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Aperture Jitter of Sampling System in AWGN and Fading Channels

机译:AWGN和衰落信道中采样系统的孔径抖动

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This paper examines aperture jitter of the sampling system and its effect on communication systems in the additive white Gaussian noise (AWGN) and fading channels. Previous studies have claimed that AWGN power is directly proportional to the jitter noise power. We demonstrate that the aperture jitter can influence the input signal of a sampling system but is independent of AWGN. The noise power, due to the aperture jitter in a frequency-nonselective slowly fading channel, is shown to be a function of the input signal, the aperture jitter, and the channel envelope. The frequency-selective slowly fading channel involves another parameter analyzable paths. The effect of the aperture jitter on the bit-error probability (BEP) of a binary-phase-shift-keying digital communication system is also considered. The received signal-to-noise ratio (SNR) is calculated first, and its probability density function is derived. Then, the average BEP is evaluated as a function of SNR. Simulation results indicate that the aperture-jitter noise severely degrades the average BEP by reducing the received SNR. The results of this paper can be used in designing a wideband or radio-frequency-sampling digital communication system
机译:本文研究了加性白高斯噪声(AWGN)和衰落信道中采样系统的孔径抖动及其对通信系统的影响。先前的研究声称AWGN功率与抖动噪声功率成正比。我们证明了孔径抖动会影响采样系统的输入信号,但与AWGN无关。由于频率非选择性慢衰落信道中的孔径抖动,噪声功率显示为输入信号,孔径抖动和通道包络的函数。频率选择缓慢衰落信道涉及另一个参数可分析路径。还考虑了孔径抖动对二进制相移键控数字通信系统的误码率(BEP)的影响。首先计算接收到的信噪比(SNR),然后推导其概率密度函数。然后,将平均BEP评估为SNR的函数。仿真结果表明,孔径抖动噪声会通过降低接收到的SNR严重降低平均BEP。本文的结果可用于设计宽带或射频采样数字通信系统

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