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A forced switching technique for current controlled three-level NPC ac-dc converter

机译:电流控制三电平NPC AC-DC转换器的强制开关技术

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In this paper forced switching control of three-level Neutral Point Clamped (NPC) ac-dc converter having rectification and regeneration capability is presented. This converter is utility friendly and maintains the dc-link voltage constant. Hysteresis current controller (HCC) is used for current control because of its simplicity, easy implementation and good dynamic performance. The comparison of a high frequency carrier signal at the input to the nonlinear element serves as an effective method of sustaining or quenching the limit cycles present in the system. This method ensures the advantages of HCC and guarantees constant switching frequency operation. This switching technique is called forced switching algorithm. Magnitude conditions of carrier signals are developed for proper switching of the converter. The closed-loop control scheme with hysteresis current control is implemented using Lab VIEW based data acquisition system. The performance of the proposed three-level ac-dc converter has been studied using MATLAB/Simulink and experimental results are presented to validate the proposed control scheme.
机译:本文提出了具有整流和再生能力的三电平中性点钳位(NPC)AC-DC转换器的强制开关控制。该转换器非常实用,可保持直流母线电压恒定。迟滞电流控制器(HCC)由于其简单,易于实现和良好的动态性能而用于电流控制。非线性元件输入端的高频载波信号的比较是维持或消除系统中存在的极限循环的有效方法。这种方法确保了HCC的优势,并保证了恒定的开关频率操作。这种切换技术称为强制切换算法。载波信号的幅值条件被开发用于转换器的正确切换。带有磁滞电流控制的闭环控制方案是使用基于Lab VIEW的数据采集系统实现的。利用MATLAB / Simulink对所提出的三电平AC-DC转换器的性能进行了研究,并给出了实验结果以验证所提出的控制方案。

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