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Modeling and Analysis of Contactless Traction Power Supply System for Urban Rail Transit

机译:城市轨道交通非接触式牵引供电系统建模与分析

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By avoiding direct contact between the power supply and train, the contactless power supply technology can overcome the drawbacks effectively of disconnection, contact apart, line wear, lighting interference power, electric shock and other accidents of contact type power supply mode, which helps to solve the problems of power supply equipment redundancy and security, greatly improving the reliability of the power supply system. The contactless traction power supply system topological structure based on external power supply system of DC 1500V is put forward, the power supply model for rectifier sets, the energy converting device and primary transmitting coil and secondary pickup coil of the external DC power supply system are established. Four contactless power supply systems are simulated, the system stability is analyzed according to the variation of voltage gain and harmonic compensation network when the coupling coefficient changes, the transmission performance is analyzed according to input and output power and transmission efficiencym, different resonant compensation systems are selected and optimized. The SS-type system has the highest stability of frequency control, optimization of system frequency and load parameters can effectively improve the output power and transfer efficiency of the SS-type systems. Reaserch results shows that the SS-type syetm can achieve efficient wireless power transmission with high stability, which is the optimal choice of contactless power supply system for urban rail tramsit.
机译:通过避免电源与列车直接接触,非接触式电源技术可以有效克服断开,接触分离,线路磨损,雷电干扰,触电等接触式供电方式的弊端,有助于解决电源设备冗余和安全性问题,大大提高了电源系统的可靠性。提出了基于直流1500V外部电源系统的非接触牵引供电系统拓扑结构,建立了外部直流电源系统的整流器组,能量转换装置以及一次发射线圈和二次拾取线圈的电源模型。 。模拟了四个非接触式电源系统,当耦合系数变化时,根据电压增益和谐波补偿网络的变化来分析系统稳定性,并根据输入输出功率和传输效率来分析传输性能,采用了不同的谐振补偿系统。选择和优化。 SS型系统具有最高的频率控制稳定性,优化系统频率和负载参数可以有效地提高SS型系统的输出功率和传输效率。 Reaserch结果表明,SS型系统可以实现高效,高稳定性的无线电力传输,这是城市轨道交通非接触式供电系统的最佳选择。

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