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Equivalent Circuits for Single-Sided Linear Induction Motors

机译:单面直线感应电动机的等效电路

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Single-sided linear induction motors (SLIMs) have lately been applied in transportation system traction drives, particularly in the intermediate speed range. This is because they have merits, such as the ability to exert thrust on the secondary without mechanical contact, high acceleration or deceleration, less wheel wear, small turning circle radius, and flexible road line. The theory of operation for these machines can be directly derived from rotary induction motors (RIMs). However, while the cut-open primary magnetic circuit has many inherent characteristics of the RIM equivalent circuits, several issues involving the transversal edge and longitudinal end effects and the half-filled slots at the primary ends need to be investigated. In this paper, a T-model equivalent circuit is proposed which is based on the 1-D magnetic equations of the air gap, where half-filled slots are considered by an equivalent pole number. Among the main five parameters, namely, the primary resistance, primary leakage inductance, mutual inductance, secondary resistance, and secondary inductance, the mutual inductance and the secondary resistance are influenced by the edge and end effects greatly, which can be revised by four relative coefficients, i.e., $K_{rm r}$, $K_{rm x}$, $C_{rm r}$, and $C_{rm x}$. Moreover, two-axis equivalent circuits ( $dq$ or $alphabeta$ ) according to the T-model equivalent circuit are obtained using the power conversion rule, which are analogous with those of the RIM in a two-axis coordinate system. The linear induction motor dynamic performance, particularly the-n-n mutual inductance and the secondary resistance, can be analyzed by the four coefficients. Experimental verification indicates that both the T-model and the new two-axis circuits are reasonable for describing the steady and dynamic performance of the SLIM. These two models can provide good guidance for the electromagnetic design and control scheme implementation for SLIM applications.
机译:单面线性感应电动机(SLIM)最近已应用于运输系统牵引驱动器中,特别是在中速范围内。这是因为它们具有优点,例如能够在没有机械接触的情况下在次级上施加推力的能力,高加速或减速,较小的车轮磨损,较小的转弯半径以及灵活的道路线。这些机器的工作原理可以直接从旋转感应电动机(RIM)中获得。但是,尽管开路初级磁路具有RIM等效电路的许多固有特性,但仍需要研究涉及横向边缘和纵向端部效应以及初级端半填充槽的几个问题。在本文中,基于气隙的一维磁方程,提出了一种T型等效电路,其中半填充槽由等效极数考虑。在初级电阻,初级漏感,互感,次级电阻和次级电感这五个主要参数中,互感和次级电阻受边缘和末端效应的影响很大,可以通过四个相对值进行修正系数,即$ K_ {rm r} $,$ K_ {rm x} $,$ C_ {rm r} $和$ C_ {rm x} $。此外,使用功率转换规则获得根据T模型等效电路的两轴等效电路($ dq $或$ alphabeta $),该规则类似于RIM在两轴坐标系中的转换。线性感应电动机的动态性能,特别是n-n-n互感和次级电阻,可以通过这四个系数进行分析。实验验证表明,T模型和新的两轴电路对于描述SLIM的稳定和动态性能都是合理的。这两个模型可以为SLIM应用的电磁设计和控制方案实施提供良好的指导。

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