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IN SITU EFFICIENCY DETERMINATION OF INDUCTION MOTOR: A COMPARATIVE STUDY OF EVOLUTIONARY TECHNIQUES

机译:感应电动机的现场效率确定:进化技术的比较研究

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摘要

Induction motor is the most frequently used electric machine in industrial and commercial applications because of its well-known advantages, including robustness, low price, maintenance free, and line start. The exact knowledge of some of the induction motor parameters is very important to implement efficient control schemes and its in situ efficiency determination. These parameters can be obtained by no-load test that is not easily possible fin- the motors working in process industries where continuous operation is required. In this present study, particle swarm optimization, differential evolution, and some of their recent variants are used for in situ efficiency determination of induction motor (5 hp) without performing no-load test. Detailed information about the methods for efficiency measurement is given. Results are compared with genetic algorithm and a physical efficiency measurement method, called torque-gauge method. The performances in terms of objective function (error in the efficiency) and convergence time prove the effectiveness of optimization algorithms used in this article.
机译:感应电动机由于其众所周知的优点(包括坚固,价格低,免维护和线路启动)而成为工业和商业应用中最常用的电机。对某些感应电动机参数的确切了解对于实施有效的控制方案及其现场效率确定非常重要。这些参数可以通过空载测试获得,这对于需要连续运行的过程工业中的电动机而言是不容易实现的。在本研究中,粒子群优化,差分进化及其一些最新变体被用于感应电动机(5 hp)的现场效率测定,而无需执行空载测试。给出了有关效率测量方法的详细信息。将结果与遗传算法和物理效率测量方法(称为扭矩计方法)进行比较。目标函数(效率误差)和收敛时间方面的性能证明了本文使用的优化算法的有效性。

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