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Two-layer model predictive control of systems with independent dynamics and shared control resources

机译:具有独立动态和共享控制资源的系统的两层模型预测控制

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This paper describes an approach to the design of a controller for a system made by dynamically decoupled subsystems. Each subsystem is endowed with local actuators that, in normal operating conditions, are able to compensate for disturbances and to provide the required control action. If, due to too large disturbances, the local control action is not sufficient, the actuators of the neighbouring subsystems can provide the required control contribution. The control scheme is designed according to a hierarchical approach: at the lower layer local Model Predictive Controllers (MPC) are used to compute the required control action. The information about any shortage or excess of control is sent to a supervisor that, if needed, re-balances the local control actions to guarantee global disturbance rejection properties. A simulation example concerning the coordination of small electrical grids is discussed to show the performances of the proposed solution.
机译:本文介绍了一种用于设计由动态解耦子系统制造的系统的控制器的方法。每个子系统都具有赋予本地致动器,即在正常操作条件下,能够补偿干扰并提供所需的控制动作。如果由于过大的干扰,则局部控制动作是不够的,则相邻子系统的致动器可以提供所需的控制贡献。控制方案根据分层方法设计:在下层本地模型预测控制器(MPC)用于计算所需的控制动作。有关任何短缺或多余的控制的信息被发送到监督员,如果需要,重新余额余额本地控制操作以保证全局干扰拒绝属性。讨论了关于小电网协调的模拟示例以显示所提出的解决方案的性能。

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