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Adaptive Virtual Waveform Design for Millimeter-Wave Joint Communication–Radar

机译:毫米波联合通信的自适应虚拟波形设计–雷达

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Joint communication and radar (JCR) waveforms with fully digital baseband generation and processing can now be realized at the millimeter-wave (mmWave) band. Prior work has developed a mmWave wireless local area network (WLAN)-based JCR that exploits the WLAN preamble for radars. The performance of target velocity estimation, however, was limited. In this paper, we propose a virtual waveform design for an adaptive mmWave JCR. The proposed system transmits a few non-uniformly placed preambles to construct several receive virtual preambles for enhancing velocity estimation accuracy, at the cost of only a small reduction in the communication data rate. We evaluate JCR performance trade-offs using the Cram& x00E9;r-Rao Bound (CRB) metric for radar estimation and a novel distortion minimum mean square error (MMSE) metric for data communication. Additionally, we develop three different MMSE-based optimization problems for the adaptive JCR waveform design. Simulations show that an optimal virtual (non-uniform) waveform achieves a significant performance improvement as compared to a uniform waveform. For a radar CRB constrained optimization, the optimal radar range of operation and the optimal communication distortion MMSE (DMMSE) are improved. For a communication DMMSE constrained optimization with a high DMMSE constraint, the optimal radar CRB is enhanced. For a weighted MMSE average optimization, the advantage of the virtual waveform over the uniform waveform is increased with decreased communication weighting. Comparison of MMSE-based optimization with traditional virtual preamble count-based optimization indicated that the conventional solution converges to the MMSE-based one only for a small number of targets and a high signal-to-noise ratio.
机译:现在,可以在毫米波(mmWave)频段上实现具有全数字基带生成和处理功能的联合通信和雷达(JCR)波形。先前的工作已经开发出基于mmWave无线局域网(WLAN)的JCR,该JCR利用了WLAN的雷达前导码。但是,目标速度估计的性能受到限制。在本文中,我们提出了一种用于自适应毫米波JCR的虚拟波形设计。所提出的系统发送一些非均匀放置的前同步码以构造几个接收虚拟前同步码以提高速度估计精度,而仅以少量降低通信数据速率为代价。我们使用Cram&x00E9; r-Rao Bound(CRB)度量进行雷达估计,并使用新颖的失真最小均方误差(MMSE)度量进行数据通信,以评估JCR性能。此外,我们针对自适应JCR波形设计开发了三种基于MMSE的优化问题。仿真表明,与均匀波形相比,最佳虚拟(非均匀)波形可显着提高性能。对于雷达CRB约束优化,改进了最佳雷达工作范围和最佳通信失真MMSE(DMMSE)。对于具有高DMMSE约束的通信DMMSE约束优化,最佳雷达CRB得以增强。对于加权MMSE平均优化,随着通信权重的降低,虚拟波形相对于均匀波形的优势会增加。基于MMSE的优化与传统的基于虚拟前导计数的优化的比较表明,仅对于少数目标和高信噪比,常规解决方案收敛于基于MMSE的解决方案。

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