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Optimal Real-Time Control of Wind Turbine During Partial Load Operation

机译:局部负荷运行期间风力涡轮机的最佳实时控制

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A wind turbine achieves its highest energy efficiency during partial load operation when it operates at the optimal tip speed ratio (TSR), thus the optimal power coefficient. In this paper, real-time controllers are developed to improve the performance of tracking the optimal TSR during partial load operation. Dynamic programming (DP) is first applied to determine the control actions that maximize wind energy capture. A DP-based real-time controller (DPRC) is then explored to overcome the high computational expense associated with DP, which limits DP to be an offline optimization algorithm. However, the DPRC is not robust against plant-model mismatch and model uncertainties. A gain-modified optimal torque controller (GMOTC) is subsequently designed as an alternative to the DPRC. The GMOTC applies internal Proportional-Integral technique to track a reference TSR, and adapts the reference TSR to the optimal TSR in real time to improve the controller robustness. The light detection and ranging technology is used to further strengthen the controller performance by providing reliable previewed wind speed measurements. Simulation results show that the DRPC generates more wind power than the standard torque controller (STC), while the GMOTC demonstrates a performance similar to that of the DRPC on wind power generation with much better robustness in the presence of modeling error. Fatigue loading on a wind turbine is another important issue that needs to be considered during control design. The analysis shows that both the DRPC and the GMOTC are comparable with the STC in generating variable torsional loads due to the torque commands.
机译:当风力涡轮机以最佳叶尖速比(TSR)进行操作(因此具有最佳功率系数)时,在部分负荷运行期间将实现最高的能源效率。本文中,开发了实时控制器以提高在部分负载运行期间跟踪最佳TSR的性能。首先应用动态编程(DP)来确定使风能捕获最大化的控制动作。然后,研究了基于DP的实时控制器(DPRC),以克服与DP相关的高计算量,这将DP限制为离线优化算法。但是,DPRC在应对工厂模型不匹配和模型不确定性方面并不强大。随后设计了增益修改的最佳扭矩控制器(GMOTC),以替代DPRC。 GMOTC应用内部比例积分技术来跟踪参考TSR,并实时将参考TSR调整为最佳TSR,以提高控制器的鲁棒性。光检测和测距技术用于通过提供可靠的预览风速测量值来进一步增强控制器性能。仿真结果表明,DRPC比标准转矩控制器(STC)产生更多的风力,而GMOTC在风力发电方面表现出与DRPC相似的性能,并且在存在建模误差的情况下具有更好的鲁棒性。风力涡轮机上的疲劳载荷是控制设计期间需要考虑的另一个重要问题。分析表明,由于扭矩指令,DRPC和GMOTC在产生可变扭转载荷方面均与STC相当。

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