Suzhou Electric Appliance Research Institute
期刊號: CN32-1800/TM| ISSN1007-3175

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智能化構(gòu)架下的電機操動機構(gòu)驅(qū)動電機設(shè)計

來源:電工電氣發(fā)布時間:2021-02-23 09:23 瀏覽次數(shù):871

智能化構(gòu)架下的電機操動機構(gòu)驅(qū)動電機設(shè)計

劉洋1,鐘建英1,2,徐建源1,韓東鵬1,張世維1,朱繼斌1,2
(1 沈陽工業(yè)大學 電氣工程學院,遼寧 沈陽 110870;2 平高集團有限公司,河南 平頂山 467001)
 
    摘 要:以高壓開關(guān)智能化構(gòu)架為背景,基于126 kV真空斷路器反力特性和操作速度要求確定驅(qū)動電機的設(shè)計目標,針對斷路器驅(qū)動電機特殊的工況對智能化電器驅(qū)動電機的結(jié)構(gòu)設(shè)計和電磁設(shè)計方案進行論述。建立驅(qū)動電機的有限元仿真模型并搭建126 kV真空斷路器電機操動機構(gòu)驅(qū)動電機的試驗平臺,結(jié)果表明電機可以滿足設(shè)計要求和斷路器分合閘的性能要求,電機輸出與負載特性匹配度高,具有體積小、電感小、響應(yīng)速度快的優(yōu)點,易于實現(xiàn)智能控制。
關(guān)鍵詞:真空斷路器;電機操動機構(gòu);永磁無刷直流電機;有限元仿真
    中圖分類號:TM351;TM561.2     文獻標識碼:A     文章編號:1007-3175(2021)02-0008-04
 
Design of Driving Motor of Motor Operating Mechanism Under
Intelligent Framework
 
LIU Yang1, ZHONG Jian-ying1,2, XU Jian-yuan1, HAN Dong-peng1, ZHANG Shi-wei1, ZHU Ji-bin1,2
(1 College of Electrical Engineering, Shenyang University of Technology, Shenyang 110870, China;
2 Pinggao Group Co., Ltd, Pingdingshan 467001, China)
 
    Abstract: Using the intelligent architecture of high-voltage switch as the background, the design goal of the drive motor is determined based on the reaction force characteristics of the 126 kV vacuum circuit breaker and the operating speed requirements, and according to the special working conditions of the circuit breaker drive motor, the structure design and electromagnetic design scheme of the intelligent electrical appliance drive motor are discussed. It establishes a finite element simulation model of the drive motor and build an experimental platform for the drive motor of the 126 kV vacuum circuit breaker motor operating mechanism, the results show that the motor can meet the design requirements and the performance requirements of circuit breaker opening and closing. The motor output has a high matching degree with the load characteristics, has the advantages of small size, small inductance, and fast response speed, and is easy to intelligent control.
    Key words: vacuum circuit breaker; motor operating mechanism; permanent magnet brushless DC motor; finite element simulation
 
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