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Traditional Time Current Curves (TCC) are not enough, adding I2T considerations

机译:传统的时间电流曲线(TCC)不够,增加了I 2 T注意事项

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Overcurrent device selectivity has always been desirable in power distribution systems. Recent changes in the US National Electrical Code (NFPA 70–2005 and subsequent) have increased the demand for near perfect selectivity. Simultaneously, heightened sensitivity to the effect of slow clearing times on Arc Flash Hazard has increased the need for fast and sensitive overcurrent protection, particularly at the larger upper tier overcurrent devices. When the selectivity solution is to oversize or slow down protection at mid-level feeders above the branch circuit breakers arc flash incident energy at higher levels in systems can reach unacceptable levels. Optimized protection and selectivity may be achieved by optimizing instantaneous settings and algorithms in upstream protectors. Such selectivity may be accomplished primarily by understanding the current limiting behavior of the downstream protective device and understanding the thermal capacitance needed to melt upstream fuse elements or intentional damping added to upstream circuit breaker trip units. When circuit breakers trip in sub-cycle times and clearing times are instantaneous, traditional Time Current Curves (TCC) are insufficient to correctly demonstrate device operation. The authors will describe a two graphical representations based on the I2t let-through of the downstream device and I2t requirement to trip the upstream device. The I2t representations more effectively describe protective device behavior in the instantaneous region below 0.010 seconds normally excluded in traditional TCCs. Furthermore, a technique, theoretical basis and proposed test protocol that suitable for a wide range of devices will be presented.
机译:过电流设备选择性始终是可取的配电系统。美国国家电气代码(NFPA 70-2005和随后)最近的变化增加了对近乎完美选择性的需求。同时,对弧形闪光危险缓慢清理时间效果的敏感性提高了对快速和敏感的过电流保护的需求,特别是在较大的上层过电流设备上。当选择性的解决方案是特大型或减缓在高于在系统中的支路断路器电弧闪光入射能量在较高水平的中级馈线保护可达到不可接受的水平。通过优化上游保护器中的瞬时设置和算法,可以实现优化的保护和选择性。这种选择性可以主要通过理解下游保护装置的电流限制行为来实现,并理解熔化上游熔丝元件或有意阻尼所需的热电容,或者有意阻尼添加到上游断路器跳闸单元。当子循环时间和清除时间中的断路器跳闸是瞬时的,传统的时间电流曲线(TCC)不足以正确展示设备操作。作者将根据I 2 t次通过下游设备和I 2 t要求来介绍两个图形表示,以便跳过上游设备。 I 2 t表示更有效地描述了通常在传统TCC中排除在0.010秒以下的瞬时区域中的保护装置行为。此外,将呈现适用于各种设备的技术,理论基础和所提出的测试方案。

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