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The tradeoff between processing gains of an impulse radio UWB system in the presence of timing jitter

机译:在存在定时抖动的情况下,脉冲无线电UWB系统的处理增益之间的权衡

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摘要

In time hopping impulse radio, Nf pulses of duration Tc are transmitted for each information symbol. This gives rise to two types of processing gains: i) pulse combining gain, which is a factor Nf, and (ii) pulse spreading gain, which is Nc=Tf/Tc, where Tf is the mean interval between two subsequent pulses. This paper investigates the tradeoff between these two types of processing gains in the presence of timing jitter. First, an additive white Gaussian noise (AWGN) channel is considered, and approximate closed-form expressions for bit error probability (BEP) are derived for impulse radio systems with and without pulse-based polarity randomization. Both symbol-synchronous and chip-synchronous scenarios are considered. The effects of multiple-access interference (MAI) and timing jitter on the selection of optimal system parameters are explained through theoretical analysis. Finally, a multipath scenario is considered, and the tradeoff between processing gains of a synchronous impulse radio system with pulse-based polarity randomization is analyzed. The effects of the timing jitter, MAI, and interframe interference (IFI) are investigated. Simulation studies support the theoretical results. © 2007 IEEE.
机译:在跳时脉冲无线电中,针对每个信息符号发送持续时间为Tc的Nf个脉冲。这产生了两种类型的处理增益:i)脉冲组合增益,它是因子Nf;以及(ii)脉冲扩展增益,它是Nc = Tf / Tc,其中Tf是两个后续脉冲之间的平均间隔。本文研究了在存在定时抖动的情况下这两种类型的处理增益之间的权衡。首先,考虑了加性高斯白噪声(AWGN)信道,并针对具有和不基于脉冲的极性随机化的脉冲无线电系统,得出了误码概率(BEP)的近似闭式表达式。符号同步和芯片同步方案都被考虑了。通过理论分析,解释了多址干扰(MAI)和定时抖动对最佳系统参数选择的影响。最后,考虑了多径情况,并分析了基于脉冲极性随机化的同步脉冲无线电系统的处理增益之间的折衷。研究了定时抖动,MAI和帧间干扰(IFI)的影响。仿真研究支持理论结果。 ©2007 IEEE。

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