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作 者:樊登柱[1] 崔敏超 周开俊[1] FAN Deng-zhu CUI Min-chao ZHOU Kai-jun(Nantong Vocational University, Jiangsu 226007, China Xi'an Jiaotong University, Xi'an 710049, China)
机构地区:[1]南通职业大学,南通226007 [2]西安交通大学,西安710049
出 处:《微特电机》2017年第10期57-61,共5页Small & Special Electrical Machines
基 金:2016年度江苏省高校"青蓝工程"资助项目;南通市科技计划项目(GY12015016);南通市重点实验室项目(CP12016001)
摘 要:介绍了新型磁通开关型起动发电一体机(FSISG)的结构及运行原理;通过数学建模,给出了FSISG在abc和dq0坐标下的数学模型,对该型起动发电机的矢量控制具有参考价值;设计了FSISG控制系统电路,并利用Simulink和Ansoft Maxwell对控制电路在电源和电动模式下分别进行了仿真,结果表明FSISG控制系统电路能够实现电源和电动工作模式,在电源模式下输出电压准确、稳定,在电动模式下输出转矩平稳。设计并制作了实验电路板,搭建了FSISG综合试验台。试验结果表明,电源模式下,控制系统在较宽的转速范围内输出电压稳定、准确;电动模式下,控制电路能够驱动FSISG平稳拖动伺服电机倒拖运转。The structure and principle of flux switching integration starter/generator (FSISG) are introduced firstly.Then, the mathmatical models of FSISG in abc and dq0 coordinates were derived through mathematical modeling. Based onthe models, the control circuit was designed for FSISG. The simulations were carried out in the Simulink and Ansoft Max-well software. The results show that the control circuit was available for FSISG. The output voltage was precise and stable.In the electric mode, the output torquer was smooth. An experimental circuit board of FSISG was customized and the exper-imental research was carried out on the FSISG experimental platform. The results show that the output voltage is stable andaccurate in different rotation speed in power mode and the FSISG can drag the Servo motor smoothly in electric mode.
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