脉冲宽度调制
带宽(计算)
控制理论(社会学)
占空比
电流回路
计算机科学
定子
伺服带宽
机器控制
同步电动机
数字控制
永磁同步电动机
伺服机构
磁铁
伺服电动机
伺服驱动
电子工程
工程类
电压
电气工程
控制工程
电信
控制(管理)
人工智能
作者
Hongjia Wang,Ming Yang,Li Niu,Dianguo Xu
标识
DOI:10.1109/iciea.2010.5514913
摘要
The dynamic response of the permanent magnet AC servo system is restricted by the bandwidth of current loop, which is the innermost loop. In digital control AC servo system, there are two major limiting factors for current-loop bandwidth, switching frequency and digital delay which means sum of A/D sampling time, algorithm execution time and PWM duty cycle update delay. The bandwidth expansion of current-loop without changing the switching frequency of power devices is necessary, as the increasing of switching frequency will raise the losses. Based on the synchronous rotating frame current decoupled control, the delay effects of current sampling and PWM duty cycle update in the permanent magnet synchronous motor drive systems were analyzed. The bandwidth expansion strategy was proposed, to achieve the stator current double sampling and PWM duty cycle double update in a carrier period. The current-loop bandwidth can be extended more than one times theoretically while the switching frequency remaining unchanged, so that the dynamic performance of permanent magnet synchronous motor drive systems was improved. Simulation and experimental results verified the theoretical analysis and effectiveness of the method.
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