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A Novel Nature-Inspired Improved Grasshopper Optimization-Tuned Dual-Input Controller for Enhancing Stability of Interconnected Systems

机译:一种新型自然启发改进的蚱蜢优化调谐双输入控制器,可提高互联系统的稳定性

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Power system often experiences the problem of low-frequency electromechanical oscillations which leads the system to unstable condition. The problem can be corrected by implementing power system stabilizers (PSSs) in the excitation control system of alternator. This paper provides a novel and efficient approach to design an Improved Grasshopper Optimization Algorithm (IGOA)-based dual-input controller to damp the inter-area-mode power system oscillations. A three-fold optimization criterion has been formulated to calculate the optimum values of the controllers required for power system stability. The damping performance of the proposed controller is compared with conventional PSS and genetic algorithm-based controllers to validate the better performance of the proposed IGOA-based controller under various system loading conditions and disturbances.
机译:电力系统经常经历低频机电振荡的问题,这导致系统不稳定状态。 通过在交流发电机的激励控制系统中实现电力系统稳定器(PSS),可以校正问题。 本文提供了一种新颖而有效的方法来设计改进的蚱蜢优化算法(基于IGOA)的双输入控制器,以抑制区域间模式电力系统振荡。 已经配制了三倍优化标准以计算电力系统稳定性所需的控制器的最佳值。 将所提出的控制器的阻尼性能与传统的PSS和基于遗传算法的控制器进行比较,以在各种系统负载条件和干扰下验证所提出的基于IGOA的控制器的更好性能。

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