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Optimal Voltage Regulation and Power Sharing in Traction Power Systems With Reversible Converters

机译:可逆转换器牵引电力系统中的最佳电压调节和功率共享

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This paper proposes an efficient dc voltage control scheme in rail transit traction power systems with reversible converters for dc voltage regulation and power sharing. The proposed dc voltage control scheme is executed in a hierarchical structure based on the optimal power flow. Unlike conversional constant dc voltage control applied in traction power systems, this scheme allows the reversible converters operating in both rectifier and inverter regions and considers regenerative braking power sharing among multiple traction substations. The steady-state equivalent models of traction power systems including reversible converters are established, and the ac/dc sequential power flow algorithm based on Newton-Raphson method is presented. Finally, a multi-trains dynamic operation simulation is carried out with Matlab. The simulation results prove the validity of proposed scheme and indicate that the system energy saving effect in traction power systems with reversible converters is obvious with proposed scheme.
机译:本文提出了具有可逆转换器的轨道交通牵引力系统中有效的直流电压控制方案,用于直流电压调节和电力共用。所提出的直流电压控制方案基于最佳功率流程在分层结构中执行。与在牵引力系统中应用的交易恒定直流电压控制不同,该方案允许在整流器和逆变器区域中操作的可逆转换器,并在多个牵引变电站之间考虑再生制动电力共享。建立了包括可逆转换器的稳态等效模型,并介绍了基于牛顿-Raphson方法的AC / DC顺序功率流算法。最后,使用MATLAB进行多训机动态操作模拟。仿真结果证明了所提出的方案的有效性,并表明具有可逆转换器的牵引力系统中的系统节能效果与提出的方案显而易见。

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