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Selection of Reference Flux Linkage for Direct Torque Control Based Induction Motor Drive in Electric Vehicle Applications

机译:基于电动车辆应用中的直接扭矩控制的参考磁通连杆选择

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The surge in economic activities, in the developing nations, has resulted in rapid expansion of urban centres. This expansion of cities has caused a rapid increase in vehicular traffic, which in turn has caused deterioration of air quality. To overcome the problem of unprecedented air pollution, the governments worldwide have framed policies for faster adoption of electric vehicles. One of the major challenges faced is the development of low-cost drive for these vehicles and keeping the imports to a minimum. As a result of this, the trend is to move away from the permanent magnet-based motor technology and to use induction motor-based drivetrain. For the induction motors to be successful in electric vehicle drivetrain application, it is important to have a robust speed control algorithm. This work aims at adapting a direct torque control technique for induction motor's speed control. The work addresses the impact of reference flux linkage on the operation of an induction motor for direct torque control over a wide range of operation. A Finite Element Analysis based induction motor model is used to obtain values of reference flux linkage. The method uses offline calculations to determine the reference flux linkage, and a lookup table is generated using these flux linkage values. This lookup table is eventually implemented with the direct torque control algorithm. The proposed methodology for selecting reference flux linkage is compared with variable flux technique for various vehicle driving cycles. The comparison shows that the proposed approach gives satisfactory performance (in terms of speed response, torque and flux linkage) over a wide operating speed range. Furthermore, energy consumption analysis for considered driving cycles is also discussed.
机译:发展中国家的经济活动飙升导致城市中心的快速扩张。这种城市的扩张导致车辆交通迅速增加,这反过来又导致了空气质量恶化。为了克服前所未有的空气污染问题,全球各国政府已经为更快采用电动汽车提供了框架的政策。面临的主要挑战之一是这些车辆的低成本驱动,并将进口量保持在最低限度。结果,趋势是远离永久性磁铁的电机技术,并使用进一步电动机的动力传动系统。对于诱导电动机在电动车辆传动传动系统中的应用中,具有鲁棒速度控制算法非常重要。这项工作旨在调整用于感应电机的速度控制的直接扭矩控制技术。该工作解决了参考通量连杆对电动机的操作的影响,以在广泛的操作范围内进行直接扭矩控制。基于有限元分析的感应电动机模型用于获得参考磁通连杆的值。该方法使用离线计算来确定参考通量链接,并使用这些磁通连接值生成查找表。此查找表最终通过直接扭矩控制算法实现。将所提出的用于选择参考磁通连杆的方法与各种车辆驱动循环的可变通量技术进行比较。比较表明,所提出的方法在宽的操作速度范围内提供令人满意的性能(在速度响应,扭矩和磁通连杆方面)。此外,还讨论了考虑驱动周期的能量消耗分析。

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