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Optimal and Suboptimal Linear Receivers for Impulse Radio UWB Systems

机译:脉冲无线电UWB系统的最优和次优线性接收机

摘要

The high time resolution of ultra-wideband (UWB) signals results in a large number of multipath components (MPCs) arriving at the receiver, which presents a source of diversity. In addition to this multipath diversity, there is also repetition diversity inherent in impulse radio (IR) UWB systems, since a number of pulses are transmitted for each information symbol. In order to make optimal use of multipath and repetition diversity, the receiver needs to consider the optimal combination of contributions from both different frames and different MPCs. In this overview paper, the optimal linear receiver for a given user in a frequency-selective multiuser environment, which combines all the samples from the received signal according to the minimum mean square error (MMSE), criterion, is studied. Due to the complexity of this optimal receiver, two suboptimal receivers with lower complexity are considered, optimal frame combining (OFC) and optimal multipath combining (OMC) receivers, which reduce computational complexity by suboptimal combining in the multipath diversity and repetition diversity domains, respectively. Finally, a two-step MMSE algorithm which reduces complexity by performing MMSE combining in two steps is presented, and its optimality properties are discussed. Simulations are performed to compare the performance of different receivers
机译:超宽带(UWB)信号的高时间分辨率导致大量的多径分量(MPC)到达接收器,这代表了分集的来源。除了这种多径分集之外,脉冲无线电(IR)UWB系统中还存在固有的重复分集,因为每个信息符号都发送了许多脉冲。为了最佳利用多径和重复分集,接收机需要考虑来自不同帧和不同MPC的贡献的最佳组合。在本概述文件中,研究了在频率选择多用户环境中针对给定用户的最佳线性接收机,该接收机根据最小均方误差(MMSE)准则将接收信号中的所有样本进行组合。由于此最佳接收器的复杂性,考虑了两个较低复杂度的次优接收器:最佳帧组合(OFC)和最佳多径组合(OMC)接收器,它们分别通过在多径分集和重复分集域中进行次最佳组合来降低了计算复杂性。最后,提出了一种通过分两步进行MMSE合并来降低复杂度的两步MMSE算法,并讨论了其最优性。进行仿真以比较不同接收器的性能

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