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Research on Control System of High Power DFIG Wind Power System

机译:大功率双馈风力发电系统控制系统研究

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Compared with constant speed constant frequency wind turbine, variable speed constant frequency wind turbine has many advantages: higher efficiency of wind energy converting to electric power, absorbing gust energy, smoothly cutting into the network system, flexible connecting between wind turbine and network system and low operating noise. Currently the variable speed constant frequency technology has become one of the main development directions of wind power generation. A disturbance accommodating linear quadratic regulator (LQR) method was applied in pitch control system to achieve good performance. Based on the model of MW variable speed constant frequency wind turbine, this paper analyses three speed control methods, simulates corresponding characteristics of each method, and then gives discussions. On the condition of discussing and analyzing on simulation results and allowing for the characteristics of large power variable speed constant frequency wind turbine and its control system, this paper adopts power control closed-loop strategy to realize variable speed operating. At last, this paper designs a control system of MW variable speed constant frequency wind turbine, and takes sufficient experiments and long-time preliminary operation at a real wind farm, which validates the feasibility and practicability of varying speed control strategies on MW variable speed constant frequency wind turbine suggested in this paper.
机译:与恒速恒频风力发电机相比,变速恒频风力发电机具有许多优点:风能转换为电能的效率更高,吸收阵风能量,平滑地切入网络系统,风力发电机与网络系统之间的灵活连接以及低廉的成本。工作噪音。目前,变速恒频技术已经成为风力发电的主要发展方向之一。在变桨控制系统中采用了扰动适应线性​​二次调节器(LQR)的方法来获得良好的性能。本文以兆瓦级变速恒频风力发电机组模型为基础,分析了三种调速方法,模拟了每种方法的相应特性,并进行了讨论。在对仿真结果进行讨论和分析的前提下,考虑到大功率变速恒频风力发电机及其控制系统的特点,本文采用功率控制闭环策略来实现变速运行。最后,本文设计了一种中频变速恒频风力发电机的控制系统,并在实际的风电场中进行了充分的实验和长期的初步运行,验证了中频变速恒速变速控制策略的可行性和实用性。本文提出了变频风力发电机。

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