论文标题
联合雷达通信系统的空间调制:设计,分析和硬件原型
Spatial Modulation for Joint Radar-Communications Systems: Design, Analysis, and Hardware Prototype
论文作者
论文摘要
双功能雷达通信(DFRC)系统在单个平台上实现雷达和通信功能。共同设计这些子系统可以带来绩效以及尺寸,成本和功耗的可观增长。在本文中,我们提出了一个DFRC系统,该系统利用通用的空间调制(GSM)实现共存的雷达和通信波形。我们提出的基于GSM的方案,称为基于空间调制的基于空间调制的通信雷达(Spacor)系统,它基于发射的消息将天线元素分配在子系统之间,从而通过将额外的数据位嵌入天线选择中,从而提高了通信速率。我们制定结果信号模型,并提出专用的雷达处理方案。为了评估雷达性能,我们表征了发射光束图案的统计特性。然后,我们提出了建议的DFRC系统的硬件原型,证明了该方案的可行性。我们的结果表明,与利用以相同数据速率运行的固定分配相比,所提出的GSM系统可以提高通信性能。对于雷达子系统,我们的实验表明,与使用固定天线分配相比,GSM传输诱导的空间敏捷性改善了角度分辨率并降低了发射束模式的侧孔水平。
Dual-function radar-communications (DFRC) systems implement radar and communication functionalities on a single platform. Jointly designing these subsystems can lead to substantial gains in performance as well as size, cost, and power consumption. In this paper, we propose a DFRC system, which utilizes generalized spatial modulation (GSM) to realize coexisting radar and communications waveforms. Our proposed GSM-based scheme, referred to as spatial modulation based communication-radar (SpaCoR) system, allocates antenna elements among the subsystems based on the transmitted message, thus achieving increased communication rates by embedding additional data bits in the antenna selection. We formulate the resulting signal models, and present a dedicated radar processing scheme. To evaluate the radar performance, we characterize the statistical properties of the transmit beam pattern. Then, we present a hardware prototype of the proposed DFRC system, demonstrating the feasibility of the scheme. Our results show that the proposed GSM system achieves improved communication performance compared to techniques utilizing fixed allocations operating at the same data rate. For the radar subsystem, our experiments show that the spatial agility induced by the GSM transmission improves the angular resolution and reduces the sidelobe level in the transmit beam pattern compared to using fixed antenna allocations.