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Dynamic simulation and optimal control strategy for a parallel hybrid hydraulic excavator 被引量:23

Dynamic simulation and optimal control strategy for a parallel hybrid hydraulic excavator
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摘要 The primary focus of this study is to investigate the control strategies of a hybrid system used in hydraulic excavators. First, the structure and evaluation target of hybrid hydraulic excavators are analyzed. Then the dynamic system model including batteries, motor and engine is built as the simulation environment to obtain control results. A so-called multi-work-point dynamic control strategy, which has both closed-loop speed PI (proportion integral) control and direct torque control, is proposed and studied in the simulation model. Simulation results indicate that the hybrid system with this strategy can meet the power demand and achieve better system stability and higher fuel efficiency. The primary focus of this study is to investigate the control strategies of a hybrid system used in hydraulic excavators. First, the structure and evaluation target of hybrid hydraulic excavators are analyzed. Then the dynamic system model including batteries, motor and engine is built as the simulation environment to obtain control results. A so-called multi-work-point dynamic control strategy, which has both closed-loop speed PI (proportion integral) control and direct torque control, is proposed and studied in the simulation model. Simulation results indicate that the hybrid system with this strategy can meet the power demand and achieve better system stability and higher fuel efficiency.
出处 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第5期624-632,共9页 浙江大学学报(英文版)A辑(应用物理与工程)
基金 Project (No. 2006C11148) supported by the Science Technology Project of Zhejiang Province, China
关键词 Hybrid system Hydraulic excavator Multi-work-point dynamic control Direct torque control 杂合系统 液压传动 水力挖掘机 动力学控制
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参考文献12

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二级参考文献29

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