OFDM Pilot-Based Radar for Joint Vehicular Communication and Radar Systems

Ceyhun D. Ozkaptan, E. Ekici, O. Altintas, Chang-Heng Wang
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引用次数: 33

Abstract

With the large-scale deployment of connected and autonomous vehicles, the demand on wireless communication spectrum increases rapidly in vehicular networks. Due to increased demand, the allocated spectrum at the 5.9 GHz band for vehicular communication cannot be used efficiently for larger payloads to improve cooperative sensing, safety, and mobility. To achieve higher data rates, the millimeter-wave (mmWave) automotive radar spectrum at 76–81 GHz band can be exploited for communication. However, instead of employing spectral isolation or interference mitigation schemes between communication and radar, we design a joint system for vehicles to perform both functions using the same waveform. In this paper, we propose radar processing methods that use pilots in the orthogonal frequency-division multiplexing (OFDM) waveform. While the radar receiver exploits pilots for sensing, the communication receiver can leverage pilots to estimate the time-varying channel. The simulation results show that proposed radar processing can be efficiently implemented and meet the automotive radar requirements. We also present joint system design problems to find optimal resource allocation between data and pilot subcarriers based on radar estimation accuracy and effective channel capacity.
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车载通信与雷达联合系统中基于OFDM导频雷达
随着联网和自动驾驶汽车的大规模部署,车载网络对无线通信频谱的需求迅速增加。由于需求的增加,分配给车载通信的5.9 GHz频段频谱无法有效地用于更大的有效载荷,以提高协同感知、安全性和移动性。为了实现更高的数据速率,可以利用76-81 GHz频段的毫米波(mmWave)汽车雷达频谱进行通信。然而,我们没有采用通信和雷达之间的频谱隔离或干扰缓解方案,而是设计了一个联合系统,让车辆使用相同的波形来执行这两种功能。在本文中,我们提出了在正交频分复用(OFDM)波形中使用导频的雷达处理方法。雷达接收机利用导频进行感知,通信接收机可以利用导频估计时变信道。仿真结果表明,所提出的雷达处理方法能够有效地实现,满足汽车雷达的要求。我们还提出了基于雷达估计精度和有效信道容量的数据和导频子载波之间的最佳资源分配的联合系统设计问题。
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