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A novel switching strategy for DC link voltage balance in parallel connected three-level diode clamped back-to-back converter systems serving to variable speed pumped storage plant

机译:用于变速抽水蓄能电站的并联三电平二极管钳位背靠背变流器系统中直流链路电压平衡的新颖切换策略

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Variable speed pumped storage plant (VSPSP) is a practical feasible solution to meet peak demand in power network. During recent era, doubly fed induction machine (DFIM) is preferred for the sites, where large variations in water head or surplus power available in the grid to increase the energy efficiency at part loads. In general, DFIM with parallel connected three-level diode clamped converter (3L-NPC) systems are employed in rotor circuit for large rated pumping applications (above 100 MW). However, parallel connected 3L-NPC suffers with DC link voltage imbalance due to neutral phase currents, which degrades the overall performance of the inverter. To overcome this issue, this paper proposes a novel switching strategy based on virtual switching vector selection scheme, which balances the DC link voltage for wide range of load variation without any additional circuitry. The effectiveness of proposed switching strategy is realized with MATLAB/Simulink environment and experimental validation is performed through 2.2 kW DFIM system.
机译:变速抽水蓄能电站(VSPSP)是满足电网高峰需求的一种切实可行的解决方案。在近代时代,双馈感应电机(DFIM)是首选的站点,在这些站点中水头或电网中可用的剩余功率变化很大,以提高部分负载时的能源效率。通常,在转子电路中使用具有并联连接的三电平二极管钳位转换器(3L-NPC)系统的DFIM,用于大型额定抽运应用(100 MW以上)。但是,并联连接的3L-NPC由于中性相电流而导致直流母线电压不平衡,从而降低了逆变器的整体性能。为了克服这个问题,本文提出了一种基于虚拟开关矢量选择方案的新颖开关策略,该方案可以平衡直流链路电压以实现宽范围的负载变化,而无需任何额外的电路。所提出的切换策略的有效性在MATLAB / Simulink环境下得以实现,并且通过2.2 kW DFIM系统进行了实验验证。

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