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Power optimization for a variable-speed stall-regulated wind-turbine using scalar control

机译:使用标量控制的变速失速调节式风力发电机功率优化

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摘要

This paper presents the power optimization for a stall-regulated wind turbine with a variable-speed concept, using scalar control approach. To optimize the power under low wind speed velocity, speed regulation was adapted. In this regulation, speed needs to be controlled at the optimum points by keeping the power coefficient at the peak curve and by maintaining the tip speed ratio at optimal value. To achieve this, the conventional method of closed-loop scalar control was developed and then compared with the cascade-loop scalar control. The complete proposed system was developed by using Matlab/Simulink Software. The results showed that both scalar control methods could regulate the speeds, hence able to optimize the power at each wind speed under low wind speed velocity. However, cascade-loop scalar control method performed a better result compared to the conventional one.
机译:本文采用标量控制方法,介绍了具有变速概念的失速调节型风力发电机的功率优化。为了在低风速下优化功率,对速度调节进行了调整。在这种调节中,需要通过将功率系数保持在峰值曲线并将尖端速度比保持在最佳值,来将速度控制在最佳点。为此,开发了常规的闭环标量控制方法,然后将其与级联环标量控制进行了比较。完整的建议系统是使用Matlab / Simulink软件开发的。结果表明,两种标量控制方法均可以调节速度,因此能够在低风速下优化每个风速下的功率。然而,与传统方法相比,级联环路标量控制方法的效果更好。

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