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High-rate Transmission Scheme for Pulse-based Ultra-wideband Systems Over Dense Multipath Indoor Channels

机译:密集多径室内信道上基于脉冲的超宽带系统的高速传输方案

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A new high-rate transmission scheme is proposed for pulse-based ultra-wideband (WB) systems over dense multipath channels. In contrast to the existing UWB schemes that transmit one short-duration pulse each pulse-repetition interval, the proposed scheme transmits a series of N (N -> 1) consecutive pulses (a burst) each burst-repetition interval. The author then develops a successive, a zero-forcing (ZF), and a high-performance ZF-based successive receiver for effective detection in the presence of intersymbol interference within a burst. To lower complexity,an efficient algorithm for the ZF-based successive receiver is also derived. The error performance of these receivers, assuming the availability of perfect channel estimates over lognormal channels, is studied. Comparison is made between the proposed scheme and the conventional pulse amplitude-modulation scheme, when the transmission rate, the total transmitted power, and the channel delay spread are kept the same. Impacts of imperfect channel estimation are also studied by simulation. The proposed scheme could achieve a much higher throughput than the conventional scheme in dense multipath channels.
机译:针对密集多径信道上基于脉冲的超宽带(WB)系统,提出了一种新的高速率传输方案。与现有的在每个脉冲重复间隔发送一个短脉冲的UWB方案相反,提出的方案在每个脉冲重复间隔发送一系列N(N-> 1)个连续脉冲(突发)。然后,作者开发了一个连续的,零强制(ZF)和高性能的基于ZF的连续接收机,用于在突发中存在符号间干扰时进行有效检测。为了降低复杂度,还推导了基于ZF的连续接收机的高效算法。假设在对数正态信道上可以使用完美的信道估计,则研究这些接收机的错误性能。当传输速率,总传输功率和信道延迟扩展保持相同时,将提出的方案与传统的脉冲幅度调制方案进行比较。还通过仿真研究了不完美信道估计的影响。在密集多径信道中,所提出的方案可以实现比传统方案高得多的吞吐量。

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