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Genetic algorithm approach for efficiency maximization and power factor enhancement of a grid connected doubly fed induction generator

机译:并网双馈感应发电机效率最大化和功率因数提高的遗传算法

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摘要

Ensuring maximum efficiency of a DFIG automatically translates into the need for minimizing generator losses and maximizing active power extraction from the turbine. The goal of loss and reactive power minimization as well as maximum power tracking can be achieved by exercising proper control over DFIG rotor current. This means that the rotor current must be controlled with variation in wind speed. In this work, GA method is applied to determine rotor current references which yield maximum active power, minimum loss and minimum reactive power for a range of generator speed. The novelty of this work is the development of a simple method of DFIG efficiency and power factor control, using GA. Objective functions of output power, generator loss and reactive power have been created. GA toolbox of MATLAB has been used to maximize output power objective function while the other two functions have been minimized. Efficiency and power factor of the system has been computed after optimization to validate the effectiveness of the proposed technique.
机译:确保DFIG的最大效率自动转化为最小化发电机损耗和最大化从涡轮机提取有功功率的需求。可以通过对DFIG转子电流进行适当控制来实现损耗和无功最小化以及最大功率跟踪的目标。这意味着必须根据风速的变化来控制转子电流。在这项工作中,GA方法用于确定转子电流参考值,该参考值可在一定范围的发电机转速下产生最大有功功率,最小损耗和最小无功功率。这项工作的新颖之处在于使用GA开发了一种简单的DFIG效率和功率因数控制方法。已经创建了输出功率,发电机损耗和无功功率的目标函数。 MATLAB的GA工具箱已用于最大化输出功率目标函数,而其他两个函数已最小化。优化后已计算出系统的效率和功率因数,以验证所提出技术的有效性。

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