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Dynamic characteristics and cascaded coordination of limiting-type SPDs under subsequent negative strokes

机译:后续负行程下极限型SPD的动态特性和级联配合

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摘要

Subsequent negative impulses are steep and common in lightning flashes. Under such currents, the dynamic behaviour of metal-oxide varistors (MOVs) is expected to be significant and would affect the coordination of cascaded surge protective devices (SPDs). This study experimentally investigates the dynamic behaviour of MOVs under steep currents. Based on the dynamic characteristics, simulations are conducted to investigate the coordination of two-cascaded limiting-type SPDs with different cascaded combinations, different separation distances, and different loads under subsequent strokes with 0.25/100 μs current waveform. Meanwhile, the results are compared with that under 8/20 and 10/350 μs currents. Experiments are performed to investigate SPD coordination performance under subsequent strokes. The results show that voltages on MOVs of low-voltage SPDs increase about 6.8-18.7% under steep currents, compared with that under 8/20 μs current. Thanks to the significantly changed dynamic characteristics, the cascaded SPDs could more easily realise effective coordination under subsequent strokes, compared with that under 8/20 and 10/350 μs currents. Moreover, effective coordination can be achieved in large ranges of separation distances and loads under subsequent strokes. The SPD combinations with clamping voltage of upstream SPD a little higher than downstream SPD have the best behaviour for lightning protection in low-voltage systems.
机译:随后的负脉冲很陡,在闪电中很常见。在这样的电流下,金属氧化物压敏电阻(MOV)的动态性能有望显着提高,并会影响级联电涌保护器件(SPD)的配合。这项研究实验研究了MOV在陡峭电流下的动态行为。基于动态特性,进行了仿真,以研究在具有0.25 / 100μs电流波形的后续行程下具有不同级联组合,不同间隔距离和不同负载的两级限制型SPD的协调性。同时,将结果与8/20和10/350μs电流下的结果进行比较。进行实验以调查随后的中风后SPD协调性能。结果表明,与8/20μs电流相比,低压SPD的MOV上的电压在陡峭电流下增加了约6.8-18.7%。与8/20和10/350μs电流下相比,由于动态特性的显着变化,级联的SPD在随后的行程下可以更轻松地实现有效的协调。而且,在随后的行程下,在较大的分离距离和负载范围内可以实现有效的协调。上游SPD的钳位电压比下游SPD稍高的SPD组合在低压系统中具有最佳的防雷性能。

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