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Low Complexity Chirp Pulsed Ultra-Wideband System with Near-Optimum Multipath Performance

机译:具有接近最佳多径性能的低复杂度线性调频脉冲超宽带系统

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This paper describes the Impulse Radio Ultra-Wideband (IR-UWB) system using linear chirp UWB pulses as symbols. The novel method of coherent or differentially coherent detection of chirp pulses in multipath channels is introduced. The method divides detection in the receiver between its analog and digital part; in the analog part of the receiver, received signal is compressed in frequency by mixing with locally generated chirp pulse and low-pass filtering. In this way, the time-bandwidth (TB) product of the resulting signal is reduced compared to the received signal and made approximately independent of duration of the transmitted signal. This results in relatively low complexity digital back-end of the receiver that is able to capture a large portion of the multipath energy, regardless of duration of the transmitted waveform. The work includes derivation of analytical properties of the system, including derivation of loss parameters that quantify system multipath performance. Numerical results include discussion on the system multipath loss performance with varying chirp duration. As well, a comparison is made with error performance of sampling receivers featuring the same computational complexity. Analysis of the robustness of the system's performance to different chirp pulse implementation errors is also provided.
机译:本文介绍了使用线性线性调频超宽带脉冲作为符号的脉冲无线超宽带(IR-UWB)系统。介绍了多径信道中线性调频脉冲的相干或差分相干检测的新方法。该方法将接收器中的检测部分分为模拟部分和数字部分。在接收器的模拟部分,通过与本地生成的线性调频脉冲混合并进行低通滤波来对接收信号进行频率压缩。这样,与接收信号相比,结果信号的时间带宽(TB)乘积减小了,并且与发送信号的持续时间大致无关。这导致接收机的复杂度相对较低的数字后端,无论传输波形的持续时间如何,它都能捕获大部分的多径能量。这项工作包括推导系统的分析特性,包括推导量化系统多路径性能的损耗参数。数值结果包括有关chi持续时间变化的系统多径损耗性能的讨论。同样,对具有相同计算复杂度的采样接收器的错误性能进行了比较。还提供了针对不同线性调频脉冲实现错误的系统性能的鲁棒性分析。

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