In order to manage the increasing interference between radar and communication systems, joint radar and communication (RadCom) systems have attracted increased attention in recent years, with the studies so far considering the assumption of perfect Channel State Information at the Transmitter (CSIT). However, such an assumption is unrealistic and neglects the inevitable CSIT errors that need to be considered to fully exploit the multi-antenna processing and interference management capabilities of a joint RadCom system. In this work, a joint RadCom system is designed which marries the capabilities of a Multiple-Input Multiple-Output (MIMO) radar with Rate-Splitting Multiple Access (RSMA), a powerful downlink communications scheme based on linearly precoded Rate-Splitting (RS) to partially decode multi-user interference (MUI) and partially treat it as noise. In this way, the RadCom precoders are optimized in the presence of partial CSIT to simultaneously maximize the Average Weighted Sum-Rate (AWSR) under QoS rate constraints and minimize the RadCom Beampattern Squared Error (BSE) against an ideal MIMO radar beampattern. Simulation results demonstrate that RSMA provides the RadCom with more robustness, flexibility and user rate fairness compared to the baseline joint RadCom system based on Space Division Multiple Access (SDMA).
翻译:为了管理雷达和通信系统之间日益增加的干扰,近年来,联合雷达和通信系统(RadCom)系统吸引了越来越多的注意力,迄今为止的研究考虑到在传输器上假定完美频道国家信息的假设,但这种假设不切实际,忽视了CSIT不可避免的错误,而为了充分利用联合雷达和通信系统的多防线处理和干扰管理能力,需要考虑充分利用CSIT的必然错误。在这项工作中,设计了一个联合雷达和通信系统,它结合了多投入多输出雷达(MSMA)的能力,该雷达具有超速多输出(RSMA),这是一种强大的下行链通信计划,其基础是线性预先编码的速率转换(RS),目的是部分解算多用户干扰(MUI),部分将其视为噪音。在部分CSIT的存在中,辐射和通信前置系统可以同时最大限度地扩大在QOS税率限制下的平均加权Sum-Rate(AWSR),并尽量减少RadComplit-Comdition Red错误(BSMA)的能力,在用户灵活度上,以更稳定、更可靠、更可靠、更可靠、更可靠、更可靠、更可靠的基础的检索的检索系统上展示了辐射-RODMA的检索结果。