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异步电机低速电制动控制
引用本文:刘梦琪,曲诗健,李鹤群. 异步电机低速电制动控制[J]. 电机与控制应用, 2022, 49(1): 34-38
作者姓名:刘梦琪  曲诗健  李鹤群
作者单位:1.中车大连机车车辆有限公司,辽宁 大连 116000;2.中车大连电力牵引研发中心有限公司,辽宁 大连 116000
摘    要:阐述了异步电机电制动的控制策略;分析实际应用中低速电制动转矩出现偏差的原因,并通过MATLAB绘制出当定向角度出现偏差时给定转矩与实际转矩在三维空间中的比例关系。为解决低速电制动时由于转子磁场定向偏差引起电机转矩不准的问题,采用基于无功功率模型的转子时间常数自适应控制进行校正。试验结果表明该控制策略可以实现校正转子磁场定向偏差的功能,具有良好的动态性能,可以满足地铁列车的性能要求。

关 键 词:低速电制动; 异步电机; 转子磁场定向控制; 转子时间常数自适应算法; 地铁
收稿时间:2021-11-04
修稿时间:2021-12-01

Induction Motor Low-Speed Electric Brake Control
LIU Mengqi,QU Shijian,LI Hequn. Induction Motor Low-Speed Electric Brake Control[J]. Electric Machines & Control Application, 2022, 49(1): 34-38
Authors:LIU Mengqi  QU Shijian  LI Hequn
Affiliation:1.CRRC Dalian Locomotive & Rolling Stock Co., Ltd., Dalian 116000, China;2.CRRC Dalian R&D Co., Ltd., Dalian 116000, China
Abstract:Low-speed electric brake control strategy of the induction motor is described. The cause of the torque deviation in low-speed electric brake in practical applications is analyzed. A three-dimensional surface plot of the ratio of the given torque to the actual torque is created by MATLAB when the rotor field orientation angle deviates. The torque of motor is inaccurate because the rotor field orientation deviates during low-speed electric braking. In order to solve the problem, the reactive power model based rotor time constant adaptive algorithm is adopted. The experiment demonstrates that the algorithm can correct the rotor field orientation deviation and has good dynamic performance. The performance meets the requirement of the metro.
Keywords:low-speed electric brake   induction motor   rotor field oriented control   rotor time constant adaptive algorithm   metro
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