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A study on a flow distribution control algorithm of a tandem pump for efficient electric excavators

机译:高效电动挖掘机串联泵流量分配控制算法的研究

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This paper presents a flow distribution control algorithm for a tandem pump and an electric motor in an electric excavator system. Efficiency is the main issue for electric excavators since the main energy comes from the battery unlike the conventional hydraulic excavators. Better efficiency and longer working hours can be achieved if the main motor operates where the integrated efficiency of the motor and the pump is the maximum under the same hydraulic pump output power and the desired pressure condition. Moreover, a flow distribution control should be considered for better efficiency of the hydraulic tandem pump as the pump efficiency tends to be affected by displacement In this paper, a flow distribution control is added to the previous optimal operation point control by considering a swash plate angle for each operation case. The control algorithm is derived from each efficiency map of the motor and the hydraulic pump. Optimal operation points are produced where the integrated efficiency is the maximum under the same power, pressure, and the swash plate angle. The proposed algorithm is simulated through the MILS (Model-In-the-Loop Simulator). Electric energy consumption in the controlled electric excavator system is decreased compared to that in the uncontrolled electric excavator system.
机译:本文提出了一种电动挖掘机系统中的串联泵和电动机的流量分配控制算法。效率是电动挖掘机的主要问题,因为与传统的液压挖掘机不同,主要能量来自电池。如果主电动机在相同的液压泵输出功率和所需压力条件下运行时,电动机和泵的综合效率最大,则可以实现更高的效率和更长的工作时间。此外,应考虑流量分配控制以提高液压串联泵的效率,因为泵的效率会受到排量的影响。在本文中,通过考虑斜盘角度将流量分配控制添加到先前的最佳工作点控制中针对每个操作案例。控制算法是从电动机和液压泵的每个效率图得出的。在相同的功率,压力和旋转斜盘角度下,在综合效率最高的情况下,产生了最佳的工作点。所提出的算法是通过MILS(模型在环仿真器)进行仿真的。与不受控的电动挖掘机系统相比,受控的电动挖掘机系统中的电能消耗减少了。

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