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Electrodynamic Tests of Power Transformers with Reactive-Power Compensation

机译:具有无功补偿功能的电力变压器的电动力测试

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AbstractIt is shown that electrodynamic tests of power transformers are accompanied by the predominant consumption of a reactive power that is many times higher than the active-power consumption. A scheme of electrodynamic tests with longitudinal compensation of the reactive power using a capacitor bank is proposed. It allows a considerable reduction of the power that is consumed from the power-supply system. The parameters of the capacitor bank and the preliminary-charging voltage levels were determined that provide various current regimes for conducting both adjusting and actual short-circuiting experiments. The possibility of performing electrodynamic tests of power transformers with nominal powers of up to 630 MV A under the conditions of factory test centers using a controlled alternating-voltage source with a regulation range of 1.5–7.5 kV and a power of 22 MW was substantiated. Short-circuiting tests have a negative effect on the power-supply system because they are able to initiate a voltage dip with a duration of up to 0.2 s and even a dynamic-stability loss. As a result, the quality and reliability of electric-power supply of other consumers of the power-supply system deteriorate. The above negative consequences can be avoided and the required testing short-circuit current simultaneously provided via reduction of the total power consumed from the powersuppl system. In this study, the problem of the electromagnetic compatibility of an electrodynamic-test bench and a power-supply system is solved by compensating the reactive power during short-circuiting experiments.
机译: Abstract 结果表明,电力变压器的电动力测试主要伴随着无功功率的消耗,而无功功率的消耗是无功功率的许多倍。有功功率消耗。提出了一种使用电容器组对无功功率进行纵向补偿的电动测试方案。这样可以大大减少从电源系统消耗的功率。确定电容器组的参数和预充电电压电平,这些参数为进行调节和实际短路实验提供了各种电流方案。证实了在工厂测试中心条件下使用调节范围为1.5-7.5 kV,功率为22 MW的受控交流电源对标称功率高达630 MV A的电力变压器进行电动测试的可能性。短路测试会对电源系统产生负面影响,因为它们能够引发持续0.2 s甚至持续时间的动态稳定性下降的电压突降。结果,电源系统的其他消费者的电源的质量和可靠性降低。可以避免上述负面影响,并通过减少从电源系统消耗的总功率来同时提供所需的测试短路电流。通过补偿短路实验中的无功功率,解决了电动试验台与电源系统的电磁兼容性问题。

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