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Integration of PV system with SMES based on model predictive control for utility grid reliability improvement

机译:基于模型预测控制的效用网格可靠性改进的模型预测控制集成

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This paper describes the integration of a photovoltaic (PV) renewable energy source with a superconducting magnetic energy storage (SMES) system. The integrated system can improve the voltage stability of the utility grid and achieve power leveling. The control schemes employ model predictive control (MPC), which has gained significant attention in recent years because of its advantages such as fast response and simple implementation. The PV system provides maximum power at various irradiation levels using the incremental conductance technique (INC). The interfaced grid side converter of the SMES can control the grid voltage by regulating its injected reactive power to the grid, while the charge and discharge operation of the SMES coil can be managed by the system operator to inject/absorb active power to/from the grid to achieve the power leveling strategy. Simulation results based on MATLAB/Simulink software prove the fast response of the system control objectives in tracking the setpoints at different loading scenarios and PV irradiance levels, while the SMES injects/absorbs active and reactive power to/from the grid during various events to improve the voltage response and achieve power leveling strategy.
机译:本文描述了光伏(PV)可再生能源与超导磁能存储(SMES)系统的集成。集成系统可以提高公用电网的电压稳定性并实现功率调平。控制方案采用模型预测控制(MPC),近年来由于其优势,诸如快速响应和简单的实施而获得了显着的关注。 PV系统使用增量电导技术(INC)提供各种辐射水平的最大功率。中小企业的接口电网侧转换器可以通过将其注入的电流电力调节到栅格来控制电网电压,而SMES线圈的电荷和放电操作可以由系统操作员管理,以向/吸收电力网格实现电力调平策略。基于MATLAB / SIMULINK软件的仿真结果证明了系统控制目标在不同加载方案和PV辐照度水平上跟踪设定值的快速响应,而SMES在各种事件期间向/从网格中注入/吸收主动和无功功率电压响应和实现功率调平策略。

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