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APPLICATION OF PARALLEL THREE-LEVEL INVERTERS TO THE SPEED CONTROL OF INDUCTION MOTORS IN TRACTION DRIVES

机译:并联三级逆变器在牵引驱动器中的感应电动机速度控制中的应用

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This paper is concerned with the application of parallel operated neutral-point clamped three-level inverters to the speed control of induction motors in rapid transit system. Adopting three-level inverters can reduce total harmonic distortion and noise. It will also decrease the switching frequency of power transistors and increase efficiency. In this paper, two sets of inverters each in series with inductors are operated in parallel to drive two induction motors to propel electrical multiple unit. Voltage compensation is introduced to reduce difference current between inverters. Besides, parallel operation by inverters enhances availability, i.e., if one inverter has fault, the other inverter can provide partial power to induction motors. This paper presents analysis and design of the aforementioned system. Computer simulation shows that adopting the strategy of quadrature- and direct-axis currents as voltage compensation can not only reduce the difference current between inverters but also provide equilibrium current to induction motors. It will not be influenced by the switching frequency of inverters, switching sequence and series inductance. It is simple and can be extended to parallel operation of multi-sets of inverters.
机译:本文涉及并联操作中性点钳位三级逆变器的应用,以快速传输系统中的感应电动机的速度控制。采用三级逆变器可以减少总谐波失真和噪音。它还将降低功率晶体管的开关频率并提高效率。在本文中,两组与电感器串联的逆变器并联操作,以驱动两个感应电动机以推动电气多单元。引入电压补偿以减少逆变器之间的差电流。此外,逆变器的并联操作增强了可用性,即,如果一个逆变器具有故障,则另一个逆变器可以为感应电机提供部分电力。本文介绍了上述系统的分析与设计。计算机仿真表明,采用正交和直轴电流的策略,因为电压补偿不仅可以降低逆变器之间的差电流,而且还提供对感应电动机的平衡电流。它不会受到逆变器的开关频率的影响,切换序列和串联电感。它很简单,可以扩展到多组逆变器的并行操作。

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