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Power Quality Conditioning of PV-Wind Microgrid to Provide Harmonic Reactive Power Compensation using Series APF

机译:使用系列APF的光伏风微电网的电能质量调节,以提供谐波无功补偿

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Objectives: In this analysis, PV-Wind Microgrid with real time environmental conditions is compensated for harmonics and reactive power. Methods/Analysis: Microgrids suffer from many power quality problems which require harmonic and reactive power compensation being connected with different sources and loads. In this regard, initially a microgrid has been developed using the data from the weather monitoring system in BITS Pilani, Hyderabad Campus. Later compensation requirement has been identified and Series APF with its unique control is applied to provide power quality enhancement. Findings: The microgrid suitable for all practical conditions is developed to give an equivalent output of conventional 3 phase distribution system and the variations in the power flows causing power quality issues are observed when connected to dynamically varying reactive loads. By using Series APF in microgrid, these issues like voltage swells and sags are mitigated and thus the reactive power compensation is provided. The % THD of voltage harmonics in the microgrid is effectively improved using the novel control technique that has been implemented. Novelty/Improvement: Power quality improvement in microgrids using active power filter topology specifically in islanded mode, Identity Vector Template Generation Approach specifically towards harmonic compensation.
机译:目标:在此分析中,对具有实时环境条件的PV-Wind微电网进行了谐波和无功功率补偿。方法/分析:微电网存在许多电能质量问题,需要将谐波和无功功率补偿与不同的电源和负载连接。在这方面,最初使用海得拉巴校区BITS Pilani的天气监测系统数据开发了微电网。后来确定了补偿要求,并采用了具有独特控制功能的APF系列来提高电能质量。发现:开发了适用于所有实际条件的微电网,以提供常规三相配电系统的等效输出,并且当连接到动态变化的无功负载时,会观察到引起功率质量问题的功率流变化。通过在微电网中使用系列APF,可以缓解电压骤升和骤降等问题,从而提供无功补偿。使用已实现的新型控制技术可有效提高微电网中电压谐波的%THD。新颖性/改进:使用孤岛模式下的有源功率滤波器拓扑,专门针对谐波补偿的身份矢量模板生成方法,可提高微电网的电能质量。

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