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Channel shortening equalizer for multi-access TH-UWB in the presence of multipath and multiuser interference

机译:存在多径和多用户干扰时,用于多址TH-UWB的信道缩短均衡器

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摘要

In this paper a novel channel shortening equalizer (CSE) for time hopping ultra wideband (TH-UWB) multiple access system with pulse position modulation (PPM) is presented. As UWB channels have very long impulse responses as compared to the narrow pulse width, CSE can reduce the number of correlators. In UWB systems, due to the received pulse that is very similar to the channel impulse response (CIR), the proposed algorithm maximizes the shortening signal to inter-symbol and multiuser interferences ratio (SSINR), defined as the ratio of the received signal energy inside the desired window to the energy in the wall and multiuser interference. The existence of the proposed CSE before correlation receiver decreases the complexity of the receiver architecture by significantly reducing the number of effective channel taps. Further we extend our method to derive general expression for the bit error rate (BER) performance in the presence of inter-symbol and multiuser interferences. Computer simulation results are provided to compare the performance of the proposed method with a MSSNR CSE, lower bound, also known as All-Rake, Partial-Rake, and Selective-Rake in terms of Rake operational temporal windows and BER.
机译:本文提出了一种新型的带有脉冲位置调制(PPM)的跳时超宽带(TH-UWB)多址系统的信道缩短均衡器(CSE)。由于与窄脉冲宽度相比,UWB信道具有非常长的脉冲响应,因此CSE可以减少相关器的数量。在UWB系统中,由于接收到的脉冲与信道脉冲响应(CIR)非常相似,因此所提出的算法将缩短信号与符号间干扰和多用户干扰之比(SSINR)最大化,定义为接收信号能量之比内部所需的窗口中的能量在墙上和多用户干扰。通过显着减少有效信道抽头的数量,相关接收机之前提出的CSE的存在降低了接收机体系结构的复杂性。此外,我们扩展了我们的方法,以在存在符号间干扰和多用户干扰的情况下得出误码率(BER)性能的通用表达式。提供了计算机仿真结果,以比较所提方法与MSSNR CSE,下限(也称为“全瑞克”,“部分瑞克”和“选择性瑞克”)的性能,在瑞克操作时间窗和BER方面。

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