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Unconditionally sequential approach to calculate the impulse strength of air for nonstandard impulse voltages

机译:无条件顺序方法计算非标准脉冲电压下的空气脉冲强度

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The reliability of the power apparatus depends on the reliability of its insulation, which is tested with the standard lightning impulse voltages of wave shape 1.2/50 /spl mu/s. Often it is very difficult to adjust the impulse generator to get the standard wave shape within tolerance limits. While testing higher rating transformers, part of windings can get stressed with nonstandard voltages of both unidirectional and bidirectional oscillating waves. Hence it would be appropriate to test the power apparatus for the standard 1.2/50 /spl mu/s impulse voltages, and also to estimate the insulation strength for nonstandard impulse voltages. Disruptive effect method, which is a generalized method to estimate the breakdown voltage of insulation structures exposed to nonstandard lightning impulse voltages is an appropriate method to estimate the impulse strength for unidirectional nonstandard impulses. In this paper air as a basic insulating medium has been analyzed extensively for gap distances ranging from 1 mm to 5 mm for different electrode configuration from uniform to highly nonuniform field configuration. Unconditionally sequential approach, which caters to the bi-directionally oscillating voltages, has also been explained in this paper.
机译:动力设备的可靠性取决于其绝缘的可靠性,该绝缘的可靠性是通过波形为1.2 / 50 / spl mu / s的标准雷电冲击电压进行测试的。通常很难调整脉冲发生器以在公差范围内获得标准波形。在测试更高额定值的变压器时,部分绕组会承受单向和双向振荡波的非标准电压。因此,测试功率设备的标准脉冲电压为1.2 / 50 / spl mu / s,并估计非标准脉冲电压的绝缘强度将是适当的。干扰效应法是一种估算暴露在非标准雷电冲击电压下的绝缘结构的击穿电压的通用方法,是一种用于估算单向非标准脉冲的冲击强度的合适方法。在本文中,已经对作为基本绝缘介质的空气进行了广泛分析,其间隙距离范围从1 mm到5 mm,适用于从均匀电场配置到高度非均匀电场配置的不同电极配置。本文还介绍了适应双向振荡电压的无条件顺序方法。

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