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Robust Control Method for Power Balance in Wind Energy Integrated in Power Systems

机译:电力系统集成风能中功率平衡的鲁棒控制方法

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With the industry penetration of large-scale wind power, feature changes in reliable operation are induced by uncertain output, so adequate robust decisions are an inevitable way to secure utilization of wind energy security and stability. In light of the problem of tracking robust decision-maker expectations during uncertain demand for adequate dispatch, an adaptive dispatch mechanism for a ‘general adequacy-economy’ game is proposed. First, the ‘general adequacy-economy’ differential game model is designed, and a robust control theory is introduced to prove the existence of the differential game solution. Furthermore, the evolution vector and confidence interval is defined and an evolutionary feedback equation is established, cascading the differential game solution to obtain the adaptive game solution and revise its dynamic robustness in advance. Ultimately, a ‘general adequacy-economy’ dynamic dispatch is achieved in advance, which can satisfy decision-maker expectations for robust tracking during the most uncertain modes in adequacy resource demand. The proposed model for the mechanism and the method are applied to wind energy integrated in an actual grid operation, and the results demonstrate its robustness.
机译:随着大规模风力发电的行业渗透,不确定的输出会导致可靠运行中的功能变化,因此,适当的可靠决策是确保利用风能安全性和稳定性的必然方法。考虑到在不确定的适当调度需求期间跟踪决策者的期望的问题,提出了一种针对“一般充分性-经济”博弈的自适应调度机制。首先,设计了“一般充足性经济”差分博弈模型,并引入了鲁棒控制理论来证明差分博弈解决方案的存在。此外,定义了进化向量和置信区间,并建立了进化反馈方程,将微分博弈解级联,以获得自适应博弈解并提前修正其动态鲁棒性。最终,可以预先实现“一般充足性经济”动态调度,这可以满足决策者的期望,即在最不确定的资源充足性模式下进行可靠的跟踪。将所提出的机理和方法模型应用于实际电网运行中的风能集成,结果表明了该方法的鲁棒性。

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