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首页> 外文期刊>IEEE systems journal >In-Band Full-Duplex Radar-Communication System
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In-Band Full-Duplex Radar-Communication System

机译:带内全双工雷达通信系统

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摘要

In-band full-duplex (IBFD) technology is a promising solution to boost the throughput of wireless networks. To bring IBFD to reality, the modem has to cancel the self-interference (SI) signal, which includes the strong direct Tx leakage signal and the weaker reflected Tx signal from the surroundings. Adaptive analog and digital SI cancelation schemes have been proposed. It becomes then interesting to understand, although, how the echoed SI could be exploited for enabling radar functionality while reusing the waveform and the already-existing hardware. This article formulates the monostatic radar system model starting from the communication system model. Beside simulation-based assessment, the performance is also evaluated by an IBFD system prototype, which consists of both analog and digital SI canceller modules, enabling >85dBTx-Rx isolation. The system is enhanced with Doppler radar functionality, reusing as much as possible the existing IBFD functional blocks. The experimental result shows the accuracy of the proposed system to measure the velocity of mobile objects at various speeds between 0.2 and 1 m/s while the device is simultaneously served as a node to perform in-band bidirectional communication. This ability suits the proposed system for a broad spectrum of opportunistic remote sensing applications, such as body and hand gesture detection.
机译:带内全双工(IBFD)技术是一个有希望的解决方案,可以提高无线网络吞吐量。要将IBFD带到现实中,调制解调器必须取消自干扰(SI)信号,包括强直接TX泄漏信号,并且来自周围环境的较弱反射TX信号。已经提出了自适应模拟和数字SI取消方案。虽然,但是,理解的是有趣的,但是如何利用回音的SI来实现雷达功能,同时重用波形和已经存在的硬件。本文从通信系统模型开始制定单体雷达系统模型。除了基于仿真的评估外,还通过IBFD系统原型评估了性能,该原型由模拟和数字SI消除器模块组成,启用> 85dBtx-RX隔离。使用多普勒雷达功能增强了系统,尽可能多地重用现有的IBFD功能块。实验结果表明,当设备同时用作节点​​以执行带内双向通信的节点时,实验结果表明了所提出的系统以0.2和1M / s的各种速度测量移动对象的速度。这种能力适用于广泛的机会遥感应用的所提出的系统,例如身体和手势检测。

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