基于Lyapunov的DFIG风力机稳定性和功率控制策略

Samyuktha Penta, Yamina Benhadda, Dr. K. Naga Sujatha
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引用次数: 0

摘要

本文提出了双馈感应发电机(DFIG)风力发电机组最大功率点跟踪馈源技术,该技术根据风力变化自适应调整比例系数,并与传统方法进行了比较。该方法采用三种控制律自适应调节比例增益以适应风速的变化。在第一控制律中,通过反馈线性化来确定预期的电转矩,这使得假设功率捕获系数和目标转子转速是即时确定的。第二个控制律使用基于李雅普诺夫的分析来确定功率捕获系数随风速的变化,第三个控制律建立所需的转子转速。由于这些控制原理,涡轮机的工作点向增加功率捕获系数的方向移动,导致转子转速在期望转速的方向上自适应调整。所提出的最大功率跟踪方法与扰动-观测策略的区别在于,它不需要包含抖动或扰动信号,并且即使在风速突然变化的情况下也能可靠地滑移最大功率点的轨迹,从而导致扰动-观测实践失败。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lyapunov based Control Strategy for DFIG based Wind Turbines to Enhance stability and Power
The Doubly Fed Induction Generators (DFIG) based wind turbine is fed with maximum power point tracking is presented in this paper in proposed technique the proportional coefficient tuned adaptively as per wind changes and compare with traditional approaches. This novel method uses three control laws to adjust the proportional gain adaptively to wind speed variations. The intended electrical torque is determined via feedback linearization in the first control law, which makes the assumption that the power capture coefficient and target rotor speed are instantly determined. The second control law uses a Lyapunov-based analysis to determine the power capture coefficient as per changes in wind speed, and the third control law establishes the required rotor speed. As a result of these control principles, the operating point of the turbine shifts in a direction that increases the power capture coefficient, leading the rotor speed to adaptively adjust in the direction of the desired speed. The proposed maximum power tracking method differentiates itself from the perturb-and-observe strategy by removing the need to include a dither or perturbation signal and reliably slipstram the trajectory of maximum power points even in the circumstance of a sudden change in wind velocity, which can cause the perturb-and-observe practice to fail.
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