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Interference rejection in UWB systems using Smart STC based on GA Rake receivers and TR technique

机译:基于GA Rake接收机和TR技术的使用智能STC的UWB系统中的干扰抑制

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A Smart Ultra-wideband (UWB) system using analog space time coding (STC) and adaptive GA (Genetic Algorithm) Rake receiver was previously introduced [1]. The smart UWB system showed a great enhancement in performance over the SISO (single input single output) UWB one in a peer to peer scenario. In this paper the smart UWB system is used with the TR (Time Reversal) to enhance the performance of the smart UWB system in addition to reducing the receiver complexity. This paper also shows that using TR technique with the smart UWB system helps combating interferences from other UWB systems. Due to the dense resolved multipath components in UWB system, TR technique helps concentrating most of the energy of the desired signal at certain instance or path delay while that of interferers is spread over the multipath components. Thus, the desired signal energy at the receiver is dominant over the interfering ones. Finally, the smart UWB system uses the GA Rake to adaptively select the path delay at which the desired signal energy is maximized.
机译:先前已经介绍了使用模拟空时编码(STC)和自适应GA(遗传算法)Rake接收机的智能超宽带(UWB)系统[1]。在点对点场景中,智能SWB系统比SISO(单输入单输出)UWB表现出了极大的性能提升。在本文中,智能UWB系统与TR(时间反转)一起使用,以提高智能UWB系统的性能,同时还降低了接收器的复杂性。本文还表明,将TR技术与智能UWB系统结合使用有助于对抗来自其他UWB系统的干扰。由于UWB系统中密集的分解多径分量,TR技术有助于在某些情况下或路径延迟时集中大部分所需信号的能量,而干扰源的能量则分散在多径分量上。因此,接收器上的期望信号能量比干扰信号占主导地位。最终,智能UWB系统使用GA Rake自适应地选择所需信号能量最大化的路径延迟。

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