cheng
author_sort Shengnan Shi
collection DOAJ
description Abstract This study discusses the integrated system of full‐duplex (FD) multiple‐input‐multiple‐output (MIMO) communication and MIMO radar, which has been rarely considered in published studies. Such an integrated system is composed of a base station and several uplink (UL) and downlink (DL) users, and is supposed to simultaneously implement three functionalities, that is, target detection, UL and DL communications. The degrees of freedom of system design involve the precoding and combining schemes for UL and DL communications, as well as the receiving filter for radar echo. An optimization problem is developed to maximise a compound communication sum‐rate metric subject to the SINR constraint imposed on target detection performance. The resulted non‐convex and NP‐hard problem is first divided into two sub‐problems. Then, for one of the sub‐problems that is still intractable, its solution is iteratively obtained based on the fractional programing technique and the consensus alternating direction method of multipliers algorithm. In the simulation part, the convergence performance and computational efficiency of the proposed algorithm are illustrated. In addition, the target detection performance, DL and UL communication performance of the integrated system are also evaluated.
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institution Kabale University
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spelling doaj-art-5fdb7767e94a4272a34ccab76aea42f02025-02-03T01:29:37ZengWileyIET Signal Processing1751-96751751-96832022-09-0116776277510.1049/sil2.12099Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar systemShengnan Shi0Zishu He1Ziyang Cheng2School of Information and Communication Engineering University of Electronic Science and Technology of China Chengdu ChinaSchool of Information and Communication Engineering University of Electronic Science and Technology of China Chengdu ChinaSchool of Information and Communication Engineering University of Electronic Science and Technology of China Chengdu ChinaAbstract This study discusses the integrated system of full‐duplex (FD) multiple‐input‐multiple‐output (MIMO) communication and MIMO radar, which has been rarely considered in published studies. Such an integrated system is composed of a base station and several uplink (UL) and downlink (DL) users, and is supposed to simultaneously implement three functionalities, that is, target detection, UL and DL communications. The degrees of freedom of system design involve the precoding and combining schemes for UL and DL communications, as well as the receiving filter for radar echo. An optimization problem is developed to maximise a compound communication sum‐rate metric subject to the SINR constraint imposed on target detection performance. The resulted non‐convex and NP‐hard problem is first divided into two sub‐problems. Then, for one of the sub‐problems that is still intractable, its solution is iteratively obtained based on the fractional programing technique and the consensus alternating direction method of multipliers algorithm. In the simulation part, the convergence performance and computational efficiency of the proposed algorithm are illustrated. In addition, the target detection performance, DL and UL communication performance of the integrated system are also evaluated.https://doi.org/10.1049/sil2.12099C‐ADMMFD‐MIMO communicationfractional programingintegrated systemMIMO radar
spellingShingle Shengnan Shi
Zishu He
Ziyang Cheng
Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
IET Signal Processing
C‐ADMM
FD‐MIMO communication
fractional programing
integrated system
MIMO radar
title Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
title_full Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
title_fullStr Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
title_full_unstemmed Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
title_short Transmitter and receiver design for integrated full‐duplex multiple‐input‐multiple‐output communication and multiple‐input‐multiple‐output radar system
title_sort transmitter and receiver design for integrated full duplex multiple input multiple output communication and multiple input multiple output radar system
topic C‐ADMM
FD‐MIMO communication
fractional programing
integrated system
MIMO radar
url https://doi.org/10.1049/sil2.12099
work_keys_str_mv AT shengnanshi transmitterandreceiverdesignforintegratedfullduplexmultipleinputmultipleoutputcommunicationandmultipleinputmultipleoutputradarsystem
AT zishuhe transmitterandreceiverdesignforintegratedfullduplexmultipleinputmultipleoutputcommunicationandmultipleinputmultipleoutputradarsystem
AT ziyangcheng transmitterandreceiverdesignforintegratedfullduplexmultipleinputmultipleoutputcommunicationandmultipleinputmultipleoutputradarsystem