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单相PWM整流器抗扰动控制策略研究 被引量:5
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作者 余发山 刘根锋 +1 位作者 张宏伟 耿冲 《计算机仿真》 CSCD 北大核心 2015年第6期125-129,共5页
针对单相电压型PWM整流器易受到负载扰动和电网电压波动的影响问题,为了提高系统稳定性,提出了一种基于旋转坐标变换的前馈解耦和负载电流前馈补偿的控制策略。通过构建正交虚拟电流完成网侧电流的单相旋转坐标变换和采用前馈解耦控制,... 针对单相电压型PWM整流器易受到负载扰动和电网电压波动的影响问题,为了提高系统稳定性,提出了一种基于旋转坐标变换的前馈解耦和负载电流前馈补偿的控制策略。通过构建正交虚拟电流完成网侧电流的单相旋转坐标变换和采用前馈解耦控制,实现网侧电流的矢量控制和稳定直流母线电压;并根据输入输出功率平衡的关系引入负载电流和网侧电压前馈补偿相结合的方法,降低扰动对单相PWM系统的影响。仿真结果表明,利用改进的控制策略能够提高系统的抗扰动性能,验证了本文所提出的控制策略的正确性和有效性。 展开更多
关键词 单相PWM整流器 抗扰动 单相坐标旋转 前馈解耦控制
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Novel AC Servo Rotating and Linear Composite Driving Device for Plastic Forming Equipment
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作者 Jin-Tao Liang Sheng-Dun Zhao +1 位作者 Yong-Yi Li Mu-Zhi Zhu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第4期843-853,共11页
The existing plastic forming equipment are mostly driven by traditional AC motors with long trans- mission chains, low efficiency, large size, low precision and poor dynamic response are the common disadvantages. In o... The existing plastic forming equipment are mostly driven by traditional AC motors with long trans- mission chains, low efficiency, large size, low precision and poor dynamic response are the common disadvantages. In order to realize high performance forming processes, the driving device should be improved, especially for com- plicated processing motions. Based on electric servo direct drive technology, a novel AC servo rotating and linear composite driving device is proposed, which features implementing both spindle rotation and feed motion with- out transmission, so that compact structure and precise control can be achieved. Flux switching topology is employed in the rotating drive component for strong robustness, and fractional slot is employed in the linear direct drive component for large force capability. Then the mechanical structure for compositing rotation and linear motion is designed. A device prototype is manufactured, machining of each component and the whole assembly are presented respectively. Commercial servo amplifiers are utilized to construct the control system of the proposed device. To validate the effectiveness of the proposed composite driving device, experimental study on thedynamic test benches are conducted. The results indicate that the output torque can attain to 420 N-m and the dynamic tracking errors are less than about 0.3 rad in the rotating drive, the dynamic tracking errors are less than about 1.6 mm in the linear feed. The proposed research provides a method to construct high efficiency and accu- racy direct driving device in plastic forming equipment. 展开更多
关键词 Plastic forming Direct drive - Permanentmagnet motor Linear feeding Servo control
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