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首页> 外文期刊>Journal of Physics: Conference Series >Large-eddy simulation study of wind farm active power control with a coordinated load distribution
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Large-eddy simulation study of wind farm active power control with a coordinated load distribution

机译:具有协调负载分布的风电场有源电力控制的大涡仿真研究

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In this paper, an active power control (APC) approach for wind farms is studied, for a case in which the wind turbines interact with each other aerodynamically through their wakes. We demonstrate that the structural loadings on the individual wind turbines can be coordinated to expand their lifetimes, while the wind farm production tracks a power reference signal. We propose an additional feedback control loop in order to adjust the distribution of the regulated power demands among the wind turbines, exploiting the non-unique solutions of APC for wind farms. The axial induction factor of each wind turbine is considered as a control input to influence the overall wind farm performance. The applicability of the controller is tested with a wind farm example consisting of 2×3 turbines with partial wake overlaps and detailed interactions with the atmospheric boundary layer, simulated with the PArallelized Large-eddy simulation Model (PALM). The results demonstrate the effectiveness of the proposed approach and point to some future studies that may improve and extend the performance.
机译:在本文中,研究了风电场的有源电力控制(APC)方法,用于风力涡轮机通过其醒来的空气动力学相互作用。我们证明各种风力涡轮机上的结构载荷可以协调以扩大其寿命,而风电场生产追踪功率参考信号。我们提出了一种额外的反馈控制回路,以便调整风力涡轮机中稳压功率需求的分布,利用APC为风电场的非独特解决方案。每个风力涡轮机的轴向感应系数被认为是影响整体风电场性能的控制输入。控制器的适用性用一个由2×3涡轮机组成的风电场示例,其中具有部分唤醒重叠和与大气边界层的详细相互作用,用并行化大涡模拟模型(Palm)模拟。结果表明,提出的方法的有效性和指向可能改善和延长业绩的一些未来研究。

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