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IEEE 802.11ad-Based Radar: An Approach to Joint Vehicular Communication-Radar System

机译:基于IEEE 802.11ad的雷达:联合车辆通信雷达系统的方法

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Millimeter-wave (mmWave) radar is widely used in vehicles for applications such as adaptive cruise control and collision avoidance. In this paper, we propose an IEEE 802.11ad-based radar for long-range radar (LRR) applications at the 60 GHz unlicensed band. We exploit the preamble of a single-carrier physical layer frame, which consists of Golay complementary sequences with good correlation properties that make it suitable for radar. This system enables a joint waveform for automotive radar and a potential mmWave vehicular communication system based on the mmWave consumer wireless local area network standard, allowing hardware reuse. To formulate an integrated framework of vehicle-to-vehicle communication and LRR, we make typical assumptions for LRR applications, incorporating the full duplex radar operation. This new feature is motivated by the recent development of systems with sufficient isolation and self-interference cancellation. We develop single- and multi-frame radar receiver algorithms for target detection as well as range and velocity estimation for both single- and multi-target scenarios. Our proposed radar processing algorithms leverage channel estimation and time-frequency synchronization techniques used in a conventional IEEE 802.11ad receiver with minimal modifications. Analysis and simulations show that in a single-target scenario, a gigabits-per-second data rate is achieved simultaneously with cm-level range accuracy and cm/s-level velocity accuracy. The target vehicle is detected with a high probability (above 99.99%) at a low false alarm rate of 10(-6) for an equivalent isotropically radiated power of 40 dBm up to a vehicle separation distance of about 200 m. The proposed IEEE 802.11ad-based radar meets the minimum accuracy/resolution requirement of range and velocity estimates for LRR applications.
机译:毫米波(MMWAVE)雷达广泛用于汽车的车辆,例如自适应巡航控制和碰撞避免。在本文中,我们在60GHz未许可频段提出了基于IEEE 802.11ad的基于IEEE 802.11ad的雷达。我们利用单载波物理层框架的前导码,其包括Golay互补序列,具有良好的相关性,使其适合于雷达。该系统支持汽车雷达的联合波形和基于MMWAVE消费者无线局域网标准的潜在MMWAVE车辆通信系统,允许硬件重用。为了制定车辆到车辆通信和LRR的综合框架,我们为LRR应用提供了典型的假设,包括全双工雷达操作。这种新功能是由于最近的系统开发具有足够的隔离和自干扰取消。我们开发用于目标检测的单帧和多帧雷达接收算法,以及用于单个和多目标场景的范围和速度估计。我们所提出的雷达处理算法利用具有最小修改的传统IEEE 802.11ad接收器中使用的信道估计和时频同步技术。分析和模拟表明,在单个目标场景中,每秒千兆位数据速率与CM级范围精度和CM / S级速度精度同时实现。以低误报率为10(-6)的低概率(高于99.99%)检测到靶载体,其等效的各向同性辐射功率为40dBm,直至车辆分离距离为约200μm。所提出的IEEE 802.11ad的雷达符合LRR应用程序的范围和速度估计的最低精度/分辨率要求。

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