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MIMO Dual-Functional Radar-Communication Waveform Design With Peak Average Power Ratio Constraint

机译:MIMO双功能雷达通信波形设计,峰值平均功率比约束

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摘要

In this paper, novel Dual-Functional Radar-Communication (DFRC) waveforms with peak average power ratio (PAPR) constraint are designed, which are under the multiple-input multiple-output (MIMO) radar-communication system. The DFRC waveforms transmitted by multiple antennas can send communication information to many downlink cellular users and detect radar targets simultaneously. An optimization model is established to minimize the downlink multi-user interference (MUI) under PAPR constraint. The model is non-convex quadratically constrained quadratic programs (QCQP) and can be derived into a convex problem and solved by using the semi-definite relaxation (SDR) technique with rank-one approximation. Numerical simulations demonstrate that our proposed waveforms can achieve a better radar performance in practical scenarios without sacrificing the communication performance.
机译:本文设计了具有峰值平均功率比(PAPR)约束的新型双功能雷达 - 通信(DFRC)波形,其在多输入多输出(MIMO)雷达通信系统下。由多个天线发送的DFRC波形可以向许多下行链路蜂窝用户发送通信信息并同时检测雷达目标。建立优化模型,以最小化PAPR约束下的下行链路多用户干扰(MUI)。该模型是非凸出的二次限制二次程序(QCQP),并且可以通过使用秩1近似的半定放宽(SDR)技术来衍生给凸面问题并解决。数值模拟表明,我们所提出的波形可以在实际情况下实现更好的雷达性能,而不会牺牲通信性能。

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