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Analytical Calculation of the Difference in Parallel Output Current Between the 12-pulse Rectifier Bridges Based on Transformer Leakage Inductance and DC inter-phase Reactor

机译:基于变压器漏电电感和直流相互相互作用的12脉冲整流桥之间并联输出电流差的分析计算

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Electric propulsion is a future trend in terms of ship propulsion. The high-power multi-pulse rectifier will be widely applied to the electric propulsion system due to its simple structure, high efficiency, high reliability and low cost. Considering the non-ideal characteristics of the 12-pulse rectifier transformer system(RTS) used for 2MW-level propulsion and such factors as transformer leakage inductance, DC inter-phase reactor and rectifier commutation overlap, this paper has presented an equivalent circuit of the two paralleled rectifiers with an inter-phase reactor, formulated the equations of their DC steady-state voltage and AC small signal voltage and derived an analytical expression for the output current difference between the two rectifiers, according to each of four sections. On this basis, the output current difference is calculated and simulated according to different output voltage, AC side leakage inductance and inter-phase reactor value of the transformer. The results show that the derived analytical expression for the output current difference is correct and feasible which will provide the theoretical basis for the optimal design of a 2MW-level 12-pulse RTS involving the transformer leakage inductance and DC inter-phase reactor.
机译:电动推进是船舶推进方面的未来趋势。由于其结构简单,高效率,高可靠性和低成本,大功率多脉冲整流器将广泛应用于电动推进系统。考虑到12脉冲整流器系统(RTS)的非理想特性,用于2MW级推进器和变压器漏电电感,DC相互电抗器和整流换向重叠的因素,本文提出了一种等效电路具有相互相互作用的两个平行的整流器,配制其直流稳态电压和AC小信号电压的方程,并根据四个部分中的每一个导出两个整流器之间的输出电流差的分析表达式。在此基础上,根据不同的输出电压,交流侧漏电电感和变压器的相互作用反应器值计算和模拟输出电流差。结果表明,输出电流差的推导分析表达是正确的,可行的,这将为涉及变压器漏电电感和直流相互相互作用的电流反应器的2MW级12脉冲RTS的最佳设计提供理论依据。

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