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Distorted Waveform Balancing Using an Artificial Bee Colony (ABC) Based Optimal Control for Mitigating Total Harmonics in Single Phase Inverter

机译:使用基于人工蜂群(ABC)的最优波形失真波形平衡来减轻单相逆变器的总谐波

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摘要

The main objective of this paper is to reduce the total harmonics in a single phase voltage source inverter using Artificial Bee Colony (ABC) optimization technique for critical load applications. Single phase inverter is a non-linear load using power electronic components causing distortions in the load voltage and current wave patterns from the sinusoidal waveforms due to harmonics. The mapping state space model for a full bridge voltage source inverter was developed using output load resistance. An optimal ABC technique has been designed and optimized values are estimated using a full bridge voltage controlled inverter using Proportional Integral Algorithm. The MATLAB/SIMULINK tool and Experimental setup were implemented and their THD values were estimated. Also this ABC scheme is compared with the previous results such as PI Algorithm, Fuzzy logic controller and Neuro-fuzzy controllers. From the simulation and experimental results using ABC algorithm, it is observed that the total harmonics are mitigated considerably compared to previous results with respect to the power quality standards such as IEEE-519 and IEC 61000.
机译:本文的主要目的是使用人工蜂群(ABC)优化技术来降低关键负载应用中的单相电压源逆变器中的总谐波。单相逆变器是使用电力电子组件的非线性负载,由于谐波会导致正弦波形的负载电压和电流波形发生畸变。利用输出负载电阻建立了全桥电压源逆变器的映射状态空间模型。设计了一种最佳ABC技术,并使用全桥压控逆变器和比例积分算法估算了最佳值。实现了MATLAB / SIMULINK工具和实验设置,并估算了其THD值。还将这种ABC方案与先前的结果(例如PI算法,模糊逻辑控制器和神经模糊控制器)进行了比较。从使用ABC算法的仿真和实验结果可以看出,与以前的结果相比,就电能质量标准(例如IEEE-519和IEC 61000)而言,总谐波得到了很大的缓解。

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