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Impulse Generator Optimum Setup for Transient Testing of Transformers Using Frequency-Response Analysis and Genetic Algorithm

机译:基于频率响应分析和遗传算法的变压器暂态测试脉冲发生器最优设置

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摘要

A novel optimization-enabled electromagnetic transient simulation approach is proposed for calculating the resistor setting of a multistage impulse generator for insulation impulse testing of high-voltage transformers. This approach enables test engineers to overcome most of the major challenges attributed to the use of conventional trial-and-error methods for determining resistor settings, including the excessive time consumption and the potential damage to the test transformer due to a greater number of trial tests. The proposed method uses the frequency response of the test transformer to synthesize a circuit model for it. The test setup, including the test transformer and the impulse generator, is simulated using an electromagnetic-transients-type simulator. A genetic-algorithm-based approach is used to optimize the setting of the impulse generator. Optimized resistor values are then used in impulse testing of a three-phase power transformer. Different cases of impulse generator resistor arrangements are studied in this paper and simulated waveforms are compared with those obtained from measurements.
机译:提出了一种新颖的优化使能的电磁暂态仿真方法,用于计算用于高压变压器绝缘脉冲测试的多级脉冲发生器的电阻设置。这种方法使测试工程师能够克服由于使用常规试错法确定电阻器设置而导致的大多数主要挑战,包括过多的时间消耗以及由于大量试探而对测试变压器造成的潜在损害。 。所提出的方法利用测试变压器的频率响应为其综合电路模型。使用电磁暂态仿真器对包括测试变压器和脉冲发生器在内的测试装置进行仿真。基于遗传算法的方法用于优化脉冲发生器的设置。然后,将优化的电阻器值用于三相电力变压器的脉冲测试中。本文研究了脉冲发生器电阻器布置的不同情况,并将模拟波形与通过测量获得的波形进行了比较。

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