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Energy-Saving Control of Single-Rod Hydraulic Cylinders with Programmable Valves and Improved Working Mode Selection

机译:具有可编程阀的单杆液压缸的节能控制和改进的工作模式选择

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This paper studies the energy-saving adaptive robust precision motion control of a single-rod hydraulic cylinder through the use of programmable valves. The programmable valves used in this study is a unique combination of five proportional cartridge valves connected in such a way that the meter-in and meter-out flows can be independently controlled by four of the valves as well as a true cross port flow controlled by the fifth valve. The programmable valves decouple the meter-in and meter-out flows providing tremendous flexibility to control the cylinder motion while decreasing the energy usage by utilizing the potential and kinetic energy of the load. This paper investigates the different working conditions of the programmable valves and proposes a simple yet effective way to use the programmable valves based on the desired states and current states.
机译:本文通过使用可编程阀门研究单杆液压缸的节能自适应精密运动控制。本研究中使用的可编程阀是五种比例筒阀的独特组合,使得仪表和仪表流动可以独立地由四个阀门独立控制以及由此控制的真正的交叉口流量控制第五阀门。可编程阀分离仪表和仪表流动,提供巨大的灵活性来控制气缸运动,同时通过利用负载的电位和动能来降低能量使用。本文调查了可编程阀的不同工作条件,提出了一种简单但有效的方法,可以根据所需的状态和当前状态使用可编程阀。

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