Intermodulation Distortion in Freqency-Division-Multiplex FM Systems - A Tutorial Summary

G. Garrison
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引用次数: 20

Abstract

In the design of FDM-FM communication systems, a great deal of importance is attached to an appreciation of those transmission irregularities that yield second- and third-order intermodulation spectra. Such spectra are readily generated by amplitude, phase, and AM/PM conversion anomalies within the FM transmission path. In this paper the results of the available journal literature have been reworked for presentation in a generalized form appropriate for use by equipment designers and system analysts. Intermodulation noise magnitudes and spectral distributions are expressed in terms of the transmission network and system modulation parameters with the AM/PM conversion characteristic extended to that of a second-order power series in radian frequency. To fully exploit the usefulness of the foregoing, the coherency between the intermodulation spectra of all distortion mechanisms is considered. The effects of this correlation is then exemplified for a tandemly interconnected set of distorters. It is found that all secondand third-order distortion mechanisms may be grouped under the classifications of: amplitude, delay, equivalent amplitude/delay, and quasi-equivalent amplitude/delay distortion. It is concluded that, as a result of the correlative structure of the distortion processes, an overall system measurement of intermodulation noise may exhibit an unexpected level of magnitude and/or have a spectral distribution significantly different from any of the inherent system distortions.
频分多路调频系统中的互调失真-教程摘要
在FDM-FM通信系统的设计中,对产生二阶和三阶互调频谱的传输不规则性的评估是非常重要的。这种光谱很容易由调频传输路径内的振幅、相位和调幅/调幅转换异常产生。在本文中,现有期刊文献的结果已被重新加工,以适合设备设计师和系统分析人员使用的一般形式呈现。互调噪声的幅值和频谱分布用传输网络和系统调制参数表示,并将AM/PM转换特性扩展为弧度频率的二阶幂级数。为了充分利用上述的有用性,考虑了所有畸变机制的互调频谱之间的相干性。这种相关性的影响,然后举例说明一组串联互连的失真器。发现所有的二阶和三阶失真机制可以归为:振幅、延迟、等效振幅/延迟和准等效振幅/延迟失真。结论是,由于畸变过程的相关结构,互调噪声的整体系统测量可能表现出意想不到的幅度水平和/或具有与任何固有系统畸变显著不同的频谱分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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