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首页> 外文期刊>IEEE Transactions on Industry Applications >Approximation to Frequency Control Capability of a DFIG-Based Wind Farm Using a Simple Linear Gain Droop Control
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Approximation to Frequency Control Capability of a DFIG-Based Wind Farm Using a Simple Linear Gain Droop Control

机译:使用简单的线性增益下垂控制对基于DFIG的风电场的频率控制能力的近似

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摘要

In the literature, many droop control loops have been proposed to enhance the frequency control capability of the wind farm (WF) when a large frequency disturbance occurs. However, some loops are not feasible to be implemented in the dynamic equivalent model (DEM) of the WF. The kinetic energy (KE)-based droop control loop is an example. The droop gain of this loop is expressed as a quadratic function of the wind turbine (WT) rotor speed. However, it is not feasible to implement a nonlinear function in DEM of WF. Therefore, in this study, a new linear-gain droop control loop is proposed for the doubly fed induction generator-based WF. In the proposed control loop, the droop gain is a linear function of the WT rotor speeds. By selecting the proper coefficients of the linear function, the proposed linear droop gain can achieve a good approximation to the quadratic droop gain. The performance of the proposed droop control loop is demonstrated based on three initial conditions. To verify the responses of system frequency and WF power output, four indices are developed. The simulation results demonstrate that the proposed linear-gain droop control loop is capable of approximating closely to the KE-based droop control loop.
机译:在文献中,已经提出了许多下垂控制环,以提高风电场(WF)的频率控制能力,当发生大的频率扰动时。然而,在WF的动态等效模型(DEM)中,有些环是不可行的。基于动能(KE)的下垂控制回路是一个例子。该环的下垂增益被表示为风力涡轮机(WT)转子速度的二次函数。然而,在WF的DEM中实施非线性函数是不可行的。因此,在本研究中,提出了一种新的线性增益下垂控制回路,用于基于双馈感应发生器的WF。在所提出的控制回路中,下垂增益是WT转子速度的线性函数。通过选择线性函数的适当系数,所提出的线性下垂增益可以实现与二次下垂增益的良好近似。基于三个初始条件来说明所提出的下垂控制回路的性能。为了验证系统频率和WF功率输出的响应,开发了四个指标。仿真结果表明,所提出的线性增益下垂控制回路能够近似于基于Ke的下垂控制回路。

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