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Dynamic wake tracking using a cost-effective LiDAR and Kalman filtering: Design, simulation and full-scale validation

机译:使用具有成本效益的LIDAR和卡尔曼滤波的动态唤醒跟踪:设计,仿真和满量程验证

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Wind turbines in a wind farm typically operate in the wake of other turbines, inevitably leading to a power loss and enhanced structural degradation of turbines downstream. Knowledge of the wake characteristics such as position and magnitude is valuable for optimising wind farm operations. An expensive multi-beam scanning Light Detection And Ranging system (LiDAR) can easily track and characterise the wake; however, this task is non-trivial for a cost-effective LiDAR with solely a few fixed laser beams. Therefore, this paper presents a dynamic wake tracking algorithm well-suited for a cost-effective LiDAR. The proposed algorithm estimates the lateral and vertical wake-centre positions by exploiting the wake meandering dynamics and Kalman filtering. Numerical simulation results showed that the wake tracking performance by the proposed method was remarkably successful in the low turbulent wind field, and robust to any changes in the vertical mean wind shear. Similarly, in full-scale validation, the proposed algorithm using a fixed beam LiDAR demonstrated its reliable wake tracking capability that surprisingly was as good as traditional methods based on a multi-beam scanning LiDAR. Thus, the proposed algorithm presents a cost-effective alternative to track the wake movement, which is particularly valuable for numerous applications, for example, closed-loop wake steering control.(c) 2021 Elsevier Ltd. All rights reserved.
机译:风电场中的风力涡轮机通常在其他涡轮机之后操作,不可避免地导致下游的涡轮机的功率损耗和增强的结构降解。了解诸如位置和幅度等唤醒特性对于优化风电场运营有价值。昂贵的多光束扫描光检测和测距系统(LIDAR)可以容易地跟踪和表征唤醒;然而,这项任务对于具有仅少量固定激光束的具有成本效益的激光雷达,这项任务是非琐碎的。因此,本文介绍了一个适用于经济高效的激光雷达的动态唤醒跟踪算法。所提出的算法通过利用唤醒蜿蜒动态和卡尔曼滤波来估计横向和垂直唤醒中心位置。数值模拟结果表明,在低湍流风场中,所提出的方法的唤醒跟踪性能显着成功,对垂直平均风剪的任何变化具有鲁棒。类似地,在满量程验证中,使用固定光束LIDAR的所提出的算法证明了其可靠的唤醒跟踪能力,其令人愉快地与基于多光束扫描激光雷达的传统方法一样好。因此,所提出的算法呈现出追踪唤醒运动的经济有效的替代方案,这对于许多应用特别有价值,例如闭环唤醒转向控制。(c)2021 Elsevier Ltd.保留所有权利。

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