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On the performance of using multiple transmit and receive antennas in pulse-based ultrawideband systems

机译:基于脉冲的超宽带系统中使用多个发送和接收天线的性能

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摘要

This paper presents an analytical expression for the signal-to-noise ratio (SNR) of the pulse position modulated (PPM) signal in an ultrawideband (UWB) channel with multiple transmit and receive antennas. A generalized fading channel model that can capture the cluster property and the highly dense multipath effect of the UWB channel is considered. Through simulations, it is demonstrated that the derived analytical model can accurately estimate the mean and variance properties of the pulse-based UWB signals in a frequency-selective fading channel. Furthermore, the authors investigate to what extent the performance of the PPM-based UWB system can be further enhanced by exploiting the advantage of multiple transmit antennas or receive antennas. Numerical results show that using multiple transmit antennas in the UWB channel can improve the system performance in the manner of reducing signal variations. However, because of already possessing rich diversity inherently in the UWB channel, using multiple transmit antennas does not provide diversity gain in the strict sense [i.e., improving the slope of bit error rate (BER) versus SNR] but can possibly reduce the required fingers of the RAKE receiver for the UWB channel. Furthermore, because multiple receive antennas can provide higher antenna array combining gain, the multiple receive antennas technique can be used to improve the coverage performance for the UWB system, which is crucial for a UWB system due to the low transmission power operation.
机译:本文提出了具有多个发射和接收天线的超宽带(UWB)信道中脉冲位置调制(PPM)信号的信噪比(SNR)的解析表达式。考虑了可以捕获簇属性和UWB信道的高密度多径效应的通用衰落信道模型。通过仿真证明,导出的分析模型可以准确地估计频率选择性衰落信道中基于脉冲的UWB信号的均值和方差特性。此外,作者研究了通过利用多个发射天线或接收天线的优势,可以在多大程度上增强基于PPM的UWB系统的性能。数值结果表明,在UWB信道中使用多个发射天线可以通过减少信号变化的方式提高系统性能。但是,由于已经在UWB信道中固有地拥有丰富的分集,因此使用多个发射天线在严格意义上不能提供分集增益(即,提高误码率(BER)与SNR的斜率),但可能会减少所需的分支UWB信道的RAKE接收器的位置。此外,因为多个接收天线可以提供更高的天线阵列组合增益,所以可以使用多个接收天线技术来改善UWB系统的覆盖性能,这由于低发射功率操作对于UWB系统至关重要。

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