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A simple dead-time compensation strategy for grid-connected voltage - sourced converters semiconductor switches

机译:并网电压源转换器半导体开关的简单停滞时间补偿策略

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This paper presents a simple strategy to compensate the distorted currents synthesized by a grid-connected voltage source converter due to dead-time, turn-on and turn-off time delays of the semiconductor switches. The algorithm consider only the polarity of the fundamental component of the currents flowing through the converter terminals and the values of the time delays and voltage drops supplied by the manufacturers to the semiconductors devices. The presented compensation belongs to the group classified as average value compensation technique methodology since it does not change the pulse pattern of the converter's semiconductor switches. A simplified mathematical description of the effects caused by these unwanted time delays is presented and used to derive a correction factor to be added, in real time, to the converter output controller in order to compensate for its terminal voltages. The asymptotic stability and robustness of the proposed methodology is investigated redrawing the converter current controllers, designed in dq-reference frame, as proportional-resonant ones, in the abc coordinates, and adding the effect of the compensating signal in the feedback loop using the concept of describing function. In addition, the minimum value of the DC bus voltage necessary is also evaluated to ensure the operation of the converter in the linear modulation region when the compensation algorithm is active. Experimental results are presented to validate the theoretical analysis and to demonstrate the effectiveness of the proposed strategy for three different operation conditions of a grid-connected converter: (i) active power injection; (ii) active power consumption and (iii) reactive power support.
机译:本文提出了一种简单的策略来补偿由于半导体开关的死区时间,导通和关断时间延迟而导致的并网电压源转换器合成的失真电流。该算法仅考虑流经转换器端子的电流的基本分量的极性以及制造商提供给半导体器件的时间延迟和压降的值。所提出的补偿属于分类为平均值补偿技术方法的组,因为它不会改变转换器半导体开关的脉冲模式。给出了由这些不希望的时间延迟引起的影响的简化数学描述,并用于导出要实时添加到转换器输出控制器以补偿其端子电压的校正因子。研究了所提出方法的渐近稳定性和鲁棒性,将dq参考系中设计的转换器电流控制器重新绘制为abc坐标系中的比例谐振控制器,并使用该概念在反馈回路中增加了补偿信号的影响功能描述。此外,还对必要的直流母线电压的最小值进行了评估,以确保在激活补偿算法时确保转换器在线性调制区域中的运行。给出实验结果以验证理论分析并证明所提出的策略在并网转换器的三种不同操作条件下的有效性:(i)有功功率注入; (ii)有功功率消耗和(iii)无功功率支持。

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