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Analysis and enhancement of small-signal stability on DFIG-based wind integrated power system through the optimal design of linear quadratic regulator

机译:线性二次调节器的最优设计分析与增强DFIG风集成电力系统的小信号稳定性

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摘要

This study analyses the dynamic behaviour of a doubly fed induction generator (DFIG)-based wind integrated power system (WIPS) resulting from a major disturbance. The effects of transient disturbance on WIPS are examined without and with a controller in terms of performance and stability of the system. To enhance the performance of WIPS after a sudden disturbance, an optimally designed linear quadratic regulator (LQR) controller is applied to the system. The wind energy system is described in state-space representation, whose states and outputs are taken as feedback to the controller for improving their dynamic response. An artificial bee colony (ABC)-based swarm optimisation technique is used to evaluate the optimal weighting matrices of the LQR controller in parallel with minimising the performance index and dynamic response characteristics of the system. The effectiveness of the proposed ABC-LQR controller in WIPS is verified by comparing their simulation and numerical results with standard proportional-integral and LQR controllers. It indicates that the proposed controller provides better enhancement of dynamic response as compared with other controllers in terms of performance index and dynamic response characteristics. Moreover, the robustness and stability of various system configurations are tested by the eigenvalue analysis.
机译:本研究分析了由主要干扰引起的双馈感应发电机(DFIG)的双馈电力集成电力系统(WIPS)的动态行为。在系统的性能和稳定性方面,检查瞬态干扰对WIPS上的影响,并在系统的性能和稳定性方面进行了检查。为了在突然干扰后提高棉花的性能,将应用最佳设计的线性二次调节器(LQR)控制器应用于系统。风能系统在状态空间表示中描述,其状态和输出被视为对控制器的反馈,以改善其动态响应。基于人造蜂殖民地(ABC)的群优化技术,用于评估LQR控制器的最佳加权矩阵并行,最小化系统的性能指标和动态响应特性。通过使用标准比例积分和LQR控制器比较它们的模拟和数值结果来验证所提出的ABC-LQR控制器的有效性。它表明,与性能指数和动态响应特性的其他控制器相比,所提出的控制器可以更好地提高动态响应。此外,通过特征值分析测试了各种系统配置的鲁棒性和稳定性。

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