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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Generalized Switching Modification Method Using Carrier Shift for DC-link Capacitor RMS Current Reduction in Real-Time Implementation
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Generalized Switching Modification Method Using Carrier Shift for DC-link Capacitor RMS Current Reduction in Real-Time Implementation

机译:使用载波转换的广义切换修改方法对于直流链路电容器RMS电流降低实时实现

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摘要

In this paper, a generalized switching modification method is proposed to reduce the root-mean-square (rms) current flowing into a dc-link capacitor in a dc-dc-ac structure consisting of a boost converter and a three-phase inverter. To analyze the current flowing into the capacitor, we analyze the currents at the respective converter and inverter sides. Based on this analysis, we derive an analytical method to find the modification time between the converter and inverter pulsewidth modulation (PWM) carriers through a Fourier series and approximation to facilitate real-time implementation. Real-time implementation of the modification time calculated by the derived method is described. To verify the validity of the proposed method, experimental results are presented based on a 1-kVA dc-dc-ac prototype. The proposed method has a better capacitor rms current reduction performance than the conventional method in various inverter power factors and PWM strategies. Especially, it has an excellent performance in mid-power factor level (0.95-0.1).
机译:在本文中,提出了一种广义的开关修改方法,以将流入DC-LINK电容器的根均方(RMS)电流在由升压转换器和三相逆变器组成的DC-DC-AC结构中。为了分析流入电容器的电流,我们分析了各个转换器和逆变器侧的电流。基于该分析,我们通过傅里叶串联和近似来找到分析方法,以找到通过傅里叶串联和近似来找到变频器和逆变器脉冲脉冲调制(PWM)载波之间的修改时间,以便于实时实现。描述了通过派生方法计算的修改时间的实时实现。为了验证所提出的方法的有效性,基于1-KVA DC-DC-AC原型提出了实验结果。该方法具有更好的电容器RMS电流降低性能,而不是各种逆变器电源因子和PWM策略中的传统方法。特别是,它在中功率因数(0.95-0.1)中具有出色的性能。

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