Novel technique to smooth power output of a wound rotor induction generator based wind turbine

Helarisi Abeywardena, A. Atputharajah, J. Ekanayake
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引用次数: 5

Abstract

High penetration of wind power is hindered by the variability and uncontrollability of wind power output. Many research publications already proposed solutions using energy storage devices. However due to capital and maintenance cost, real applications of energy storage are limited. Wind turbines employing wound rotor induction generators where either rotor resistance is controlled or a voltage is injected to the rotor are already in existence. This paper investigates a novel method where an external controllable impedance is added to the rotor of a wound rotor induction generator based wind turbines. Varying rotor impedance contributes to control the output power of the wind turbine, in four ways by changing (i) torque speed characteristic, (ii) power extraction from the wind, (iii) kinetic energy in the turbine inertia and (iv) electrical losses. The complete rotor impedance control was developed and studied using PSCAD/EMTDC and MATLAB simulation packages. Results confirmed that the controllability of the wind farm is increased using rotor impedance control technique. Finally a time domain study was performed in simulation and it showed that the output power of the wind farm was kept at constant while fluctuating natural wind speed input was given.
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基于绕线转子感应发电机的风力发电机组平稳输出功率的新技术
风电输出的可变性和不可控性阻碍了风电的高渗透。许多研究出版物已经提出了使用储能设备的解决方案。然而,由于资金和维护成本的原因,储能的实际应用受到限制。风力涡轮机采用绕线转子感应发电机,其中转子电阻控制或电压注入转子已经存在。本文研究了在绕线转子感应发电机转子上增加外部可控阻抗的新方法。改变转子阻抗有助于控制风力发电机的输出功率,通过四种方式改变(i)转矩速度特性,(ii)从风中提取功率,(iii)涡轮机惯性中的动能和(iv)电损耗。利用PSCAD/EMTDC和MATLAB仿真软件包开发并研究了完整的转子阻抗控制系统。结果表明,采用转子阻抗控制技术可以提高风电场的可控性。仿真结果表明,在给定波动自然风速输入时,风电场输出功率保持恒定。
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