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A Two-Time-Scale Framework to Supervisory Predictive Control of an Integrated Wind/Solar Energy Generation and Water Desalination System

机译:一种双级框架,用于监督综合风/太阳能发电和水海水淡化系统的监督预测控制

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This work proposes a two-time-scale framework for the design of a supervisory predictive control system for long-term optimal management and operation of an integrated wind-solar energy generation and reverse-osmosis (RO) water desalination system. Specifically, we design the supervisory control system via model predictive control (MPC) which coordinates the wind and solar subsystems as well as a battery bank to provide enough energy to the RO subsystem. In the supervisory MPC design, a two-time-scale property of the dynamics of the integrated system is taken advantage of to improve the computational efficiency of the control problem formulation. Furthermore, optimality considerations on system operation and energy savings are taken into account via appropriate constraints in the supervisory controller formulation. Simulations are carried out to illustrate the applicability and effectiveness of the proposed supervisory predictive control design.
机译:这项工作提出了一种双级框架,用于设计监督预测控制系统,用于长期最佳管理和综合风力 - 太阳能发电和反渗透(RO)水海水淡化系统的操作。具体而言,我们通过模型预测控制(MPC)设计监控系统,该控制系统协调风和太阳能子系统以及电池组以向RO子系统提供足够的能量。在监控MPC设计中,利用集成系统动态的两次尺度特性,以提高控制问题配方的计算效率。此外,通过监控控制器配方中的适当约束考虑了系统操作和节能的最佳考虑。进行了模拟,以说明所提出的监督预测控制设计的适用性和有效性。

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