Improvement of ATO efficiency by varying slip frequency for a magnetic lévitation propulsion system using a linear induction motor

Seok Young Lee, Sang Uk Park, Doh-Young Park, Chan-Yong Zun, Jaehuyk Choi, Jaewon Lim, H. Mok
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引用次数: 1

Abstract

In this paper, the possibility of energy efficiency improvement of the maglev train with variable slip operation other than constant one for the linear induction motor drive is discussed. Such novel operation pattern is considered to be plausible by applying proper operating süp to the linear induction motor when a certain acceleration/deceleration operation pattern is determined. Investigation of the relationship between normal force and tracking force has been conducted. The relationship between Süp frequency and normal force and tracking force has been studied by comparing constant süp current control and variable slip current vector control. It has provided the most efficient süp curve along with varying operation pattern after testing a band of possible süp/pattern combination. An algorithm is used to implement the variable süp control scheme. During simulation and field test, the algorithm of automatic train operation which applies the best slip curve to different operation pattern has been proved to be efficient and feasible. However, the best efficiency süp curve has to consider the influence of the change of the lévitation force since the lévitation force tend to increase along with the decreasing slip frequency. Then the ATO system select the süp curve that provide best efficicncy under constraints due to safety to conduct the field test.
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采用线性感应电动机的磁浮推进系统,通过改变转差频率来提高ATO效率
本文讨论了采用直线感应电机驱动的变滑运行磁浮列车比恒滑运行磁浮列车能效提高的可能性。在确定了一定的加减速运行模式后,对直线感应电动机施加适当的运行ssep,认为这种新颖的运行模式是可行的。研究了法向力与跟踪力之间的关系。通过恒转差电流控制和变转差电流矢量控制的比较,研究了脉冲频率与法向力和跟踪力的关系。在测试了一组可能的s p/模式组合后,提供了最有效的s p曲线以及不同的操作模式。采用了一种算法来实现变s p控制方案。通过仿真和现场试验,验证了列车自动运行算法的有效性和可行性,该算法对不同的运行模式采用最佳滑移曲线。然而,最佳效率s p曲线必须考虑到随着滑移频率的降低,lsamvitation力有增大的趋势,因此lsamvitation力变化的影响。然后,ATO系统选择在安全约束下提供最佳效率的s p曲线进行现场测试。
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