惯性
控制理论(社会学)
补偿(心理学)
涡轮机
订单(交换)
计算机科学
工程类
物理
经济
航空航天工程
心理学
经典力学
控制(管理)
财务
人工智能
精神分析
作者
Peijie Wang,Jing Long Bu,D H Zhang,Hailong Su,Haiyang Li,Bin Yi
标识
DOI:10.70114/acmsr.2025.2.1.p319
摘要
The wind turbine dynamic simulation system enables the transfer of complex and challenging field tests to a controlled laboratory environment, making it widely applicable for wind turbine equipment testing and wind power strategy validation. However, when simulating real wind turbines, the system requires inertia compensation. During the execution of command reception and dispatch, the system is affected by fractional-order time delay, leading to an acceleration deviation component in the dynamic simulation process and resulting in speed fluctuation issues. To address this problem, this paper proposes an inertia compensation strategy for the wind turbine dynamic simulation system based on fractional-order time delay deviation suppression. First, a mathematical model of the wind turbine dynamic simulation system is established to analyze the existing acceleration deviation component and abnormal speed fluctuation in conventional inertia compensation strategies. Second, a deviation suppressor is designed based on the zero-pole placement principle. Finally, the stability of the system with the suppressor is verified, and a simulation model is constructed to demonstrate the effectiveness of the proposed method
科研通智能强力驱动
Strongly Powered by AbleSci AI