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Hybrid control algorithm for fuel consumption of a compound hybrid excavator

机译:复合式混合动力挖掘机油耗的混合控制算法

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摘要

The current paper describes a hybrid control algorithm for fuel consumption minimization of a compound hybrid excavator. The power train of the excavator integrates an engine assist motor, a super capacitor, and a dc/dc converter for hybridization of the original power train. This power train also incorporates an electrically propelled swing motor, which replaces the conventional hydraulic swing motor, to remove hydraulic loss and recuperate the kinetic energy of the swing motion. Since the super capacitor provides the required energy for the electric swing motor, sustaining the charge presents an important consideration in the power management algorithm design. First, the optimal control problem has been applied to the fuel consumption minimization problem, and an algorithm based on the equivalent fuel minimization strategy (ECMS) has been applied by analyzing the behavior of the co-state of the optimal control problem. The ECMS algorithm is integrated with an engine set speed regulator to increase the overall efficiency of the diesel engine. The engine set speed regulator was designed to change the engine set speed, depending on the engine load. Simulations show that the ECMS is near optimum compared to the dynamic programming results, maintaining an approximately 3% fuel improvement compared to a thermostat controller, which determines power distribution based on the state of charge. Excellent charge-sustaining performance was also achieved. The performance of the control algorithm was verified through real-world vehicle tests, resulting in an approximately 30% improvement in fuel economy, compared to the conventional excavator. (C) 2016 Published by Elsevier B.V.
机译:当前的论文描述了一种混合控制算法,用于使复合混合动力挖掘机的油耗最小化。挖掘机的动力总成集成了发动机辅助马达,超级电容器和用于原始动力总成混合的dc / dc转换器。该动力传动系还装有电驱动的回转马达,该马达取代了传统的液压回转马达,以消除液压损失并恢复回转运动的动能。由于超级电容器为回转电动机提供了所需的能量,因此维持电荷是电源管理算法设计中的重要考虑因素。首先,将最优控制问题应用于油耗最小化问题,并且通过分析最优控制问题的共态行为,将基于等效燃料最小化策略(ECMS)的算法应用于该算法。 ECMS算法与发动机转速调节器集成在一起,以提高柴油发动机的整体效率。发动机转速调节器的设计可根据发动机负载改变发动机转速。仿真显示,与动态编程结果相比,ECMS接近最佳状态,与恒温器控制器相比,该控制器可将燃料节省约3%,后者根据充电状态确定功率分配。还获得了优异的电荷保持性能。该控制算法的性能已通过实际车辆测试得到验证,与传统挖掘机相比,可节省约30%的燃油。 (C)2016由Elsevier B.V.发布

著录项

  • 来源
    《Automation in construction》 |2016年第8期|1-10|共10页
  • 作者单位

    Seoul Natl Univ, Mech & Aerosp Engn, Gwanak 599, Seoul 151744, South Korea;

    Doosan Infracore, Corp R&D Div, 39-1 Sungbok Dong, Yongin 448795, Gyeonggi Do, South Korea;

    Doosan Infracore, Corp R&D Div, 39-1 Sungbok Dong, Yongin 448795, Gyeonggi Do, South Korea;

    Seoul Natl Univ, Mech & Aerosp Engn, Gwanak 599, Seoul 151744, South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Compound hybrid excavator; Power management; Optimal control;

    机译:复合混合动力挖掘机;动力管理;最优控制;

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