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Design of robust model predictive controllers for frequency and voltage loops of interconnected power systems including wind farm and energy storage system

机译:用于包括风电场和储能系统在内的互连电力系统的频率和电压回路的鲁棒模型预测控制器的设计

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摘要

The controllers are used to reduce fluctuations in frequency deviations and tie-line power flow exchange of an interconnected power system due to load and voltage disturbances. This study proposes a control strategy based on model predictive control (MPC) procedures with various design schemes for an unequal two-area interconnected power system. The study model comprises voltage excitation and frequency loops with necessary interactions between them. Flywheel as an energy storage system along with wind energy are engaged in the model under study. The tuning parameters of MPC-based controllers are obtained by quadratic problem solver. The validity of the proposed MPC-based controllers is extensively confirmed using the simulation results under different disturbance conditions such as different loadings and voltage changes. The effectiveness of the MPC based on controllers is compared to classical controllers and recent controllers based on optimisation techniques such as genetic algorithm. In addition, the quality specifications of the dynamic responses of the anticipated MPC-based controllers are reported to signify their values. The quality indices along with comparative performance point out the good performance of the demonstrated MPC-based controllers for various estimated novel scenarios.
机译:控制器用于减少由于负载和电压干扰而引起的频率偏差波动和互连电力系统的联络线潮流交换。这项研究提出了一种基于模型预测控制(MPC)程序的控制策略,该程序具有不等的两区域互联电力系统的各种设计方案。研究模型包括电压激励和频率环路,它们之间有必要的相互作用。飞轮作为储能系统与风能一起被纳入研究模型。基于MPC的控制器的调节参数由二次问题求解器获得。所提出的基于MPC的控制器的有效性在不同的干扰条件下(例如,不同的负载和电压变化)下的仿真结果得到了广泛证实。将基于控制器的MPC的有效性与经典控制器和基于优化技术(例如遗传算法)的最新控制器进行了比较。另外,报告了预期的基于MPC的控制器的动态响应的质量规格,以表示其值。质量指标以及比较性能指出了已证明的基于MPC的控制器在各种估计的新颖情况下的良好性能。

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