Switched Model Predictive Control for Energy Dispatching of a Photovoltaic-Diesel-Battery Hybrid Power System


A new adaptive switched model predictive control (MPC) strategy is designed in this brief for energy dispatching of a photovoltaic-diesel-battery hybrid power system, where the battery is unpermitted to charge and discharge simultaneously. The distinguishing feature of the proposed switched MPC is that, new switched constraints are created to explain the different modes (charging and discharging) of the battery, such that the burden of using a switched multiple-input-multiple-output state-house model may be circumvented. Parameters of the battery are unknown constants, and are estimated online with an adaptive updating law. Within the switched MPC algorithm, predictive horizon and management horizon vary according to the predefined switching schedule. On the basis of optimization with the switched constraints, receding horizon management is used to get the dispatching strategy for the hybrid power system. Performances of the closed-loop system with the proposed switched MPC are verified by simulation results.

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