主动负载下变比提升装置的电液驱动

A. Kosucki, Łukasz Stawiński, Adrian Morawiec, J. Goszczak
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引用次数: 1

摘要

由变频电机驱动的固定排量泵驱动的液压系统可以取代传统的节流系统,因为它们能够控制液压缸的速度,而不受负载的值和方向的影响。这些系统可以提高驱动器的能源效率,甚至在降低过程中提供能量回收的可能性。本文以剪式升降机为例,对采用容积控制的新型驱动系统进行了实验研究。该系统采用由异步电机驱动的可逆齿轮泵,由变频器驱动,以磁场定向控制方式工作。对比研究了液压缸与平台假定速度的映射,以及负载变化对开环控制系统驱动机构速度和定位的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electro-Hydraulic Drive of the Variable Ratio Lifting Device under Active Load
Hydraulic systems fed by fixed displacement pumps driven by frequency-controlled electric motors can replace conventional throttling systems due to their ability to control the speed of hydraulic cylinders regardless of the value and direction of the load. These systems can improve the energy efficiency of the drive or even provide the possibility of energy recuperation during lowering. This paper presents experimental studies of the new drive system with volumetric control of the speed of the lifted/lowered payload using the example of a scissor lift. The system uses a reversible gear pump driven by an asynchronous motor fed by a frequency inverter operating in field-oriented control mode. Comparative studies of the mapping of the assumed speed of the hydraulic cylinder and platform are presented, as well as studies of the influence of the load change on the speed and positioning of the mechanism driven by the open-loop controlled system.
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