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Fuzzy logic based soft starting of induction motor with current control

机译:基于模糊逻辑的异步电动机电流控制软启动

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摘要

Induction Motors are the most commonly used machines in industries mainly because it is robust, inexpensive and easy to maintain. For an Induction Motor, the starting current is around ten times the rated current and this persists for a few cycles. This may be very much detrimental for the machine and hence there is a need for using starters to limit the starting current. During earlier times, mechanical starters like star delta, direct online and autotransformer starters were used. Thyristorized soft starters are of low cost. Their reliability is on the higher side and they are simple and occupy lesser space, and hence their use is a fruitful solution to the induction motor starting problem. The ac motor starters incorporating power semiconductors are used frequently nowadays for their controlled soft starting ability with reduced starting current. In this study, a closed loop Matlab Simulink model is developed which would reduce the current at the soft starting period. A fuzzy logic based soft start scheme for induction motor drives is used which would give optimal performance. Fuzzy logic has received higher emphasis in the field of power electronics because of its adaptive capability. The three phase stator currents are converted into two phase currents. The magnitude of current is then converted to per unit. Then it is compared with a reference value. The error is passed through a Fuzzy Logic Controller (FLC).The FLC output is used to control the amplitude of the reference sine wave. Hence by controlling the modulation index, the applied voltage to the stator is controlled and hence the starting current is limite
机译:感应电动机是工业上最常用的机器,主要是因为它坚固,便宜且易于维护。对于感应电动机,启动电流约为额定电流的十倍,并且会持续几个周期。这对于电机可能是非常有害的,因此需要使用启动器来限制启动电流。在早期,人们使用了机械起动器,例如星三角电机,直接在线起动器和自动变压器起动器。晶闸管软启动器成本低廉。它们的可靠性较高,结构简单,占用空间较小,因此,它们的使用是解决感应电动机启动问题的有效方法。如今,结合功率半导体的交流电动机启动器因其受控的软启动能力和降低的启动电流而经常使用。在这项研究中,开发了一个闭环Matlab Simulink模型,该模型将在软启动期间减小电流。使用了基于模糊逻辑的感应电动机驱动器软启动方案,该方案将提供最佳性能。由于模糊逻辑具有自适应能力,因此在电力电子领域受到了越来越多的重视。三相定子电流被转换为两相电流。然后将电流的大小转换为单位。然后将其与参考值进行比较。误差通过模糊逻辑控制器(FLC)传递.FLC输出用于控制参考正弦波的幅度。因此,通过控制调制指数,可以控制向定子施加的电压,从而限制了启动电流

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    Gupta Suvra;

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  • 年度 2014
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