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ELECTROMAGNETIC ENVIRONMENTS - PHENOMENA, CLASSIFICATION, COMPATIBILITY AND IMMUNITY LEVELS

机译:电磁环境 - 现象,分类,兼容性和免疫水平

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摘要

Knowledge of electromagnetic environments existing at locations where equipment is intended to be operated is an essential precondition for the achievement of electromagnetic compatibility. The necessity of such a knowledge results from the fact that suitable immunity requirements can be concluded from corresponding data regarding the electromagnetic environment. This information should include the type as well as the characteristics of electromagnetic phenomena occurring at those locations. Appropriate information can be obtained by various approaches, such as site surveys or technical assessments accompanied by evaluations of technical literature. It is obvious that the description of a general electromagnetic environment should consider a multitude of phenomena having a broad spectrum of parameters. However, in many cases such a general description is not helpful because it would imply that immunity against all such phenomena has to be taken into consideration. A more practical approach consists in introducing a classification scheme which gives a correlation between locations and the electromagnetic phenomena existing there. This concept forms the basis of the EMC publication IEC 61000-2-5. Because of continuous change of existing technologies and introduction of new ones, electromagnetic environments in a certain respect change fundamentally. This is very obvious in case of all the recently introduced radio and communication services with the generation of electromagnetic fields in the frequency range above 1 GHz. Hence the need arises to monitor continuously electromagnetic environment and to adapt its description. Such an adaptation is currently being done by a working group of IEC TC 77. The results of its work will be the object of the next edition of IEC 61000-2-5. The present status as well as expected changes are discussed in this paper.
机译:关于在旨在操作的地方存在的电磁环境知识是实现电磁兼容性的基本前提。这种知识的必要性来自于可以从关于电磁环境的相应数据得出合适的免疫要求的事实。该信息应包括该类型以及在这些位置发生的电磁现象的特征。可以通过各种方法获得适当的信息,例如现场调查或技术评估伴随着技术文献的评估。很明显,通用电磁环境的描述应考虑具有广泛参数的多种现象。然而,在许多情况下,这种概述没有帮助,因为它意味着必须考虑对所有这些现象的免疫力。一种更实用的方法包括引入一个分类方案,该方案在那里提供了存在的位置和电磁现象之间的相关性。这一概念构成了EMC出版物IEC 61000-2-5的基础。由于现有技术的持续变化和引入新的技术,在某种尊重中的电磁环境从根本上变化。在所有最近引入的无线电和通信服务的情况下,这非常明显,并且在1 GHz以上的频率范围内产生电磁场。因此,需要监测连续电磁环境并适应其描述。此类适应目前由IEC TC 77工作组完成。其工作的结果将是下一代IEC 61000-2-5的对象。本文讨论了现状以及预期的变化。

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