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Active and Reactive Power Control of DFIG using Optimized Fractional Order-PI Controller

机译:DFIG使用优化的分数阶PI控制器的主动和无功控制

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Doubly-fed induction generators (DFIG) are widely in wind farms due to their ability to run at variable speed. Researchers are keen to overcome the implications of unbalanced wind energy on its active and reactive power output using bidirectional power flow pulse width modulation (PWM) converters. These converters incorporate slip power recovery methodology for regulating the power recovered from the wound rotor of the induction machine, or the power flow from the grid to convertors. This research paper has proposed a fractional-order calculus-based control mechanism for an optimized operation of proportional-integral controllers operated in fractional order domain in pulse width modulation converters for the output power regulation. A genetic algorithm is used to optimize the gains of this fractional-order proportional-integral controller. The proposed scheme helps in overcoming the transients and non-linearities occurring in the electrical grid due to variable wind speed. The time-domain analysis of the doubly-fed induction generator is expressed using an appropriate fitness function. A comparative analysis between conventional proportional-integral and fractional-order proportional-integral controllers tuned using pole-placement and genetic algorithm respectively confirms the efficiency of later technique by showing the reduced steady-state error of 1.44%, 0.63% and 0.11% for active power, reactive powers, and DC-link voltage, respectively.
机译:由于它们以变速运行的能力,双馈诱导发电机(DFIG)广泛地在风电场中。研究人员热衷于使用双向动力流量脉冲宽度调制(PWM)转换器来克服不平衡风能对其主动和无功功率输出的影响。这些转换器包含滑动功率回收方法,用于调节从感应机的缠绕转子恢复的功率,或者从电网到转换器的电力流动。该研究涉及一种基于分数计算的基于计算的控制机制,用于在脉冲宽度调制转换器中的分数阶域中采用的比例积分控制器的优化操作,用于输出功率调节。遗传算法用于优化该分数比例积分控制器的增益。所提出的方案有助于克服由于变量风速而在电网中发生的瞬态和非线性。使用适当的健身功能表示双馈感应发生器的时域分析。使用极点和遗传算法调谐的传统比例积分和分数比例积分控制器之间的比较分析分别通过表示有效的稳态误差为1.44%,0.63%和0.11%的稳态误差来证实更高技术的效率功率,无功功率和直流链路电压。

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