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Fractional order PID control for steer-by-wire system of emergency rescue vehicle based on genetic algorithm 被引量:8
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作者 XU Fei-xiang LIU Xin-hui +2 位作者 CHEN Wei ZHOU Chen cao bing-wei 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2340-2353,共14页
Aiming at dealing with the difficulty for traditional emergency rescue vehicle(ECV)to enter into limited rescue scenes,the electro-hydraulic steer-by-wire(SBW)system is introduced to achieve the multi-mode steering of... Aiming at dealing with the difficulty for traditional emergency rescue vehicle(ECV)to enter into limited rescue scenes,the electro-hydraulic steer-by-wire(SBW)system is introduced to achieve the multi-mode steering of the ECV.The overall structure and mathematical model of the SBW system are described at length.The fractional order proportional-integral-derivative(FOPID)controller based on fractional calculus theory is designed to control the steering cylinder’s movement in SBW system.The anti-windup problem is considered in the FOPID controller design to reduce the bad influence of saturation.Five parameters of the FOPID controller are optimized using the genetic algorithm by maximizing the fitness function which involves integral of time by absolute value error(ITAE),peak overshoot,as well as settling time.The time-domain simulations are implemented to identify the performance of the raised FOPID controller.The simulation results indicate the presented FOPID controller possesses more effective control properties than classical proportional-integral-derivative(PID)controller on the part of transient response,tracking capability and robustness. 展开更多
关键词 steer-by-wire system emergency rescue vehicle fractional order proportional-integral-derivative(FOPID)controller parameter optimization genetic algorithm
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装载机智能减阻铲装控制策略及实验研究 被引量:2
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作者 卢一鸣 刘昕晖 +2 位作者 曹丙伟 陈伟 李昊旻 《液压与气动》 北大核心 2022年第2期169-175,共7页
为了降低装载机铲装作业时因轮胎滑转而造成的功率损失,提出了一种以破坏物料致密性为基础的智能减阻铲装控制策略。基于理论分析明确了装载机铲装时的作业阻力形成机理,确立了通过自动提升动臂来破坏密实核以达到减阻插入的新思路。提... 为了降低装载机铲装作业时因轮胎滑转而造成的功率损失,提出了一种以破坏物料致密性为基础的智能减阻铲装控制策略。基于理论分析明确了装载机铲装时的作业阻力形成机理,确立了通过自动提升动臂来破坏密实核以达到减阻插入的新思路。提出了基于现有液压系统的改进方案,并设计了基于轮速差值的装载机智能减阻铲装控制策略。后续铲装实验证明,该控制策略能够在铲装过程中出现打滑时自动提升动臂来破坏物料致密性,降低作业阻力并减少轮胎打滑时间,避免了功率损耗。 展开更多
关键词 装载机 智能减阻铲装 轮速差值 实验验证
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