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Time-Frequency Shift Modulation for Chirp Sequence based Radar Communications

机译:基于啁啾序列雷达通信的时频移位调制

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Combining radar and communication systems plays a vital role in designing future wireless systems due to its growing success in reducing spectrum congestions. In this paper, measurements in an anechoic chamber and simulations are presented to verify the adaptation on the typical fast chirp radar signal structure for enabling a communication feature. Moreover, a correction method is suggested to preserve the use of 2D-FFT for radar signal processing, which can be easily implemented using the current radar sensors. The measurement setups have been implemented using software-defined radios (SDRs), and symbol error rate curves (SER) are shown related to the investigated measurement and simulation scenarios, which support the revamping of the conventional chirp waveform.
机译:结合雷达和通信系统在设计未来的无线系统方面在减少频谱拥堵方面取得了成功,在设计未来的无线系统方面发挥着至关重要的作用。在本文中,提出了一种解除腔室和模拟的测量以验证对典型的快速啁啾雷达信号结构的适应,以实现通信功能。此外,建议校正方法以维持用于雷达信号处理的2D-FFT的使用,这可以使用当前的雷达传感器容易地实现。使用软件定义的无线电(SDR)实现了测量设置,并且符号错误率曲线(SER)与调查的测量和仿真方案相关,支持传统的Chirp波形的改造。

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