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Active Fault-Tolerant Control for Electro-Hydraulic Systems With an Independent Metering Valve Against Valve Faults

机译:具有独立计量阀的电动液压系统对阀门故障的主动容错控制

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摘要

Aiming at the tough requirements for safety and maintainability in mobile hydraulic systems, in this article, an active fault-tolerant control (FTC) system is proposed against the valve faults of an independent metering valve. Not only moderate faults of activated valves, but also significant faults and unactivated valve faults are considered. Without additional hardware redundancy, analytical redundancy is derived by the coordinate control of other fault-free valves. Accordingly, an FTC system in parallel with a normal controller is designed based on the pressure feedback. It consists of a set of reconfigurable controllers and a decision mechanism. The control signals, control loops, and operating modes can all be precisely reconfigured to adaptively match unmodeled fault dynamics. A bumpless transfer controller based on a latent tracking loop is designed to smooth the switching between the normal controller and FTC. Consequently, random valve faults can be tolerated with minor degradations in motion tracking and energy-saving performance. The feasibility of the FTC system is evaluated by a 2-ton excavator.
机译:针对移动液压系统中的安全性和可维护性的苛刻要求,在本文中,提出了一种接受独立计量阀的阀门故障的有源容错控制(FTC)系统。不仅是激活阀的适度故障,还考虑了显着的故障和不活动的阀门故障。如果没有额外的硬件冗余,则通过对其他无故障阀的坐标控制导出分析冗余。因此,基于压力反馈设计了与正常控制器并联的FTC系统。它由一组可重构的控制器和决策机制组成。可以精确地重新配置控制信号,控制循环和操作模式,以便自适应地匹配未拼接的故障动态。基于潜在跟踪环路的无磁力传输控制器旨在平滑正常控制器和FTC之间的切换。因此,可以在运动跟踪和节能性能中具有轻微降解的随机阀故障。 FTC系统的可行性由2吨挖掘机评估。

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