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A correction scheme for measurement accuracy improvement in multichannel CATV systems

机译:一种多通道有线电视系统中提高测量精度的校正方案

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摘要

Many commercially-available oscilloscopes offer the FFT-based spectral analysis capability and it is one of the most economical ways to perform spectral measurement. However, the measurement accuracy is always degraded by the incomplete-cycle sampling present in the FFT. Such degradation in the FFT-based measurement of multichannel CATV systems is investigated. It severely degrades the spectral amplitude accuracy as well as the frequency resolution, both of which are important in deriving the system parameters such as the composite-second-order (CSO), composite-triple-beat (CTB), and carrier-to-noise ratio (CNR). The undesirable effect is formulated mathematically for multichannel systems and the result is used to obtain more accurate spectral values. Windowing and a proposed correction method are used to alleviate such detrimental effects, and an improvement of 3-5 dB in the CTB measurement is achieved with the proposed correction scheme. A procedure for achieving better spectrum analysis for multichannel CATV systems is also presented. The analysis and the proposed schemes can improve the accuracy of the FFT-based measurements of multichannel CATV systems than the traditional windowing method.
机译:许多市售示波器都提供基于FFT的频谱分析功能,这是执行频谱测量的最经济的方法之一。但是,FFT中存在的不完整周期采样总是会降低测量精度。研究了多频道CATV系统基于FFT的测量中的这种降级。它会严重降低频谱幅度精度和频率分辨率,这两者对于推导系统参数(例如复合二阶(CSO),复合三重拍频(CTB)和载波到载波)非常重要。噪声比(CNR)。数学上将不希望的影响公式化为多通道系统,并将结果用于获得更准确的光谱值。使用开窗和提出的校正方法来减轻这种有害影响,并且通过提出的校正方案可以将CTB测量提高3-5 dB。还介绍了一种为多频道CATV系统实现更好的频谱分析的过程。与传统的加窗方法相比,该分析和提出的方案可以提高基于FFT的多频道CATV系统测量的准确性。

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