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首页> 外文期刊>Electric Power Applications, IET >Modelling of squirrel cage induction motors for a bio-inspired multi-objective optimal design
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Modelling of squirrel cage induction motors for a bio-inspired multi-objective optimal design

机译:基于生物启发的多目标优化设计的鼠笼式感应电动机的建模

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摘要

The design of efficient three-phase induction motors is a challenge for engineering; therefore, new design techniques are continually being proposed. For example, efficiency is in conflict with manufacturing cost, which leads to the use of multi-objective optimisation techniques to solve this engineering problem. Nevertheless, this study shows that the way of accurately modelling the behaviour of the motor is as important as the optimisation method itself. Thus, the study discusses fundamental considerations in the motor model as part of a proposed methodology for the design of highly efficient three-phase squirrel cage induction motors. For this purpose, the motor is modelled in two ways: an analytical equivalent circuit and the finite element method, which are validated with data obtained from laboratory tests. The main contribution of this study is to show for the first time the required characteristics of the analytical model used as part of a multi-objective optimisation problem to have a suitable accuracy with a competitive runtime. Moreover, the problem is solved using three bio-inspired optimisation algorithms: non-dominated sorting genetic algorithms II, non-dominated sorting particle swarm optimisation and bacterial chemotaxis multi-objective optimisation algorithm. The methodology is tested in the optimal redesign of a two-pole, 3.7 kW, IE2 efficiency motor, for which the efficiency and cost were improved.
机译:高效的三相感应电动机的设计是工程上的挑战。因此,不断提出新的设计技术。例如,效率与制造成本冲突,这导致使用多目标优化技术来解决该工程问题。尽管如此,这项研究表明,准确建模电动机行为的方法与优化方法本身一样重要。因此,本研究讨论了电动机模型中的基本考虑因素,作为设计高效三相鼠笼式感应电动机的拟议方法的一部分。为此,可通过两种方式对电动机建模:分析等效电路和有限元方法,并通过实验室测试数据进行验证。这项研究的主要贡献是,首次展示了作为多目标优化问题一部分使用的分析模型的所需特征,以使其具有具有竞争力的运行时的合适精度。此外,使用三种生物启发式优化算法解决了该问题:非主导排序遗传算法II,非主导排序粒子群优化和细菌趋化性多目标优化算法。该方法已在3.7 kW两极IE2效率两极电机的最佳重新设计中进行了测试,从而提高了效率和成本。

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