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Performance Evaluation of Impulse Radio UWB Systems With Pulse-Based Polarity Randomization

机译:基于脉冲极性随机化的脉冲无线UWB系统的性能评估

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In this paper, the performance of a binary phase shift keyed random time-hopping impulse radio system with pulse-based polarity randomization is analyzed. The effects of interframe interference and multiple-access interference on the performance of a generic Rake receiver are investigated for asynchronous systems in frequency-selective environments. A key step is to model the asynchronous system as a chip-synchronous system with uniformly distributed timing jitter for the transmitted pulses of interfering users. This model allows the analytical technique developed for the synchronous case to be extended to the asynchronous case and allows the derivation of closed-form equations for the bit error probability in various Rake receiver architectures. It is shown that a Gaussian approximation can be used for both multiple-access and interframe interference as long as the number of frames per symbols is large (typically, at least 5), whereas there is no minimum requirement for the number of users for the equations to hold. It is observed that under many circumstances, the chip-synchronous case shows a worse bit error probability performance than the asynchronous case; the amount of the difference depends on the autocorrelation function of the ultra-wideband pulse and the signal-to-interference-plus-noise-ratio of the system. Simulations studies support the approximate analysis.
机译:本文分析了基于脉冲极性随机化的二进制相移键控随机时跳脉冲无线电系统的性能。对于频率选择环境中的异步系统,研究了帧间干扰和多址干扰对通用Rake接收机性能的影响。关键步骤是将异步系统建模为芯片同步系统,该系统具有针对干扰用户的发射脉冲而均匀分布的定时抖动。该模型允许针对同步情况开发的分析技术扩展到异步情况,并允许推导各种Rake接收器体系结构中误码概率的闭式方程式。结果表明,只要每个符号的帧数很大(通常至少为5),就可以将高斯近似用于多址和帧间干扰,而对用户数没有最低要求。等式成立。可以看出,在许多情况下,芯片异步情况显示的误码概率性能比异步情况差;差异的大小取决于超宽带脉冲的自相关函数以及系统的信号干扰加噪声比。仿真研究支持近似分析。

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