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Combination of SHE- and SHM-PWM Techniques for VSI DC-Link Current Harmonics Control in Railway Applications

机译:SHE和SHM-PWM技术的组合用于铁路应用中的VSI DC-Link电流谐波控制

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摘要

The paper presents an innovative concept of applying a combination of well-known selective harmonic elimination (SHE) and selective harmonics mitigation (SHM) methods to shape a spectrum of catenary current harmonics, generated by a traction drive system equipped with a voltage source inverter. Application of this method allows for reducing distorting influence of a modern rolling stock supplied by a 3 kV dc catenary on the railway signaling, command, and control systems. The efficiency of the proposed method is independent of synchronization of a vehicle's inverters and of load balance of traction motors, which makes it more reliable than as it is proposed in the literature. Results of computer simulations were presented and compared with laboratory measurements. The obtained dc-link current spectrum using the proposed SHE/SHM method was compared with spectra received using synchronized and unsynchronized sinusoidal pulse-width modulations (SPWMs). Based on the conducted tests, it was shown that the proposed method of control, which was implemented in a laboratory drive system, is effective in reducing dc side current harmonics in a frequency range of 1300-3100 Hz, which is used by track circuits on railway lines, e.g., in Poland. The technique proposed by the authors allows taking into account any restrictions arising from the technical nature of low-frequency traction drives.
机译:本文提出了一个创新的概念,即结合使用众所周知的选择性谐波消除(SHE)和选择性谐波抑制(SHM)方法来塑造由配有电压源逆变器的牵引驱动系统产生的悬链电流谐波频谱。该方法的应用可以减少由3 kV直流接触网提供的现代机车车辆对铁路信号,指挥和控制系统的扭曲影响。所提出的方法的效率与车辆的逆变器的同步以及牵引电动机的负载平衡无关,这使得该方法比文献中所提出的更为可靠。介绍了计算机模拟的结果,并将其与实验室测量结果进行了比较。将使用建议的SHE / SHM方法获得的直流链路电流频谱与使用同步和非同步正弦脉冲宽度调制(SPWM)接收的频谱进行比较。根据所进行的测试,结果表明,在实验室驱动系统中实施的拟议控制方法可有效减少1300-3100 Hz频率范围内的直流侧电流谐波,该方法已被跟踪电路使用。铁路线,例如在波兰。作者提出的技术允许考虑由于低频牵引驱动器的技术性质引起的任何限制。

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