-
公开(公告)号:US20210240874A1
公开(公告)日:2021-08-05
申请号:US17235866
申请日:2021-04-20
发明人: Xiaoping ZHANG , Yuxuan GUO , Zhu ZHANG , Guanghui ZHU , Haipeng JIANG , Hongwei CHEN
IPC分类号: G06F30/10
摘要: Provided is a method for optimizing structured mesh generation for a thermal analysis model of a rotor bar of an AC motor. A quadrilateral is randomly added within the top surface of the thermal analysis model of the rotor bar. The polygonal top surface is divided into multiple quadrilateral areas by drawing lines from each vertex of the quadrilateral to each vertex of the top surface or two points selected randomly on each edge of the top surface, respectively. A fruit fly optimization algorithm is adopted to obtain a maximum value of the average quality of the quadrilateral areas in a division mode and corresponding coordinates of the vertices of the quadrilateral areas. The top surface is divided into multiple quadrilateral areas according to the division mode corresponding to the maximum average quality to divide the model of the rotor bar into multiple columnar models.
-
公开(公告)号:US20220255409A1
公开(公告)日:2022-08-11
申请号:US17168789
申请日:2021-02-05
发明人: Xiaoping ZHANG , Yuxuan GUO , Zhu ZHANG , Guanghui ZHU , Haipeng JIANG , Hongwei CHEN
摘要: Provided is a noise reduction method by cutting a corner of a tooth shoulder of a stator of an AC traction motor based on an inscribed arc. Taking a vertex of a corner of the tooth shoulder of the stator as an end point, two points are selected along two sides of the corner of the tooth shoulder of the stator to allow distances from the two points to the end point to be equal. The two points are determined as tangent points D1 and D2 of the inscribed arc. The tangent points D1 and D2 define the inscribed arc along which the corner of the tooth shoulder is cut off.
-
公开(公告)号:US20210159835A1
公开(公告)日:2021-05-27
申请号:US17163980
申请日:2021-02-01
发明人: Xiaoping ZHANG , Sijian KUANG , Ping LIU , Zhu ZHANG , Haipeng JIANG , Shaowu ZHOU
IPC分类号: H02P25/089
摘要: A sensorless control method and an apparatus for a three-phase switched reluctance motor. The sensorless control method obtains line inductances of three phases according to real-time phase inductances of the three-phase switched reluctance motor and then determines feature points of the line inductances of the three phases. A position angle of the rotor at any time in the next corresponding region is calculated according to an average rotation speed of the rotor in the region corresponding to two adjacent feature points. A control signal is output to realize a precise sensorless control for the three-phase switched reluctance motor. The control apparatus includes a microcontroller, a power conversion circuit, a drive module for the power conversion circuit, a current detection module, a voltage detection module, an input and output module and a direct current regulated power supply.
-
-