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首页> 外文期刊>International review of automatic control >Braking of Three Phase Induction Motors by Controlling Applied Voltage and Frequency Based on Particle Swarm Optimization Technique
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Braking of Three Phase Induction Motors by Controlling Applied Voltage and Frequency Based on Particle Swarm Optimization Technique

机译:基于粒子群优化技术的外加电压和频率控制的三相异步电动机制动

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摘要

Braking of three phase induction motors is required in many industrial applications. This paper introduces braking of three phase induction motors using particle swarm optimization (PSO) technique. The objective is to determine the optimum values of the applied voltage and frequency during braking to stop the motor in a certain time with minimum braking energy losses to limit any excessive thermal heating. The proposed technique is important and more useful in applications of repeated braking cycles. The results are compared with that obtained using plugging braking method and it's found that the proposed technique gives lower braking energy and shorter braking time. The braking energy losses with the proposed method are about 20% of the plugging braking energy losses with the same braking time. The proposed method determines the variation of optimal values of applied voltage and frequency to have a certain braking time of three phase induction motor at a certain load torque with minimum braking energy losses. The characteristics of the motor are simulated using SIMULINK/MATLAB.
机译:在许多工业应用中需要制动三相感应电动机。本文介绍了使用粒子群优化(PSO)技术的三相感应电动机制动。目的是确定制动过程中施加的电压和频率的最佳值,以在一定时间内停止电动机,同时将制动能量损失降至最低,以限制任何过多的热量。所提出的技术在重复制动循环的应用中很重要,也更有用。将结果与采用堵转制动方法获得的结果进行比较,发现所提出的技术具有较低的制动能量和较短的制动时间。在相同的制动时间下,所提出的方法的制动能量损失约为堵塞制动能量损失的20%。所提出的方法确定施加电压和频率的最佳值的变化,以在一定的负载转矩下具有最小的制动能量损失的情况下,使三相感应电动机具有一定的制动时间。使用SIMULINK / MATLAB模拟电动机的特性。

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