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Analysis of UWB transmitted-reference communication systems in dense multipath channels

机译:密集多径信道中的UWB传输参考通信系统分析

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摘要

Transmitted-reference (TR) signaling, in conjunction with an autocorrelation receiver (AcR), offers a low-complexity alternative to Rake reception. Due to its simplicity, there is renewed interest in TR signaling for ultrawide bandwidth (UWB) systems. To assess the performance of these systems, we develop an analytical framework based on the sampling expansion approach. In particular, we derive closed-form expression for the bit-error probability (BEP) of TR signaling with AcR that can be used to exploit multipath diversity inherent in wideband channels. We further extend our analysis to the BEP derivation of modified AcR with noise averaging. Our methodology does not require the Gaussian approximation and is applicable for any fading scenario, provided that the correlator output signal-to-noise ratio (SNR) can be characterized in terms of a characteristic function. We show that the validity of the conventional Gaussian approximation depends on the time-bandwidth product and the number of transmitted pulses per symbol. Our results enable the derivation of a computationally simple lower bound on the BEP of TR signaling with AcR. This lower bound allows us to obtain the SNR penalty associated with an AcR, as compared with All-Rake and Partial-Rake receivers.
机译:传输参考(TR)信令与自相关接收器(AcR)结合使用,可提供低复杂度的替代Rake接收。由于其简单性,人们对超宽带(UWB)系统的TR信令有了新的兴趣。为了评估这些系统的性能,我们基于采样扩展方法开发了一个分析框架。特别是,我们推导了带有AcR的TR信令误码率(BEP)的闭式表达式,该表达式可用于开发宽带信道中固有的多径分集。我们进一步将分析扩展到具有噪声平均的改进AcR的BEP推导。我们的方法不需要高斯近似,并且适用于任何衰落情况,只要可以根据特征函数来表征相关器输出的信噪比(SNR)。我们证明了传统高斯近似的有效性取决于时间带宽积和每个符号的发射脉冲数。我们的结果使得能够推导具有AcR的TR信号的BEP的计算上简单的下限。与全瑞克和部分瑞克接收机相比,该下限使我们可以获得与AcR相关的SNR损失。

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