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Analysis of Peak and Statistical Spectrum of Random Nonreturn-to-Zero Digital Signals

机译:随机非归零数字信号的峰值和统计频谱分析

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摘要

It is important to understand the spectral profile of the noise sources in electromagnetic compatibility (EMC) design. One of the various noise sources in modern electronics is the nonreturn-to-zero (NRZ) signal, a common digital signal format. Although conventionally the power spectral density of NRZ signal can be calculated based on Wiener–Khinchin theorem, which gives the average power per unit bandwidth, some specific properties are still unstudied. This paper analyzes 1) the maximum (peak) level, and 2) the probability density function (PDF) of the spectrum of NRZ signals. The importance of the peak level is that it represents the worst-case interference that may be produced by an NRZ trace, while the PDF is a more complete description of the spectral characteristics. The peak power is obtained through an algorithm and then well fitted, for most frequencies, by a formula, whereas the PDFs are represented in closed-form by using the central limit theorem. Based on the analysis, the peak level is found to have the same sinc shape but roughly 30-dB larger than the average power, in a 1-MHz bandwidth channel. The PDF is found to have the circular normal distribution at most frequencies, but is degenerated at frequencies of integer multiples of half-bit-rate. Measurement and simulation results verify the correctness of the proposed theory.
机译:重要的是要了解电磁兼容性(EMC)设计中噪声源的频谱分布。现代电子产品中的各种噪声源之一是非归零(NRZ)信号,这是一种常见的数字信号格式。尽管通常可以基于Wiener–Khinchin定理计算NRZ信号的功率谱密度,该定理给出了每单位带宽的平均功率,但仍未研究某些特定属性。本文分析了1)NRZ信号频谱的最大(峰值)水平,以及2)概率密度函数(PDF)。峰值电平的重要性在于它代表了NRZ迹线可能产生的最坏情况的干扰,而PDF是对光谱特性的更完整描述。峰值功率是通过算法获得的,然后对于大多数频率而言,可以通过公式进行拟合,而PDF则通过使用中心极限定理以封闭形式表示。根据分析,发现在1 MHz带宽信道中,峰值电平具有相同的正弦形状,但比平均功率大大约30 dB。发现PDF在大多数频率上具有圆形正态分布,但在半比特率整数倍的频率处退化。测量和仿真结果验证了所提出理论的正确性。

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