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首页> 外文期刊>IEEE Transactions on Power Delivery >Simulations of Three-Phase Current Interruptions Through a Black-Box Model of Miniature Circuit Breakers
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Simulations of Three-Phase Current Interruptions Through a Black-Box Model of Miniature Circuit Breakers

机译:通过黑匣子模型的微型断路器模型模拟三相电流中断

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摘要

A black-box model for arc-based current interruption, originally developed by the same authors for single-phase short-circuit tests, is here challenged with multipolar circuit breakers in three-phase interruptions. Multipolar devices are built by composition of elementary, single pole components. The three phases adopt three replicas of the same single-phase model, its parameters having been identified in single pole tests. Splitter-less neutral poles adopt a simplified model, deduced by specialization of the original model after suitably dropping splitter plate features. Various breakers and test cases are considered. Comparisons with experimental results in real short-circuit tests show very good agreement, in line with motivating industrial, system-level applications. Indeed, model parameters are obviously single pole design dependent, but they are invariant to different operating conditions and no fine tuning is required to match empirical evidence.
机译:用于基于弧电流中断的黑匣子型号,最初由同一作者开发的单相短路测试,在三相中断中的多极断路器挑战。多极器件由基本的单极组件的组成构成。三相采用相同单相模型的三个复制品,其参数在单极测试中被识别。拆分的中性杆采用了一种简化的模型,通过原始模型的专业推导出来,在适当的分离板功能之后。考虑各种破碎机和测试用例。实验结果比较实验结果在实际短路测试中表现出非常良好的一致性,符合动力工业,系统级应用。实际上,模型参数显然是单极设计依赖性,但它们是不变的不同操作条件,并且不需要进行微调来匹配经验证据。

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