Optimal Waveform Design for Dual-functional MIMO Radar-Communication Systems

Longfei Zhou, Fan Liu, Chang Tian, C. Masouros, Ang Li, Wei Jiang, Wu Luo
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引用次数: 6

Abstract

This paper considers the waveform design for dual-functional multi-input-multi-output (MIMO) radar-communication systems. Two optimization-based novel waveform designs are proposed. The aim of the first waveform design is to minimize the downlink multi-user interference (MUI) energy by exploiting the remaining degrees of freedom (DoFs) while always guaranteeing the radar performance to be optimal. The second waveform design is a trade-off optimization between radar and communication performances by allowing a tolerable mismatch between the designed and the desired radar beampatterns. Albeit non-convexity of both problems, efficient algorithms are devised to obtain globally optimal solutions, which can be used for simultaneous target detection and downlink communications. Numerical results show that the communication performance could be significantly improved by tolerating a slight radar performance loss and therefore a favorable balance between communication and radar performances is achievable.
双功能MIMO雷达通信系统的最佳波形设计
研究了双功能多输入多输出(MIMO)雷达通信系统的波形设计。提出了两种基于优化的新型波形设计。第一种波形设计的目的是通过利用剩余自由度(dof)来最小化下行链路多用户干扰(MUI)能量,同时始终保证雷达性能处于最佳状态。第二种波形设计是通过允许设计和期望的雷达波束模式之间可容忍的不匹配,在雷达和通信性能之间进行权衡优化。尽管这两个问题都具有非凸性,但设计了有效的算法来获得全局最优解,可用于同时进行目标检测和下行通信。数值结果表明,通过容忍轻微的雷达性能损失,可以显著提高通信性能,从而实现通信和雷达性能之间的良好平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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