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An Improved Transformer Winding Tap Injection DSTATCOM Topology for Medium-Voltage Reactive Power Compensation

机译:用于中压无功补偿的改进型变压器绕组抽头注入DSTATCOM拓扑

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This paper describes an improved transformer winding tap injection distribution static synchronous compensator (WTI-DSTATCOM) for medium-voltage reactive power compensation. The cascaded multilevel converter based DSTATCOM is connected to the special-designed winding taps on the primary windings of the transformer instead of the conventional point of common coupling. The voltage stress for DSTATCOM to handle is reduced. The winding tap injection (WTI) method can make full use of the spare capacity of the transformer and obtain a flexible connection voltage for DSTATCOM. The compensation mechanism and winding current distribution after currents injection are analyzed by phasor diagrams under steady state. A nonlinear passivity-based control (PBC) algorithm is designed for inner-loop current control and a three-layer voltage balancing control strategy is applied to balance the dc capacitor voltage. The results obtained from the MATLAB/Simulink simulations and a down-scaled laboratory prototype experiment of 800 V verify the feasibility and effectiveness of the proposed WTI-DSTATCOM system with PBC algorithm in reactive power compensation.
机译:本文介绍了一种用于中压无功补偿的改进型变压器绕组抽头注入分配静态同步补偿器(WTI-DSTATCOM)。基于DSTATCOM的级联多电平转换器连接到变压器初级绕组上的特殊设计的抽头,而不是常规的公共耦合点。 DSTATCOM处理的电压应力降低了。绕组抽头注入(WTI)方法可以充分利用变压器的备用容量,并为DSTATCOM获得灵活的连接电压。在稳态下,通过相量图分析了注入电流后的补偿机制和绕组电流分布。针对内环电流控制设计了一种基于非线性无源控制(PBC)的算法,并采用了三层电压平衡控制策略来平衡直流电容器的电压。从MATLAB / Simulink仿真和800 V的缩小规模的实验室原型实验获得的结果证明了所提出的带有PBC算法的WTI-DSTATCOM系统在无功补偿中的可行性和有效性。

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