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A modular control design for optimum harmonic compensation in micro-grids considering active and reactive power sharing

机译:考虑有功和无功共享的模块化控制设计,可在微电网中实现最佳谐波补偿

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The core issues with Distributed Generation (DG) systems of today are the insertion of power quality threats, harmonic distortions to the main stream power system and inefficient power sharing leading to power fluctuation problem. This paper effectively sorts out the causes of power fluctuation in islanded mode of operation of micro-grids and presents an effective method for their optimum compensation. MATLAB/SIMULINK has been employed to simulate a distributed generation system, essentially a fuel cell based micro-grid. Sinusoidal Pulse Width Modulation (SPWM) technique for DC/AC conversion is well used. Droop control model, has been optimized to ensure optimum power sharing, in which output frequency and voltage of micro-source are controlled by droop and boost equations. This type of modular approach is of immense importance in reducing the system level harmonic content to a significant extent thereby maintaining standard power delivery to the distributed loads in accordance with IEEE standards.
机译:当今的分布式发电(DG)系统的核心问题是电能质量威胁的插入,主流电源系统的谐波失真以及效率低下的功率共享,从而导致功率波动问题。本文有效地梳理了微电网孤岛运行模式中功率波动的原因,并提出了一种有效的微电网补偿方法。 MATLAB / SIMULINK已被用于模拟分布式发电系统,本质上是基于燃料电池的微电网。用于DC / AC转换的正弦脉冲宽度调制(SPWM)技术已得到很好的使用。下垂控制模型已经过优化,以确保最佳的功率共享,其中微源的输出频率和电压由下垂和升压方程控制。这种类型的模块化方法在很大程度上降低系统级谐波含量,从而保持符合IEEE标准的标准功率输送至分布式负载的过程中,具有极其重要的意义。

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