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Maximizing wind energy production with the multi-unit optimization method

机译:利用多单元优化方法最大化风能产量

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摘要

Nowadays, wind energy is becoming an attractive source of clean energy. However, this type of power source is subject to power reductions due to losses in wind energy conversion system and to frequently changes in wind velocity. Many researches are turning to develop real-time power optimization techniques in order to maximize wind power production. In this paper, the multi-unit optimization method is used to maximize in real-time the power of a wind energy conversion system (WECS) composed of two wind turbines with permanent magnet synchronous generators (PMSG). The performance of the proposed method is compared to the one obtained from the application of the perturbation-observation (PO) method. The simulation results show a faster convergence of the multi-unit optimization method to the optimal operational point without any oscillation around this point. The multi-unit optimization method also showed a better response than the PO method to rapid changes in wind velocity.
机译:如今,风能正成为一种有吸引力的清洁能源。然而,由于风能转换系统中的损失以及风速的频繁变化,这种类型的电源会受到功率降低的影响。为了使风力发电最大化,许多研究正在转向开发实时功率优化技术。在本文中,多单元优化方法用于实时最大化由两台带有永磁同步发电机(PMSG)的风力涡轮机组成的风能转换系统(WECS)的功率。将该方法的性能与通过摄动观测(PO)方法获得的方法进行了比较。仿真结果表明,多单元优化方法可以更快地收敛到最佳工作点,而该点附近不会出现任何振荡。与PO方法相比,多单元优化方法对风速快速变化也显示出更好的响应。

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