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Real-time maximized power generation of vertical axis wind turbines based on characteristic curves of power coefficients via fuzzy pulse width modulation load regulation

机译:基于模糊脉冲宽度调制负载调节的功率系数特性曲线的实时最大功率产生垂直轴风力涡轮机

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The efficiency of power generation is strongly dependent on wind speeds and rotational speeds of vertical axis wind turbines (VAWTs) over time. The efficiency is determined by the characteristic curves of power coefficients vs. tip speed ratios. In this work, the rotations of VAWTs can be tightly managed at the angular speed of the optimal tip speed ratio in order to yield the maximum mechanical work in a wide range of wind speeds, all the time. The maximized power generation of VAWTs is systematically obtained by a fuzzy pulse width modulation load regulation of power generation based characteristic curves of power coefficients. Regulated hybrid VAWTs are analytically and experimentally investigated to illustrate the significant improvement of power generation, compared with another traditional hybrid VAWT under varying low speed wind conditions. It is confirmed that the energy production of 16.50 Wh from the controlled VAWT is significantly higher (by 57.48%) than the 10.48 Wh from the uncontrolled VAWT in open field conditions during a testing day. In experimenting with the hybrid VAWT in a real working situation, the proposed methodology can be generalized for real-time implementation in maximizing the power generation of other VAWTs at a wind farm. (C) 2019 Elsevier Ltd. All rights reserved.
机译:发电效率强烈地取决于垂直轴风力涡轮机(瓦文)随时间的风速和转速。通过功率系数与尖端速度比的特征曲线确定效率。在这项工作中,可以以最佳尖端速度比的角速度紧密地管理峰的旋转,以便一直在各种风速中产生最大机械工作。通过基于功率系数的基于发电特性曲线的模糊脉冲宽度调制负载调节系统地系统地获得峰的最大化发电。在分析和实验研究中,调节的杂交甩爪在不同的低速风条件下的另一种传统的混合VAWT相比,对发电的显着改善。确认,来自受控VAWT的16.50WH的能量产生比在测试日期间的开放场条件中的不受控制的VAWT中的10.48WH显着更高(57.48%)。在实验中的混合VAWT在实际工作情况下,可以推广所提出的方法,以便实时实施在风电场上最大化其他盗贼的发电。 (c)2019 Elsevier Ltd.保留所有权利。

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