商用调频电台机载通信导航接收机干扰的分析测定及实验验证

J. Essman, T. Loos
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引用次数: 2

摘要

本文总结了由美国联邦航空管理局(FAA)赞助的FA77WA-3932合同所进行的工作。本研究资助的主要目的是确定一种分析模型,能够预测强干扰调频广播电台对机载导航(特别是定位接收器)和通信接收器的影响。利用三阶非线性,建立了机载通信和导航接收机射频放大级的解析模型,该模型能够预测多个调频干扰电台的影响。对接收机输入滤波器和中频滤波的影响进行了建模。描述和评价了用于确定模型各种参数的测量技术。研究了不同信号功率、不同信号频率等因素对参数的影响。对模型的准确性和定义的有效性区域进行了限制。考虑了强干扰调频电台使前端饱和的暴力干扰和两个或多个调频电台相互作用造成的互调失真。为了评估调频电台干扰带来的失真程度,考虑了各种信号特性。考虑了接收机滤波的影响,并对由此产生的fm - am转换进行了分析描述。用于评估失真的信号特性包括中频输出的频谱图、峰值(交叉)调制指数、包络检波器输出的均方根值等。考虑了前端被干扰信号饱和所引起的接收机脱敏效应。实验结果验证了理论结果。本文开发了一个计算机程序,从理论上预测了多个调频电台干扰的影响。输入数据包括调频电台频率、功率、位置等,输出数据包括中频输出干扰信号频谱图、峰值交叉调制指数、调幅探测器输出均方根值等。权衡研究表明,建立额外的调频电台的影响和/或当一个或多个电台改变其功率水平、位置、天线模式等时预期的结果,通过实例加以说明。可以考虑的调频电台的数量仅受用户可用的计算设施的限制。考虑了能够可靠地用于预测潜在干扰源的决策准则。研究了载波单音调频调制对定位接收机航向偏差计(CDI)的干扰结果。将所得结果应用于实际出现干扰问题的机场,并对理论模型所得结果进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical determination of the interference of commerical FM stations with airborne communication and navigation receivers and experimental verifications
This paper summarizes the work performed under contract FA77WA-3932 sponsored by the Federal Aviation Administration (FAA). The primary objective of the research sponsored here is the determination of an analytical model capable of predicting the effects of strong interfering FM broadcast stations on air-borne navigational (specifically the localizer receiver) and communication receivers. An analytical model of the RF-amplifier stage, using a third order nonlinearity, of airborne communication and navigation receivers capable of predicting the effects of multiple interfering FM stations is developed. The effects of receiver input filters and IF filtering are modeled. Measurement techniques useful in determining the various parameters of the model are described and evaluated. The effects of different signal powers, different signal frequencies, etc. on the parameters are investigated. Limits are postulated on the accuracy of the model and regions of validity defined. Brute-force interference due to strong interfering FM stations which saturates the front end and intermodulation distortion due to the interaction of two or more FM stations are considered. Various signal characteristics are considered for evaluating the degree of distortion introduced by interfering FM stations. The effects of filtering due to the receiver are considered and the resulting FM-to-AM conversion analytically described. Signal characteristics considered for evaluating distortion include spectral plots of the IF output, peak (cross-) modulation indices, RMS output of an envelope detector, etc. The effects of receiver desensitation due to saturation of the front end by the interfering signals are considered. Experimental results are given to verify theoretical results. A computer program was developed and is decribed here which theoretically predicts the effects of multiple interfering FM stations. Input data include FM station frequencies, powers, location, etc. and the output consist of interfering signal spectral plots at the IF output, peak cross-modulation indices, RMS output of AM detectors, etc. Tradeoff studies indicating the effects of the creation of additional FM stations and/or the results to be expected when one or more stations change their power levels, location, antenna patterns, etc. are illustrated by example. The number of FM stations that can be considered is limited only by the computing facilities available to the user. Consideration into decision criteria that can be reliably used in predicting potential interfering sources are considered. The results of the interference on the Course Deviation Meter (CDI) of a localizer receiver are investigated using single tone FM modulation of the carriers. The results are applied to specific airports where interference problems have occurred and the results obtained by the theoretical model are analyzed.
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