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Remanence detection and low-frequency degaussing for power transformers based on modified J-A model

机译:基于改进的J-A模型的电力变压器剩磁检测和低频消磁

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In this paper, based on the modified Jiles-Atherton model, the effects of eddy current and temperature were taken into account to study the hysteresis characteristic of any point on B-H loops. Then, as long as the initial demagnetization point is known from voltage and current waveforms in practice, the terminal of demagnetization, or the residual flux, can be determined. A low-frequency degaussing method is introduced to reduce the source power, but it'll take more time when compared with the degaussing under the normal frequency. Accordingly, the multi objective programming approach was adopted to determine an optimal frequency trading off between power demands and degaussing time. What's more, to assess the effectiveness of both residual flux measuring and degaussing methods, an experiment platform was built eventually.
机译:本文基于改进的Jiles-Atherton模型,考虑了涡流和温度的影响,以研究B-H回路上任何一点的磁滞特性。然后,只要实际上从电压和电流波形知道初始退磁点,就可以确定退磁的终点或剩余磁通量。引入了低频消磁方法来降低源功率,但是与正常频率下的消磁相比,它将花费更多的时间。因此,采用多目标编程方法来确定功率需求和消磁时间之间的最佳频率折衷。此外,为了评估残留磁通测量和消磁方法的有效性,最终建立了一个实验平台。

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