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A Simulator for the Performance Investigation of Nonideal Pseudo-Random Binary Coded Signals

机译:非理想伪随机二进制编码信号性能研究的模拟器

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Pseudo-random binary coded excitation signals are being increasingly used for electromagnetic network analysis. Various types of sequences with different correlation properties are available. Unfortunately, nonidealities of real measurement systems, like noise and nonlinearities, degrade the correlation functions. In this contribution a simulator is presented that takes several nonidealities into account. The impact of these nonidealities on two commonly used sequence types, the maximum length sequence (MLS) and the almost perfect autocorrelation sequence (APAS), on the achievable dynamic range (DR) are investigated. In the framework of the presented study, it was taken care that its results can be transferred into hardware requirements.
机译:伪随机二进制编码的激励信号正越来越多地用于电磁网络分析。具有不同相关属性的各种类型的序列是可用的。不幸的是,诸如噪声和非线性之类的真实测量系统的非理想性会降低相关函数。在此贡献中,提出了一种模拟器,该模拟器考虑了几种非理想性。研究了这些非理想性对两个常用序列类型(最大长度序列(MLS)和几乎完美的自相关序列(APAS))对可实现的动态范围(DR)的影响。在本研究的框架中,应注意其结果可以转换为硬件要求。

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