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Optimal designing of static var compensator to improve voltage profile of power system using fuzzy logic control

机译:基于模糊逻辑控制的静态无功补偿器优化设计以改善电力系统的电压曲线

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摘要

The unbalanced and nonlinear characteristic of many loads connected to the power system can cause power quality problems, which in turn affects other consumers. Electric arc furnaces (EAF) are among the loads that cause major problems for system power quality. The use of static var compensator (SVC) is a way to reduce power quality problems caused by EAF. Since precise quantification of the SVC susceptance function can greatly influence the optimization of the reactive power, in this paper proposed using of a fuzzy logic controller to optimize the susceptance function to further improve the voltage profile and reduce SVC capacitance. The results from simulations show that the SVC based fuzzy method optimally determines the coefficient of the susceptance function. The results show that the proposed method with the proposed method has good performance in reduction of harmonic currents and improving the voltage profile of the system. So, the results clear that in case of EAF load, the SVC is capable of rapidly compensating its effect and improve the system power quality. By maintaining the bus voltage and eliminating voltage oscillations, the active power received is quickly stabilised and power oscillations are removed. Thus, power quality problems of EAF application is eliminated with application of optimized SVC based fuzzy method. In addition, the performance of the proposed method compared to mathematical methods in previous studies has been evaluated, which presents superiority of the proposed method in reducing voltage oscillations and reducing harmonic currents.
机译:连接到电力系统的许多负载的不平衡和非线性特性会导致电能质量问题,进而影响其他用户。电弧炉(EAF)是导致系统电源质量出现重大问题的负载之一。静态无功补偿器(SVC)的使用是减少由EAF引起的电能质量问题的一种方法。由于对SVC电纳函数的精确量化会极大地影响无功功率的优化,因此本文提出使用模糊逻辑控制器对电纳函数进行优化,以进一步改善电压曲线并减小SVC电容。仿真结果表明,基于SVC的模糊方法可以最优地确定电纳函数的系数。结果表明,所提出的方法在减少谐波电流和改善系统的电压分布方面具有良好的性能。因此,结果清楚地表明,在EAF负载的情况下,SVC能够快速补偿其影响并改善系统电源质量。通过保持总线电压并消除电压振荡,可以快速稳定接收到的有功功率,并消除功率振荡。因此,通过应用基于优化SVC的模糊方法消除了电炉应用的电能质量问题。此外,与以前的研究中的数学方法相比,该方法的性能已得到评估,这表明该方法在降低电压振荡和降低谐波电流方面具有优势。

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