基于半桥逆变器的电气化铁路有功质量补偿器

T. Tanaka, K. Ishibashi, N. Ishikura, E. Hiraki
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引用次数: 8

摘要

提出了一种基于半桥逆变器的电气化铁路有功质量补偿器(APQC)。第一肢连接α-相,第二肢连接β-相。直流侧的两个电容的中点连接到地线上。这两个半桥逆变器通过两个直流电容器相互交换馈线上的有功功率,并补偿负载电流的负序分量和谐波分量。第三支腿为连接到半桥式逆变器的两个直流电容器执行直流电压平衡器。因此,平衡和正弦源电压和电流因子是在斯科特变压器的一次侧与平衡直流电容电压。详细讨论了基于APQC的半桥逆变器的基本原理,并利用PSIM软件进行了数字计算机仿真验证。仿真结果表明,牵引变电所系统中司各特变压器一次侧平衡两个直流电容电压时获得了功率因数为一的平衡源电流。
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A half-bridge inverter based active power quality compensator for electrified railways
This paper proposes a new half-bridge inverter based active power quality compensator (APQC) for electrified railways with a three-leg inverter. The first-leg is connected to α-phase, and the second-leg is connected to β-phase. The midpoint of two capacitors on the dc side is connected to the ground line. These two half-bridge inverters exchange the active power on the each feeder each other through two dc capacitors, and compensate the negative-sequence and harmonic components of the load currents. The third-leg performs a dc voltage balancer for two dc capacitors connected to the half-bridge inverters. Thus the balanced and sinusoidal source voltages and currents factor are attained on the primary side of the Scott transformer with the balanced dc capacitor voltages. The basic principle of the proposed half-bridge inverter based APQC is discussed in detail, and then confirmed by digital computer simulation using PSIM software. Simulation results demonstrate that the balanced source currents with the unity power factor are obtained on the primary side the Scott transformer in the traction substation systems balancing two dc capacitor voltages.
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