Electromagnetic Compatibility Handbook

Electromagnetic Compatibility Handbook
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DOI:
10.1007/978-94-017-7144-3
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发表时间:
1987-01
影响因子:
6.3
通讯作者:
J. Violette;D. White;Michael F. Violette
J. Violette;D. White;Michael F. Violette
中科院分区:
材料科学1区
文献类型:
--
作者:
J. Violette;D. White;Michael F. Violette

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电气工业的发展导致了基本上整个电磁频谱的利用,以执行与各个行业相关的许多任务:通信服务;空中,海上和地面无线电导航系统;军事行动;科学研究;医疗;计算机相关操作;和太空探索。与所有这些相关联的固态电子产品的扩散已经产生了电磁环境,其中来自人为源的相互电磁干扰(EMI)的可能性继续快速增加。除了人为干扰源外,还必须考虑雷电和其他自然EMI源的影响。电气/电子系统在给定环境中运行而不会因EMI而导致任何系统的不可接受的性能下降的能力被称为电磁兼容性(EMC)。随着EMI变得越来越明显,系统、子系统、电路和组件级的EMC工程要求也越来越高。作为一门学科,EMC工程通常不作为标准课程的一部分教授;相反,它所需的技能是从“现场”的实践经验中获得的。本手册的特点是适当的EMC主题的相关发展;数学公式,以支持以表格和图形格式提供的分析定量数据,以及作者和EMC社区内其他人从多年的“实践”经验中得出的经验数据。严格的数学公式通常不会完整呈现,但提供的结果有助于从基本科学和工程原理的角度理解EMC情况和解决方案。
The growth of the electrical industry has resulted in the utilization of essentially the entire electromagnetic spectrum to perform many of the tasks associated with various industries: communication services; air, sea, and ground radio navigation systems; military operations; scientific research; medical treatment; computer-related operations; and space explorations. The proliferation of solid-state electronic products associated with all of these has created an electromagnetic environment wherein the probability of mutual electromagnetic interference (EMI) from man-made sources continues to increase at a rapid pace. In addition to man-made interference sources, the effects due to lightning and other natural EMI sources must be considered. The capability of electrical/electronic systems to operate within a given environment without unacceptable performance degradation of any system due to EMI is referred to as Electromagnetic Compatibility (EMC). As EMI becomes more pronounced, so does the requirement for EMC Engineering at the system, subsystem, circuit, and component level. As a discipline, EMC engineering is generally not taught as part of standard curriculum; its required skills, instead, are acquired from practical experience" in the field." This Handbook features relevant developments of appropriate EMC topics; mathematical formulations to support analytical quantitative data presented in tabular and graphical format, and empirical data derived from several years of" hands-on" experience by the authors and others within the EMC community. Rigorous mathematical formulations are generally not presented in their entirety, but the results are provided to facilitate understanding of EMC situations and solutions in terms of basic scientific and engineering principles.