为解决PMSM驱动器的硬性约束问题,特别是驱动器必须保证强大的电机电流的限制及终极驱动力的动态性能,提出一种广义预测(GPC)极点配置前馈控制算法.该方法以前馈控制器的结果作为GPC的一个极点,选择适当的惩罚矩阵,只有在极点附近GPC控...为解决PMSM驱动器的硬性约束问题,特别是驱动器必须保证强大的电机电流的限制及终极驱动力的动态性能,提出一种广义预测(GPC)极点配置前馈控制算法.该方法以前馈控制器的结果作为GPC的一个极点,选择适当的惩罚矩阵,只有在极点附近GPC控制才能提高对前馈控制器的作用.使用10.7 k W的样机验证该理论.实验结果表明:与传统的PI矢量控制相比,基于GPC的前馈链路数字化控制器效果更优.展开更多
Fast response and stable torque output are crucial to the performance of electric screw presses. This paper describes the design of a direct torque control (DTC) system for speeding up torque response and reducing t...Fast response and stable torque output are crucial to the performance of electric screw presses. This paper describes the design of a direct torque control (DTC) system for speeding up torque response and reducing the starting current of electric screw presses and its application to the J58K series of numerical control electric screw presses with a dual-motor drive. The DTC drive system encompasses speed control, torque reference control, and switching frequency control. Comparison of the DTC dual-AC induction motor drive with corresponding AC servo motor drive showed that for the J58K-315 electric screw press, the DTC drive system attains a higher maximum speed (786 r/min) within a shorter time (1.13 s) during a 250 nun stroke and undergoes smaller rise in temperature (42.0 ℃) in the motor after running for 2 h at a 12 min-1 strike frequency than the AC servo motor drive does (751 r/min within 1.19 s, and 50.6 ℃ rise). Moreover, the DTC AC induction motor drive, with no need for a tachometer or position encoder to feed back the speed or position of the motor shaft, enjoys increased reliability in a strong-shock work environment.展开更多
文摘为解决PMSM驱动器的硬性约束问题,特别是驱动器必须保证强大的电机电流的限制及终极驱动力的动态性能,提出一种广义预测(GPC)极点配置前馈控制算法.该方法以前馈控制器的结果作为GPC的一个极点,选择适当的惩罚矩阵,只有在极点附近GPC控制才能提高对前馈控制器的作用.使用10.7 k W的样机验证该理论.实验结果表明:与传统的PI矢量控制相比,基于GPC的前馈链路数字化控制器效果更优.
基金Funded by the Natural Science Foundation of Hubei Province (No. 2004AA101E04)
文摘Fast response and stable torque output are crucial to the performance of electric screw presses. This paper describes the design of a direct torque control (DTC) system for speeding up torque response and reducing the starting current of electric screw presses and its application to the J58K series of numerical control electric screw presses with a dual-motor drive. The DTC drive system encompasses speed control, torque reference control, and switching frequency control. Comparison of the DTC dual-AC induction motor drive with corresponding AC servo motor drive showed that for the J58K-315 electric screw press, the DTC drive system attains a higher maximum speed (786 r/min) within a shorter time (1.13 s) during a 250 nun stroke and undergoes smaller rise in temperature (42.0 ℃) in the motor after running for 2 h at a 12 min-1 strike frequency than the AC servo motor drive does (751 r/min within 1.19 s, and 50.6 ℃ rise). Moreover, the DTC AC induction motor drive, with no need for a tachometer or position encoder to feed back the speed or position of the motor shaft, enjoys increased reliability in a strong-shock work environment.