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Performance Evaluation of Non-prefiltering vs. Time Reversal Prefiltering in Distributed and Uncoordinated IR-UWB Ad-Hoc Networks

机译:非预翻腾与未经替代的IR-UWB Ad-hoc网络中非预翻腾与时间逆转预过滤的性能评估

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摘要

Time Reversal (TR) is a prefiltering scheme mostly analyzed in the context of centralized and synchronous IR-UWB networks, in order to leverage the trade-off between communication performance and device complexity, in particular in presence of multiuser interference. Several strong assumptions have been typically adopted in the analysis of TR, such as the absence of Inter-Symbol / Inter-Frame Interference (ISI/IFI) and multipath dispersion due to complex signal propagation. This work has the main goal of comparing the performance of TR-based systems with traditional non-prefiltered schemes, in the novel context of a distributed and uncoordinated IR-UWB network, under more realistic assumptions including the presence of ISI/IFI and multipath dispersion. Results show that, lack of power control and imperfect channel knowledge affect the performance of both non-prefiltered and TR systems; in these conditions, TR prefiltering still guarantees a performance improvement in sparse/low-loaded and overloaded network scenarios, while the opposite is true for less extreme scenarios, calling for the developement of an adaptive scheme that enables/disables TR prefiltering depending on network conditions.
机译:时间反转(TR)是大多分析在集中和同步IR-UWB网络的上下文中,为了充分利用权衡通信性能和设备复杂性之间,特别是在多用户干扰的存在的预滤波方案。几个强有力的假设已在TR,分析被通常采用诸如不存在符号间/帧间干扰(ISI / IFI)和多径分散体由于复杂的信号传播。这项工作具有比较传统的非预滤波方案基于TR-系统的性能,在分布式和不协调的IR-UWB网络的新的上下文的主要目标,在更现实的假设包括ISI / IFI和多径分散体的存在。结果表明,没有功率控制和渠道不完善的知识既影响非预过滤和TR系统的性能;在这些条件下,TR预滤波仍然保证在稀疏/低负载和网络过载情况下的性能改进,而相反的是真少极端情况,要求的自适应方案,该方案使能/禁止TR预滤波根据网络条件的研究与开发。

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