11 research outputs found

    Advances in state estimation, diagnosis and control of complex systems

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    This dissertation intends to provide theoretical and practical contributions on estimation, diagnosis and control of complex systems, especially in the mathematical form of descriptor systems. The research is motivated by real applications, such as water networks and power systems, which require a control system to provide a proper management able to take into account their specific features and operating limits in presence of uncertainties related to their operation and failures from component malfunctions. Such a control system is expected to provide an optimal operation to obtain efficient and reliable performance. State estimation is an essential tool, which can be used not only for fault diagnosis but also for the controller design. To achieve a satisfactory robust performance, set theory is chosen to build a general framework for descriptor systems subject to uncertainties. Under certain assumptions, these uncertainties are propagated and bounded by deterministic sets that can be explicitly characterized at each iteration step. Moreover, set-invariance characterizations for descriptor systems are also of interest to describe the steady performance, which can also be used for active mode detection. For the controller design for complex systems, new developments of economic model predictive control (EMPC) are studied taking into account the case of underlying periodic behaviors. The EMPC controller is designed to be recursively feasible even with sudden changes in the economic cost function and the closed-loop convergence is guaranteed. Besides, a robust technique is plugged into the EMPC controller design to maintain these closed-loop properties in presence of uncertainties. Engineering applications modeled as descriptor systems are presented to illustrate these control strategies. From the real applications, some additional difficulties are solved, such as using a two-layer control strategy to avoid binary variables in real-time optimizations and using nonlinear constraint relaxation to deal with nonlinear algebraic equations in the descriptor model. Furthermore, the fault-tolerant capability is also included in the controller design for descriptor systems by means of the designed virtual actuator and virtual sensor together with an observer-based delayed controller.Esta tesis propone contribuciones de car谩cter te贸rico y aplicado para la estimaci贸n del estado, el diagn贸stico y el control 贸ptimo de sistemas din谩micos complejos en particular, para los sistemas descriptores, incluyendo la capacidad de tolerancia a fallos. La motivaci贸n de la tesis proviene de aplicaciones reales, como redes de agua y sistemas de energ铆a, cuya naturaleza cr铆tica requiere necesariamente un sistema de control para una gesti贸n capaz de tener en cuenta sus caracter铆sticas espec铆ficas y l铆mites operativos en presencia de incertidumbres relacionadas con su funcionamiento, as铆 como fallos de funcionamiento de los componentes. El objetivo es conseguir controladores que mejoren tanto la eficiencia como la fiabilidad de dichos sistemas. La estimaci贸n del estado es una herramienta esencial que puede usarse no solo para el diagn贸stico de fallos sino tambi茅n para el dise帽o del control. Con este fin, se ha decidido utilizar metodolog铆as intervalares, o basadas en conjuntos, para construir un marco general para los sistemas de descriptores sujetos a incertidumbres desconocidas pero acotadas. Estas incertidumbres se propagan y delimitan mediante conjuntos que se pueden caracterizar expl铆citamente en cada instante. Por otra parte, tambi茅n se proponen caracterizaciones basadas en conjuntos invariantes para sistemas de descriptores que permiten describir comportamientos estacionarios y resultan 煤tiles para la detecci贸n de modos activos. Se estudian tambi茅n nuevos desarrollos del control predictivo econ贸mico basado en modelos (EMPC) para tener en cuenta posibles comportamientos peri贸dicos en la variaci贸n de par谩metros o en las perturbaciones que afectan a estos sistemas. Adem谩s, se demuestra que el control EMPC propuesto garantiza la factibilidad recursiva, incluso frente a cambios repentinos en la funci贸n de coste econ贸mico y se garantiza la convergencia en lazo cerrado. Por otra parte, se utilizan t茅cnicas de control robusto pata garantizar que las estrategias de control predictivo econ贸mico mantengan las prestaciones en lazo cerrado, incluso en presencia de incertidumbre. Los desarrollos de la tesis se ilustran con casos de estudio realistas. Para algunas de aplicaciones reales, se resuelven dificultades adicionales, como el uso de una estrategia de control de dos niveles para evitar incluir variables binarias en la optimizaci贸n y el uso de la relajaci贸n de restricciones no lineales para tratar las ecuaciones algebraicas no lineales en el modelo descriptor en las redes de agua. Finalmente, se incluye tambi茅n una contribuci贸n al dise帽o de estrategias de control con tolerancia a fallos para sistemas descriptores

    Wind Turbine Reliability Improvement by Fault Tolerant Control

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    This thesis investigates wind turbine reliability improvement, utilizing model-based fault tolerant control, so that the wind turbine continues to operate satisfactorily with the same performance index in the presence of faults as in fault-free situations. Numerical simulations are conducted on the wind turbine bench mark model associated with the considered faults and comparison is made between the performance of the proposed controllers and industrial controllers illustrating the superiority of the proposed ones

    An exact approach for aggregated formulations

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