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Optimising the performance of three-phase neutral- point clamped rectifier under disturbed AC mains

机译:在交流电源干扰下优化三相中性点钳位整流器的性能

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In this paper, a novel simplified control technique is proposed to control three-phase neutral-point clamped bidirectional rectifier using optimised switching sequences for disturbed AC mains. In space-vector modulation (SVM) technique using optimised switching sequences, duty ratio and sampling periods in each region are very important. In other words, reference vector trajectory shape and the time spent by the reference vector in each region are very important to obtain exact switching under any supply conditions. With the use of optimised switching sequences, even under ideal supply conditions, it is depicted that source-side and load-side parameters deviate from acceptable limits, and a DC-bus capacitor voltage unbalance occurs. Under the influence of disturbed AC supply, source-side and load-side parameters deviate more beyond acceptable limits which cause a very large unbalance in DC bus capacitor voltages. This non-ideal performance of the converter is responsible for the deterioration of quality of source currents and a large stress on power semiconductor devices. A new algorithm is proposed in this paper to make the converter performance ideal even under ideal and non-ideal supply conditions. According to supply conditions, the proposed technique varies the speed of the reference vector and, also at the same time, forms a required trajectory while passing through the most effective regions of SVM hexagon. The proposed technique maintains parameters within acceptable limits for source side and load side in terms of unity power factor, low input current total harmonic distortion (THD), minimum switching losses and reduced-rippled, well-regulated DC-bus voltage and also at the same time DC-bus capacitor voltage balance. The simulation results are presented to demonstrate the effectiveness of the proposed control technique.
机译:在本文中,提出了一种新颖的简化控制技术,该技术可通过优化交流干扰电网的开关顺序来控制三相中性点钳位双向整流器。在使用优化开关序列的空间矢量调制(SVM)技术中,每个区域中的占空比和采样周期非常重要。换句话说,参考矢量的轨迹形状和每个区域中参考矢量所花费的时间对于在任何供电条件下获得准确的转换都是非常重要的。通过使用优化的开关顺序,即使在理想的电源条件下,也可以看到源侧和负载侧参数偏离了可接受的极限,并且发生了直流母线电容器电压不平衡。在交流电源受干扰的影响下,电源侧和负载侧参数的偏差会超出可接受的极限,这会导致直流总线电容器电压出现非常大的不平衡。转换器的这种非理想性能导致了源电流质量的下降和功率半导体器件上的巨大压力。本文提出了一种新算法,即使在理想和非理想电源条件下,也能使转换器性能理想。根据供应条件,所提出的技术会改变参考矢量的速度,并且同时穿过SVM六角形的最有效区域,同时形成所需的轨迹。提出的技术在单位功率因数,低输入电流总谐波失真(THD),最小的开关损耗和降低的纹波,良好调节的DC总线电压等方面将参数保持在源端和负载端的可接受范围内。同时直流母线电容器电压平衡。仿真结果表明了所提出的控制技术的有效性。

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