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Advanced Type-2 fuzzy logic-based pitch-angle control strategy for wind energy system

机译:基于高级Type-2模糊逻辑的风能系统桨距角控制策略

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In general, pitch-angle controller regulates the generator output power when the wind speed exceeds the rated wind turbine speed. Besides this, it can also be employed to stabilize the wind energy system rotor speed during the transient disturbances. In this article, therefore, a logical pitch-angle controller strategy (in power and speed control modes) has been developed and an interval Type-2 fuzzy logic technique is proposed to design the controller. To evaluate the effectiveness of the Type-2 fuzzy logic-based pitch-angle controller, the simulations have been carried out for severe network faults and fluctuating wind conditions, and the results are compared with conventional proportional-integral and fuzzy logic controller (called as Type-1 fuzzy logic controller). Moreover, some key factors that affect the transient stability of wind generator have also been investigated. The electrical torque and mechanical torque versus rotor speed results are obtained under different pitch-angle conditions, and the concept of stable and unstable electrical-mechanical equilibrium points is established.
机译:通常,当风速超过风力涡轮机的额定转速时,桨距角控制器会调节发电机的输出功率。除此之外,它还可以用于在瞬态扰动期间稳定风能系统的转子速度。因此,在本文中,开发了一种逻辑的俯仰角控制器策略(在功率和速度控制模式下),并提出了一种区间2型模糊逻辑技术来设计控制器。为了评估基于Type-2模糊逻辑的桨距角控制器的有效性,对严重的网络故障和风况波动进行了仿真,并将结果与​​常规比例积分和模糊逻辑控制器(称为1型模糊逻辑控制器)。此外,还研究了影响风力发电机瞬态稳定性的一些关键因素。在不同的桨距角条件下获得了电转矩和机械转矩对转子速度的结果,并建立了稳定和不稳定的机电平衡点的概念。

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