首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Parallel Control of Velocity Control and Energy-Saving Control for a Hydraulic Valve-Controlled Cylinder System Using Self-Organizing Fuzzy Sliding Mode Control
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Parallel Control of Velocity Control and Energy-Saving Control for a Hydraulic Valve-Controlled Cylinder System Using Self-Organizing Fuzzy Sliding Mode Control

机译:基于自组织模糊滑模控制的液压阀控缸系统速度控制与节能控制的并行控制

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摘要

Conventional hydraulic valve-controlled systems that incorporate positive displacement pumps and relief valves have a problem of low energy efficiency. The objective of the research is to implement parallel control of energy-saving control in an electro-hydraulic load-sensing system and velocity control in a hydraulic valve-controlled cylinder system to achieve both high velocity control accuracy and low input power simultaneously. The overall control system is a two-input two-output system. For that, the control strategy of self-organizing fuzzy sliding mode control (SOFSMC) is developed in this study to reduce the fuzzy rule number and to self-organize on-line the fuzzy rules. To compare the energy-saving performance, the velocity control is implemented under three different energy-saving control systems, such as load-sensing control system, constant supply pressure control system and conventional hydraulic system. The parallel control of the velocity control and energy-saving control by the SOFSMC is implemented experimentally.
机译:包括正排量泵和安全阀的常规液压阀控制系统存在能量效率低的问题。该研究的目的是在电动液压负荷传感系统中实现节能控制与在液压阀控制缸系统中进行速度控制的并行控制,以同时实现高速度控制精度和低输入功率。总体控制系统是两输入两输出系统。为此,本研究提出了一种自组织模糊滑模控制(SOFSMC)的控制策略,以减少模糊规则数量并在线自组织模糊规则。为了比较节能性能,速度控制是在三种不同的节能控制系统(如负载感应控制系统,恒定供应压力控制系统和常规液压系统)下实施的。通过实验实现了SOFSMC的速度控制和节能控制的并行控制。

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