首页> 外文会议>Proceedings of joint international agricultural conference (JIAC 2009) >DESIGN OF INTELLIGENT HYDRAULIC EXCAVATOR CONTROL SYSTEM BASED ON PID METHOD
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DESIGN OF INTELLIGENT HYDRAULIC EXCAVATOR CONTROL SYSTEM BASED ON PID METHOD

机译:基于PID方法的智能液压挖掘机控制系统设计。

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Most of the domestic designed hydraulic excavators adopt the constant power design method and set 85%~90% of engine power as the hydraulic system adoption power, it causes high energy loss due to mismatching of power between the engine and the pump. While the variation of the rotational speed of engine could sense the power shift of the load, it provides a new method to adjust the power matching between engine and pump through engine speed. Based on negative flux hydraulic system, an intelligent hydraulic excavator control system was designed based on rotational speed sensing method to improve energy efficiency. The control system was consisted of engine control module, pump power adjusted module, engine idle module and system fault diagnosis module. Special PLC with CAN bus was used to acquired the sensors and adjusts the pump absorption power according to load variation. Four energy saving control strategies with constant power method were employed to improve the fuel utilization. Three power modes (H, S and L mode) were designed to meet different working status; Auto idle function was employed to save energy through two work status detected pressure switches, 1300rpm was setting as the idle speed according to the engine consumption fuel curve. Transient overload function was designed for deep digging within short time without spending extra fuel. An increasing PID method was employed to realize power matching between engine and pump, the rotational speed's variation was taken as the PID algorithm's input; the current of proportional valve of variable displacement pump was the PID's output. The result indicated that the auto idle could decrease fuel consumption by 33.33% compared to work in maximum speed of H mode, the PID control method could take full use of maximum engine power at each power mode and keep the engine speed at stable range. Application of rotational speed sensing method provides a reliable method to improve the excavator's energy efficiency and realize power match between pump and engine.
机译:多数国内设计的液压挖掘机采用恒功率设计方法,将发动机功率的85%〜90%设置为液压系统的采用功率,由于发动机与泵之间的功率不匹配,导致能量损失较高。虽然发动机转速的变化可以检测到负载的动力变化,但它提供了一种通过发动机转速调节发动机与泵之间的功率匹配的新方法。基于负流量液压系统,设计了基于转速传感方法的智能液压挖掘机控制系统,以提高能源效率。控制系统由发动机控制模块,泵功率调节模块,发动机怠速模块和系统故障诊断模块组成。使用带有CAN总线的特殊PLC来采集传感器,并根据负载变化来调整泵的吸收功率。采用四种恒功率节能控制策略,提高了燃油利用率。设计了三种功率模式(H,S和L模式)来满足不同的工作状态。自动怠速功能通过两个工作状态检测压力开关来节省能量,根据发动机消耗燃油曲线将1300rpm设置为怠速。瞬态过载功能旨在在短时间内进行深挖而无需花费额外的燃料。采用递增的PID法实现发动机与泵之间的功率匹配,以转速变化作为PID算法的输入。变量泵的比例阀电流是PID的输出。结果表明,与在H模式最大速度下工作相比,自动怠速可减少33.33%的燃油消耗,PID控制方法可充分利用每种功率模式下的最大发动机功率,并使发动机速度保持在稳定范围内。转速传感方法的应用为提高挖掘机的能效并实现泵与发动机之间的功率匹配提供了可靠的方法。

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