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A transformer inrush mitigation method for series voltage sag compensators

机译:串联电压暂降补偿器的变压器浪涌抑制方法

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Voltage sags are major power quality problems encountered by industries. Especially for high-tech companies which reside within inside industry park, any voltage sag event in the distribution system could affect many manufacturers and inflict significant losses. The voltage sag compensator, based on transformer-coupled series-connected voltage source inverter, is among the most cost-effective solution to protect sensitive loads. For the off-line sag compensator, one important issue is the transformer inrush at the start of sag compensation. The inrush current may trigger the over-current protection of the compensator inverter, and the transformer output voltage is greatly reduced due the magnetics saturation. Oversizing the transformer is a common approach to avoid the inrush current However, this would dramatically increase the size and weight of the sag compensation system. This paper proposes a new technique for mitigating the inrush of the coupling transformer and preserving the output voltage for effective sag compensation. Detailed explanations of the proposed inrush mitigation technique are presented, and the effectiveness of the proposed scheme is verified by laboratory test results. The inverter-assisted commutation sequence of the bypass thyristors for fast start of the compensator is also presented and verified by test results.
机译:电压骤降​​是工业界遇到的主要电能质量问题。特别是对于位于工业园区内的高科技公司,配电系统中的任何电压骤降事件都可能影响许多制造商并造成重大损失。基于变压器耦合的串联电压源逆变器的电压骤降补偿器是保护敏感负载的最具成本效益的解决方案之一。对于离线的跌落补偿器,一个重要的问题是在跌落补偿开始时的变压器涌入。浪涌电流可能会触发补偿器逆变器的过电流保护,并且由于磁饱和,变压器的输出电压会大大降低。变压器过大是避免浪涌电流的一种常用方法。但是,这会大大增加下垂补偿系统的尺寸和重量。本文提出了一种新技术,用于减轻耦合变压器的浪涌并保留输出电压以进行有效的垂度补偿。提出了拟议的涌流缓解技术的详细解释,并通过实验室测试结果验证了该方案的有效性。还给出了用于补偿器快速启动的旁路晶闸管的逆变器辅助换向顺序,并通过测试结果进行了验证。

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