论文标题

集成传感和通信波形设计的概念证明

An Experimental Proof of Concept for Integrated Sensing and Communications Waveform Design

论文作者

Xu, Tongyang, Liu, Fan, Masouros, Christos, Darwazeh, Izzat

论文摘要

传感和通信(ISAC)功能的整合最近已获得了一项硬件,功率,频谱和成本效益的解决方案的重要研究兴趣。这项实验工作的重点是双功能雷达传感和通信框架,在该框架中,单个辐射波形(全向或方向)都可以实现雷达传感和通信功能。我们研究一种可以平衡通信和雷达传感的性能的权衡方法。我们设计了基于多用户多输入多重输出(MIMO)软件定义的无线电(SDR)测试台的正交频分多路复用(OFDM),以验证双功能模型。我们进行了无线实验,以研究最佳权衡因素,以平衡这两个功能的性能。在雷达性能上,我们测量传输的输出光束板,以检查它们与基于模拟的梁型的相似性。在通信方面,我们从测试台获得了位错误率(BER)结果,以显示使用双功能波形的通信性能。我们的实验表明,双功能方法可以通过基于纯通信的解决方案实现可比的BER性能,同时保持精细的雷达梁板。

The integration of sensing and communication (ISAC) functionalities have recently gained significant research interest as a hardware-, power-, spectrum- and cost- efficient solution. This experimental work focuses on a dual-functional radar sensing and communication framework where a single radiation waveform, either omnidirectional or directional, can realize both radar sensing and communication functions. We study a trade-off approach that can balance the performance of communications and radar sensing. We design an orthogonal frequency division multiplexing (OFDM) based multi-user multiple input multiple output (MIMO) software-defined radio (SDR) testbed to validate the dual-functional model. We carry out over-the-air experiments to investigate the optimal trade-off factor to balance the performance for both functions. On the radar performance, we measure the output beampatterns of our transmission to examine their similarity to simulation based beampatterns. On the communication side, we obtain bit error rate (BER) results from the testbed to show the communication performance using the dual-functional waveform. Our experiment reveals that the dual-functional approach can achieve comparable BER performance with pure communication-based solutions while maintaining fine radar beampatterns simultaneously.

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