基于模型预测控制的船舶推进系统容错控制

E. Kerrigan, J. Maciejowski
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引用次数: 29

摘要

近年来,模型预测控制(MPC)在特定情况下如何适应故障的研究已经得到了证实。本文描述了MPC作为船舶推进系统单发动机/螺旋桨模型的容错控制器是如何成功实现的。结果表明,MPC控制器对船舶推进系统内部故障具有鲁棒性,即使在没有内部故障检测和隔离(FDI)信息的情况下也是如此。对于传感器故障的情况,假设FDI信息是可用的,并展示了MPC控制器如何与卡尔曼估计器相结合,可以在传感器故障存在的情况下大大改善系统的跟踪响应。本文的结论是,MPC是船舶推进系统容错控制器的一个很好的候选,只需要在监督级别重新配置,而不需要在较低级别的控制系统中进行额外的重新配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault-tolerant control of a ship propulsion system using model predictive control
Recently, it has been shown how model predictive control (MPC) can adapt to faults in certain circumstances. This paper describes how MPC was successfully implemented as a fault-tolerant controller for a single engine/propeller model of a ship propulsion system. It is shown that the MPC controller can be tuned to be robust to internal faults that develop in the ship propulsion system, even in the absence of any fault detection and isolation (FDI) information for the internal faults. For the case of sensor faults, it is assumed that FDI information is available and it is shown how the MPC controller, in combination with a Kalman estimator, can drastically improve the tracking response of the system in the presence of sensor faults. The paper concludes that MPC is a very good candidate for a fault-tolerant controller for the ship propulsion system, requiring re-configuration only at the supervisory level, without the need for additional re-configuration in the lower-level control systems.
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