基于虚拟惯性时间常数和模糊逻辑控制的风电场电力系统协调控制

Qunying Liu, Yongda Si, X. Huo, Shuheng Chen, Fan Zhang, Chang-Hua Zhang
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引用次数: 2

摘要

由于风力发电机组的非线性运行特性,传统的控制方法不能充分发挥其对系统频率的响应能力,导致风电并网后系统的频率特性变差。为此,本文提出了一种风电场协调控制方法。在风电场层面,提出了一种不同风速下的风力机组分组控制方法。不同的wtg采用不同的减载系数,提高了风力机的稳定性,避免了二次频率下降。在wtg水平上,计算风力机等效惯性时间常数,为控制方法提供理论依据。设计了一种基于自适应模糊控制的控制器,在频率响应的不同阶段动态改变控制系数,提高风电机组参与惯性调频阶段的主动输出,减小一次调频的静态误差。将所提出的控制策略的仿真模型应用于不同频率波动的仿真。结果表明,WTG并网后的频率响应明显改善,证明了所提方法的有效性和鲁棒性。
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Coordination Control Based on Virtual Inertial Time Constant and Fuzzy Logic control for Power System with Wind Farm
Due to the non-linear operating characteristics of wind turbines generation (WTG), traditional control methods cannot give full play to their ability to response the system frequency, resulting in poorer frequency characteristics of the system after wind power is connected to the grid. Therefore, this paper proposes a coordinated control method for wind farms. At the wind farm level, a method for grouping control of wind turbines under different wind speeds is proposed. Different WTGs use different load reduction coefficients, which improves the stability of wind turbines and avoids the second drop in frequency. At the level of WTGs, the equivalent inertial time constant of the wind turbine is calculated, which provides a theoretical basis for the control method. A controller based on adaptive fuzzy control is designed, which dynamically changes the control coefficient in different stages of frequency response, improves the active output of wind turbines participating in the inertial frequency modulation stage, and reduces the static error of primary frequency modulation. The simulation model of the proposed control strategy was applied to simulate different frequency fluctuations. The results show that the frequency response of the WTG after grid connection is significantly improved, proving the effectiveness and robustness of the proposed method.
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