首页> 外文会议>2009 IEEE Industrial amp; Commercial Power Systems Technical Conference (Iamp;CPS) >Selectivity analysis in low voltage power distribution systems with fuses and circuit breakers
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Selectivity analysis in low voltage power distribution systems with fuses and circuit breakers

机译:带有保险丝和断路器的低压配电系统的选择性分析

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Interest in complete overcurrent device selectivity has increased due to the addition of selectivity requirements to articles 700, 701, and 708 of the National Electrical Code (NFPA70). Many users, both commercial and industrial, use fuses and circuit breakers simultaneously. Traditional Time-Current Curve (TCC) analysis is known to not fully communicate fuse selectivity; hence fuse manufacturers publish device ratio guidelines for selection of fuse type and sizes. Recent publications of selectivity tables by circuit manufacturers also demonstrate that traditional TCCs are often insufficient to fully communicate circuit breaker selectivity. Traditional TCCs can lead to incorrect conclusions regarding circuit breaker fuse selectivity, indicating more or less selectivity than may be possible. The authors will describe various methods for assessment of selectivity in systems using both fuses and circuit breakers together, with either device on the line side. The methods will demonstrate that selectivity above what TCCs demonstrate may be possible if devices are selected correctly, and that traditional TCC analysis, can also incorrectly demonstrate more selectivity than a more thorough analysis would predict. The methods lend themselves to analysis that a power system engineer can perform with published information or information that may be requested from manufacturers.
机译:由于对美国国家电气法规(NFPA70)的条款700、701和708增加了选择性要求,因此人们对完全过流设备选择性的兴趣有所增加。商业和工业的许多用户同时使用保险丝和断路器。众所周知,传统的时间-电流曲线(TCC)分析无法充分传达保险丝的选择性。因此,保险丝制造商发布了用于选择保险丝类型和尺寸的设备比率指南。电路制造商最近发布的选择性表也表明,传统的TCC通常不足以充分传达断路器的选择性。传统的TCC可能会得出有关断路器熔断器选择性的错误结论,表明选择性或多或少是可能的。作者将介绍使用保险丝和断路器一起在系统中使用任一设备的系统中评估选择性的各种方法。这些方法将证明,如果正确选择器件,则高于TCC证明的选择性可能是可能的,并且传统的TCC分析也可能不正确地证明比更全面的分析所预测的选择性更高。这些方法有助于进行分析,以便电源系统工程师可以使用已发布的信息或制造商可能要求的信息来执行。

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