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Analysis of Current Harmonic on Power System Fuses Using ANSYS

机译:基于ANSYS的电力系统熔断器电流谐波分析。

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摘要

One of the most important protective devices in power systems are fuses which have been used for ages. Passing short circuit current from fuse causes to warm fuse element that it will open this path. Fuse temperature can directly affect fuse operation and its melting as well. Therefore, fuse should be designed in a way that it does not operate at nominal current and instantaneous over currents whereas it should operate at error case. In this paper, firstly, fuse element is investigated and its behavior is studied. Then, a sample fuse with its different sections is simulated under sinusoidal and non- sinusoidal currents. After that, different parameters such as thermal distribution, thermal flux, and electrical potential in all fuse parts are obtained for sinusoidal and non-sinusoidal currents. Also, Fuse temperature for various THD values is determined. Finally, an equation to determine fuse nominal current due to harmonics is presented.
机译:电力系统中最重要的保护装置之一是已使用了很长时间的保险丝。来自保险丝的短路电流通过会使保险丝元件变热,它将断开该路径。保险丝温度会直接影响保险丝的工作及其熔化。因此,保险丝的设计应使其不能在额定电流和瞬时过电流下工作,而应在错误情况下工作。本文首先对熔断元件进行了研究,并对其性能进行了研究。然后,在正弦和非正弦电流下模拟具有不同截面的样本保险丝。此后,对于正弦和非正弦电流,将获得所有保险丝部件中的不同参数,例如热分布,热通量和电势。另外,确定各种THD值的保险丝温度。最后,给出了确定由于谐波引起的保险丝额定电流的方程式。

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