动态安全裕度在鲁棒故障检测和容错控制中的应用

M. Abdel-Geliel, E. Badredden, A. Gambier
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引用次数: 7

摘要

动态安全裕度(Dynamic Safety Margin, DSM)是一种性能指标,其自变量为从状态空间中由一组不等式约束描述的预定义安全边界到系统当前状态的距离。鲁棒性是故障检测与隔离(FDI)系统的一个重要问题。在本工作中,设计了一个基于需求侧管理的稳健的FDI系统。基于DSM分析对故障进行检测,并采用多模型方法对故障进行隔离。讨论了所建议的外商直接投资制度的主要性质及其主要局限性。基于DSM的控制器设计有助于在系统暂态阶段或存在干扰时保持预定义的安全裕度。因此,本文讨论了DSM在基于模型预测控制的容错控制设计中的应用。所提出的外国直接投资制度和公平贸易委员会的成果是通过实时执行来说明的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of dynamic safety margin in robust fault detection and fault tolerant control
The Dynamic Safety Margin (DSM) is defined as a performance index, whose independent variable is the distance from a predefined safety boundary, which is described in the state space by a set of inequality constraints, to the current system state. Robustness is an important issue for fault detection and isolation (FDI) system. In this work, design a robust FDI system based on DSM is applied. The fault is detected based on the analysis of DSM and isolated using a multi-model approach. The main properties of the suggested FDI system is discussed and the main limitation as well. The design of a controller based on DSM is useful to maintain a predefined margin of safety during the transient phase of the system or when disturbances are present. Therefore, the application of DSM in fault tolerant control (FTC) design using in particular model predictive control (MPC) is discussed. The fruitiness of the proposed FDI system and FTC is illustrated by real-time implementation.
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