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Analysis, computation, and mitigation of radio systems' mutual interference effects in collocated vehicular transceivers

机译:并置车载收发器中无线电系统相互干扰影响的分析,计算和缓解

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The recent increase in the use of mobile radios and systems has enhanced the operation probability and harmful mutual interference resulting from the collocation of two transceivers in the same vehicle. Military mobile systems are especially vulnerable to the collocation operation. Civilian systems, however, are now also being affected. This paper provides a better understanding of the effects of mutual interference and the means by which they can be reduced. This is shown by analyzing the conditions which cause mutual interference, developing computational methods to quantize their effects, and applying these computational results to a typical vehicular VHF radio system so as to minimize their effect. Computational methods are developed using both deterministic and novel empirical relationships to quantize the mutual interference effects as a function of antenna spacing and frequency intervals. The shielding and grounding techniques fall outside the scope of this paper, and the mutual interference effects on remote transceivers are treated in a forthcoming paper. The computation results and mitigation techniques presented in this paper can be applied from the initial development phase of transceivers intended for use in collocated operations, thereby significantly improving their system reliability and operational frequency management policy.
机译:移动无线电和系统的最新使用增加了由于同一车辆中两个收发器并置而导致的工作可能性和有害的相互干扰。军事移动系统特别容易受到并置操作的攻击。但是,平民系统现在也受到了影响。本文更好地理解了相互干扰的影响以及减少相互干扰的方法。通过分析引起相互干扰的条件,开发计算方法来量化其影响并将这些计算结果应用于典型的车载VHF无线电系统以使其影响最小化,可以看出这一点。使用确定性和新颖的经验关系来开发计算方法,以将相互干扰效应量化为天线间隔和频率间隔的函数。屏蔽和接地技术不在本文讨论范围之内,并且在即将发表的论文中将讨论对远程收发器的相互干扰影响。本文介绍的计算结果和缓解技术可以从旨在用于并置操作的收发器的初始开发阶段开始应用,从而显着提高其系统可靠性和操作频率管理策略。

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