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基于响应面与分层优化的超超高效异步电机设计 被引量:5

Design of Super Premium Efficient Induction Motor Based on RSM and layed Optimization
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摘要 为了实现超超高效异步电机的设计目标,提出将定子双层叠式绕组设计为省铜和低损耗的单双层不等匝低谐波绕组,匹配铸铜转子,再以电机效率、起动转矩倍数和起动电流倍数为优化目标,采用田口算法确定电机优化设计变量,将子空间划分和响应面法相结合,基于差分进化算法实现异步电机分层优化的超超高效异步电机设计方案。针对提出的设计方案开展4极22 k W超超高效异步电机设计与分析计算,通过计算结果证实所提出的超超高效异步电机设计方案的有效性。 In order to achieve the design goal of super premium efficient induction motor,the design scheme was put forward.For proposed design scheme,the stator double stacked winding was first designed into single-double layer unequal-turn low harmonic winding,and the copper rotor was used,then,taking IM efficiency,start torque multiples and start current multiples as the optimization objectives,the Taguchi algorithm was used to determine the optimize design variables,and then,the reasonable subspace division was integrated with the response surface method to implement subspace optimization of IM based on differential evolution algorithm.Moreover,the design and analysis calculation of 22 kW 4-pole three-phase IM is implemented to validate the effectiveness of proposed design scheme of super premium efficient IM.
作者 李红梅 班东坡 刘立文 马洪坡 纪振兴 LI Hongmei;BAN Dongpo;LIU Liwen;MA Hongpuo;JI Zhenxin(School of Electrical Engineering and Automation,Hefei University of Technology,Hefei 230009,China)
出处 《微电机》 北大核心 2018年第3期1-5,共5页 Micromotors
关键词 超超高效异步电机 铸铜转子 田口算法 子空间划分 响应面法 多目标优化 super premium efficient IM copper motor taguchi algorithm subspace division response surface method multi-objective optimization
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