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A novel thermal performance evaluation method for inverter passive components

机译:一种新型的逆变器无源元件热性能评估方法

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Improvement in the reliability of grid-connected inverters is desirable with their increasing use. Inverter reliability tests usually focus on thermal testing of semiconductor devices. Regenerative methods are adopted to minimize the energy consumed during these tests. Regeneration requires additional systems - converters or passive components. In this paper, a novel method for thermal testing of the passive components associated with a grid-connected inverter is proposed. The method can be used to test the output filter inductors, output ac filter capacitors and input dc electrolytic capacitors. Thermal stress affects the working life of capacitors and can cause insulation failure in inductors. Thermal testing of these passive components, besides the semiconductor device thermal testing, contributes to improved reliabilty of the grid-connected inverter system. Unlike regenerative methods that require additional systems of high-power rating, the proposed method circulates rated current within the three legs of the inverter under test. The only additional system required is a low power dc supply with variable output voltage. The variable dc input supplies the losses in the system under test. The applicability of the proposed test for both three-wire and four-wire grid-connected inverter systems is discussed.
机译:随着使用的增加,期望并网逆变器的可靠性得到改善。逆变器可靠性测试通常着重于半导体器件的热测试。采用再生方法以最小化这些测试过程中消耗的能量。再生需要其他系统-转换器或无源组件。在本文中,提出了一种新的方法来对与并网逆变器相关的无源组件进行热测试。该方法可用于测试输出滤波电感器,输出交流滤波电容器和输入直流电解电容器。热应力会影响电容器的使用寿命,并可能导致电感器发生绝缘故障。除了半导体器件的热测试以外,这些无源组件的热测试还有助于提高并网逆变器系统的可靠性。与需要额外的高功率系统的再生方法不同,该方法在被测逆变器的三个支路中循环额定电流。唯一需要的附加系统是输出电压可变的低功率直流电源。可变直流输入提供了被测系统的损耗。讨论了所建议的测试对三线和四线并网逆变器系统的适用性。

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