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Polarity coincidence techniques for correlation function measurement and system response evaluation

机译:极性重合技术,用于相关函数测量和系统响应评估

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摘要

The correlation functions of many classes of signals can be derived quite simply from the correlation function computed from the waveform polarity (one-bit quantization) and in situations where one-bit quantization does not yield meaningful correlation functions, the addition of auxiliary signals can lead to a proper evaluation. The design of a flexible one-bit correlator is described using Micronor II (9 ns) circuitry which operates at a basic clock rate from 0????????10 MHz and yields information on signals up to frequencies of 25 MHz. Performance details are given for the evaluation of auto-correlation functions and cross-correlation functions of various signals, and, in particular, the application to system response evaluation using Gaussian noise and binary pseudo-noise sequences.
机译:可以很容易地从根据波形极性(一位量化)计算出的相关函数中得出许多信号类别的相关函数,并且在一位量化不能产生有意义的相关函数的情况下,添加辅助信号会导致进行适当的评估。使用Micronor II(9 ns)电路描述了一种灵活的一位相关器的设计,该电路以0到10 MHz的基本时钟速率工作,并产生有关频率高达25 MHz的信号的信息。给出了性能细节,用于评估各种信号的自相关函数和互相关函数,尤其是在使用高斯噪声和二进制伪噪声序列的系统响应评估中。

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