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Optimal design of basic pulse waveforms for THSS UWB radio systems

机译:THSS UWB无线电系统基本脉冲波形的优化设计

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摘要

Ultrawide bandwidth (UWB) radio, a very promising technique carrying information in very short basic pulses, has properties that make it a viable candidate for short-range wireless communications. In this paper, several short-pulse waveforms based on Gaussian genetic monocycle as well as Gaussian pulse waveform, as candidates of basic UWB pulse waveforms, are firstly proposed and investigated. Their spectrum characteristics, bit transmission rate(BTR), and bit error rate (BER) performance in AWGN channel using time hopping spread spectrum (THSS) and pulse position modulation (PPM) are simulated and evaluated. The numerical results are compared and show that the basic pulse waveforms determine the spectrum characteristics of UWB signals and have much effect on the performance of UWB radio system. The performance of UWB radio system achieved by the proposed basic pulse waveforms is much better than that of UWB radio system realized by other used basic pulse waveforms under the uniform conditions. Also, the polarity of these short basic pulses does not affect the performance of UWB radio system.
机译:超宽带(UWB)无线电是一种非常有希望的技术,可以在非常短的基本脉冲中传送信息,其特性使其成为短距离无线通信的可行候选者。本文首先提出并研究了几种基于高斯遗传单周期的短脉冲波形以及高斯脉冲波形作为基本的UWB脉冲波形的候选者。仿真并评估了它们在使用时跳扩频(THSS)和脉冲位置调制(PPM)的AWGN信道中的频谱特性,比特传输率(BTR)和误码率(BER)性能。比较数值结果表明,基本脉冲波形决定了UWB信号的频谱特性,并且对UWB无线电系统的性能有很大影响。在均匀条件下,所提出的基本脉冲波形实现的UWB无线电系统的性能要比其他使用的基本脉冲波形实现的UWB无线电系统的性能好得多。而且,这些短基本脉冲的极性不会影响UWB无线电系统的性能。

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