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Research on Hierarchical and Distributed Control for Smart Generation Based on Virtual Wolf Pack Strategy

机译:基于虚拟狼包策略的智能生成分层和分布式控制研究

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摘要

Nowadays, haze has become a big trouble in our society. One of the significant solutions is to introduce renewable energy on a large scale. How to ensure that power system can adapt to the integration and consumption of new energy very well has become a scientific issue. A smart generation control which is called hierarchical and distributed control based on virtual wolf pack strategy is explored in this study. The proposed method is based on multiagent system stochastic consensus game principle. Meanwhile, it is also integrated into the new win-lose judgment criterion and eligibility trace. The simulations, conducted on the modified power system model based on the IEEE two-area load frequency control and Hubei power grid model in China, demonstrate that the proposed method can obtain the optimal collaborative control of AGC units in a given regional power grid. Compared with some smart methods, the proposed one can improve the closed-loop system performances and reduce the carbon emission. Meanwhile, a faster convergence speed and stronger robustness are also achieved.
机译:如今,阴霾已经成为我们社会的困难。其中一个重要的解决方案是在大规模上引入可再生能源。如何确保电力系统可以适应新能量的整合和消费,这很好地成为科学问题。在本研究中探讨了基于虚拟狼包策略的称为分布式控制的智能生成控制。所提出的方法是基于多元系统随机共识游戏原理。同时,它还集成到新的丧失判断标准和资格轨迹中。基于IEEE两区域负载控制和中国湖北电网模型的改进的电力系统模型进行的模拟证明了所提出的方法可以获得给定区域电网中AGC单元的最佳协作控制。与一些智能方法相比,所提出的可以改善闭环系统性能并降低碳排放。同时,还实现了更快的收敛速度和更强的稳健性。

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