一种利用功率mosfet在初始充电时的支路短路抑制并网变换器直流电容过电压的控制方法

Tomoyuki Mannen, K. Wada
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引用次数: 9

摘要

提出了一种电压源电源变换器直流电容初始充电的控制方法。该方法适用于具有小直流电容的功率变换器,并且能够去除初始充电电路。该方法通过在电源变换器中使用功率器件,使直流电容放电并抑制其因初始充电而产生的过电压,从而实现支路短路。短路操作是一种短时间的操作,在每条腿上使用一次,以将损耗分配到每个电源设备上。在200 V, 5 kva三相变换器上进行的实验验证表明,该方法可以将直流电容的峰值电压从520 V降低到420 V。实验结果表明,该方法具有良好的抑制初始电荷过电压的能力,且不会对电源器件造成致命的损坏。因此,所提出的方法使得移除初始充电电路成为可能,从而减小了功率转换器的尺寸和成本。
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A Control Method of Overvoltage Suppression across the DC Capacitor in a Grid-Connection Converter Using Leg Short-Circuit of Power MOSFETs during the Initial Charge
This paper proposes a control method of initial charging of the dc-capacitor in voltage source power converters. The proposed method is suitable for the power converter equipped with a small dc capacitor and is capable of removing the initial charge circuit. The proposed method makes a leg short-circuit by using power devices in the power converter, which discharges the dc capacitor and suppresses its overvoltage due to the initial charge. The short-circuit operation is a short time period and is used one time in each leg for distributing the loss to each power devices. The experimental verification using a 200-V, 5-kVA three-phase converter shows that the proposed method can reduce the peak voltage of the dc capacitor from 520 V to 420 V. The experimental results exhibit a good capability of the proposed method of suppressing the overvoltage due to the initial charge without fatal damage to the power devices. As a result, the proposed method makes it possible to remove the initial charge circuit resulting in a reduction in the size and cost of power converters.
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