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v-t Characteristics using extended disruptive effect model for impulses of varying front times

机译:v-t特性,使用扩展的干扰效应模型来处理变化的前置时间的脉冲

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摘要

Overvoltages due to internal and external sources stress the insulation of the power system equipment. Usually the insulation design of any power equipment is tested with standard lightning impulse voltage. In practical cases, the insulations are stressed with overvoltages of non-standard waveshapes like steep fronted, Very Fast Transient Overvoltages (VFTO) and oscillatory impulses also. This demands the study on behavior of insulating materials under non-standard impulses. The prediction of v-t characteristics of any insulating material for such non-standard overvoltages is required for proper insulation design. In this regard, an attempt is made to characterize air insulation using existing Disruptive Effect model for standard lightning impulse (1.2/50 μs) and is found successful only for time to breakdown (t) greater than 2 μs. Hence, an extended Disruptive Effect model is proposed to cater to t less than 2μs and the model is verified up to VFTO. The model is also verified for impulses of varying front times between 90 ns to 1.2 μs with oscillations.
机译:内部和外部电源引起的过压会给电源系统设备的绝缘带来压力。通常,任何电源设备的绝缘设计都使用标准雷电冲击电压进行测试。在实际情况下,绝缘层会承受非标准波形的过电压,例如陡峭的前​​沿,非常快速的瞬态过电压(VFTO)和振荡脉冲。这就需要研究绝缘材料在非标准脉冲下的行为。对于正确的绝缘设计,需要针对此类非标准过电压预测任何绝缘材料的v-t特性。在这方面,尝试使用现有的标准雷电冲击(1.2 / 50μs)的干扰效应模型来表征空气绝缘,并且发现仅在击穿时间(t)大于2μs时才成功。因此,提出了一个扩展的干扰效应模型,以适应t小于2μs的情况,并对该模型进行了VFTO验证。还验证了该模型的前缘时间在90 ns至1.2μs之间随振荡变化的脉冲。

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