Fault-tolerant control of energy production devices using discrete event systems formalisms

F. Gatwaza, L. Seddiki, H. Akdag, S. Amari
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Abstract

A fault-tolerant control problem of an electrical power supply grid for rail transport systems is addressed. Timed automata with guards models are used to solve this control issue. In this study, we have considered four types of faults, that are actuators and sensors faults, plant defects and controller faults that may appear on the electrical grid. The principle of the approach consists to build of a set of trajectories from which an appropriate trajectory will be chosen at the occurrence of a fault in view of reaching the state desired by the designer of the system. This method considers time constraints with guards and generally these guards condition the appearance of faults in systems.
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使用离散事件系统形式的能源生产设备容错控制
研究了轨道交通系统供电电网的容错控制问题。采用带保护模型的时间自动机来解决这一控制问题。在本研究中,我们考虑了四种类型的故障,即可能出现在电网上的执行器和传感器故障、设备缺陷和控制器故障。该方法的原理是建立一组轨迹,在故障发生时从中选择合适的轨迹,以达到系统设计者所期望的状态。该方法考虑了带有保护的时间约束,通常这些保护控制系统故障的出现。
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