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Singular Perturbation Analysis and Synthesis of Wind Energy Conversion Systems under Stochastic Environments

机译:随机环境下的奇异扰动分析与风能转换系统的合成

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This paper presents a reduced-order stochastic optimal control for a wind energy conversion system (WECS). The wind energy conversion system which contains both mechanical dynamics (slow dynamics) and electrical dynamics (fast dynamics) is decomposed into a slow subsystem and a fast subsystem using the singular perturbation analysis. By separating the system, a reduced-order Linear Quadratic Gaussian (LQG) controller can be obtained by combining LQG subcontrollers designed independently for each subsystem. The performance of the reduced-order and full-order LQG controllers are compared to show the effectiveness of the proposed LQG control through numerical simulations.
机译:本文为风能转换系统(WECs)提出了依次的随机最佳控制。包含机械动态(慢动力学)和电动动力学(快速动态)的风能转换系统被分解为慢性子系统和使用奇异扰动分析的快速子系统。通过分离系统,可以通过与每个子系统独立设计的LQG子控制器组合来获得缩小的线性二次高斯(LQG)控制器。比较减少阶和全阶LQG控制器的性能,以显示通过数值模拟所提出的LQG控制的有效性。

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