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Double Position Servo Synchronous Drive System Based on Cross-Coupling Integrated Feedforward Control for Broacher 被引量:2

Double Position Servo Synchronous Drive System Based on Cross-Coupling Integrated Feedforward Control for Broacher
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摘要 Synchronization errors directly deteriorate the machining accuracy of metal parts and the existed method cannot keep high synchronization precision because of external disturbances. A new double position servo synchronous driving scheme based on semi-closed-loop cross- coupling integrated feedforward control is proposed. The scheme comprises a position error cross-coupling feedfor-ward control and a load torque identification with feed- forward control. A digital integrated simulation system for the dual servo synchronous drive system is established. Using a 20 t servo broacher, performance analysis of the scheme is conducted based on this simulation system and the simulation results show that systems with traditional parallel or single control have problems when the work- table works with an unbalanced load. However, the system with proposed scheme shows good synchronous perfor- mance and positional accuracy. Broaching tests are performed and the experimental results show that the maximum dual axis synchronization error of the system is only 8μm during acceleration and deceleration processes and the error between the actual running position and the given position is almost zero. A double position servo synchronous driving scheme is presented based on crosscoupled integrated feedforward compensation control, which can improve the synchronization precision. Synchronization errors directly deteriorate the machining accuracy of metal parts and the existed method cannot keep high synchronization precision because of external disturbances. A new double position servo synchronous driving scheme based on semi-closed-loop cross- coupling integrated feedforward control is proposed. The scheme comprises a position error cross-coupling feedfor-ward control and a load torque identification with feed- forward control. A digital integrated simulation system for the dual servo synchronous drive system is established. Using a 20 t servo broacher, performance analysis of the scheme is conducted based on this simulation system and the simulation results show that systems with traditional parallel or single control have problems when the work- table works with an unbalanced load. However, the system with proposed scheme shows good synchronous perfor- mance and positional accuracy. Broaching tests are performed and the experimental results show that the maximum dual axis synchronization error of the system is only 8μm during acceleration and deceleration processes and the error between the actual running position and the given position is almost zero. A double position servo synchronous driving scheme is presented based on crosscoupled integrated feedforward compensation control, which can improve the synchronization precision.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第2期272-285,共14页 中国机械工程学报(英文版)
基金 Supported by National Natural Science Foundation of China(Grant No.51307151) Zhejiang Provincial Public Welfare Technology Application Research Project of China(Grant No.2015C31078) Zhejiang Provincial Natural Science Foundation of China(Grant No.LY14E070008) Zhejiang Postdoctoral Science Foundation of China(Grant No.BSH1402065) Science Foundation of Zhejiang SciTech University(Grant No.13022151-Y)
关键词 Broacher Double drive system Cross coupling position servo synchronous Integrated feedforward Broacher · Double drive system · Cross coupling position servo synchronous Integrated feedforward
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