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Grounded theory and EMC immunity test on the use of Grounded Theory based upon collected test data and design guidelines for achievement of good EMC performance.

机译:扎根理论和EMC抗扰度测试基于已收集的测试数据和设计指南,基于扎根理论的使用,以实现良好的EMC性能。

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This paper describes an experimental approach for determining the more important EMC immunity test stressors for EMC HALT (Highly Accelerated Limit Test) immunity test on a given test object. The more relevant stressors are chosen based upon a large number of collected EMC test data, EMC design rules and design statements that are selected through a Grounded Theory research process. “Grounded” in this context has nothing to do with electrical grounding. The concept of using a Grounded Theory approach for the construction of a decision tool for EMC HALT analysis has been tested by the EMC research team of the present company. The process of retrieving the input data statements from conference papers, literature and test data has been executed, and the subsequent process of sorting and merging these statements under suitable sub-categories and Main Categories has been completed. The statements have been sorted and merged into the defined Main Categories and sub-categories through application of the joint experience and knowledge of the EMC research team members. A premature decision tool in the form of a rule check spreadsheet has been developed and briefly tested. It is concluded that the tool provides reasonable but also foreseeable guidance on decision of optimal EMC test parameters for EMC HALT analysis on a specific test object.
机译:本文介绍了一种实验方法,用于确定对给定测试对象的EMC HALT(高加速极限测试)抗扰度测试的更重要的EMC抗扰度测试压力。基于通过基础理论研究过程选择的大量收集的EMC测试数据,EMC设计规则和设计声明,选择更相关的压力源。在这种情况下,“接地”与电气接地无关。本公司的EMC研究团队已经测试了使用扎根理论方法构建EMC HALT分析决策工具的概念。从会议论文,文献和测试数据中检索输入数据语句的过程已执行,随后对这些语句进行归类和合并的过程已在适当的子类别和主要类别下完成。通过应用EMC研究团队成员的共同经验和知识,这些声明已被分类并合并为已定义的主要类别和子类别。已经开发并简要测试了规则检查电子表格形式的过早决策工具。结论是,该工具为特定测试对象的EMC HALT分析的最佳EMC测试参数决策提供了合理但可预见的指导。

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