A new Sliding Mode Controller for Electro-Hydraulic Actuator (EHA) applications

Xiang Hu, D. Al-Ani, S. Habibi
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引用次数: 4

Abstract

In any type of system, unexpected fault conditions may occur. A minor fault may cause the system efficiency and performance to deviate from norm and/or deteriorate; a major fault condition may cause a system failure. Fault detection and diagnosis (FDD) and fault tolerance are two important concepts that need to be considered in industrial applications and more specifically in safety critical systems. This paper considers the development of a fault tolerant sliding mode control (SMC) strategy for a form of hydraulic actuation system known as the Electro-Hydrostatic Actuator (EHA). EHA systems are being increasingly used in flight control applications. An EHA prototype is used for demonstrating the effectiveness of the proposed fault tolerant control strategy.
一种用于电液执行器(EHA)应用的新型滑模控制器
在任何类型的系统中,都可能出现意外的故障情况。一个小故障可能导致系统的效率和性能偏离正常和/或恶化;重大故障可能导致系统故障。故障检测和诊断(FDD)和容错是工业应用中需要考虑的两个重要概念,特别是在安全关键系统中。本文考虑了一种被称为电静液作动器(EHA)的液压作动系统的容错滑模控制策略的发展。EHA系统越来越多地应用于飞行控制应用。通过一个EHA原型验证了所提出的容错控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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