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Performance analysis of an automatic idle speed control system with a hydraulic accumulator for pure electric construction machinery

机译:纯电动工程机械用液压蓄能器自动怠速控制系统的性能分析

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摘要

To reduce the energy consumption and emissions of a hydraulic excavator (HE), an electric motor (EM) is employed to replace the internal combustion engine (ICE) that powers the hydraulic pumps. Owing to the excellent control characteristics and high efficiency of the EM, a two-level idle speed control system with a hydraulic accumulator (HA) for a HE is proposed to reduce energy consumption and improve the control performance of the actuator when the idle speed control (ISC) is switched off. A mathematical model is established and key parameters are analyzed and optimized. A simulation is performed using AMESim, and a control strategy for the two-level idle speed control is developed by using a co-simulation between AMESim and Simulink. A test rig is built based on the optimized parameters and simulation results. Experimental results show that the EM speed can be automatically switched between the first idle speed, second idle speed, and normal operating speed. Although the idle speed of the EM in the novel ISC system can be reduced more than that in a conventional ISC system, the proposed ISC system can still build actuator pressure more quickly in a working mode when the ISC is switched off. Compared to a system without idle speed control, the energy saving of the proposed system is approximately 36.06%. The proposed two-level idle speed control system with a HA can achieve high energy efficiency and excellent control performance, and it can be also applied to engine-driven construction machinery.
机译:为了减少液压挖掘机(HE)的能量消耗和排放,采用了电动机(EM)来代替为液压泵提供动力的内燃机(ICE)。鉴于EM的优异控制特性和高效率,提出了一种用于HE的带有液压蓄能器(HA)的两级怠速控制系统,以减少能耗并改善执行器在怠速控制时的控制性能。 (ISC)已关闭。建立了数学模型,并对关键参数进行了分析和优化。使用AMESim执行仿真,并通过使用AMESim和Simulink之间的协同仿真来开发用于两级怠速控制的控制策略。根据优化的参数和仿真结果构建了测试平台。实验结果表明,EM速度可以在第一怠速,第二怠速和正常运行速度之间自动切换。尽管与传统ISC系统相比,新型ISC系统中EM的怠速速度可以降低得更多,但是当ISC关闭时,建议的ISC系统仍可以在工作模式下更快地建立执行机构压力。与没有怠速控制的系统相比,该系统的节能量约为36.06%。提出的带有HA的二级怠速控制系统可以实现高能效和出色的控制性能,并且还可以应用于发动机驱动的工程机械。

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