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Performance analysis of voltage regulated inverter for FLC based PV-wind hybrid power system with real time data

机译:基于FLC的光伏-风混合动力系统实时数据调压逆变器性能分析

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The sun and wind based generation are well-thoroughly considered to be alternate source of green power generation which can mitigate the power demand issues. As sun powered and wind power advancements are entrenched and the infiltration of these Renewable Energy Sources (RES) into to network is expanding dynamically, testing errand is to keep up the voltage and frequency of the power generated from RES consistent as they specifically relies upon environmental conditions. So as to outline a legitimate control and to harness power from RES the learning of natural conditions for a specific area is fundamental. With this fundamental information of the environmental conditions, a suitable Photovoltaic and Wind power generations can be chosen to extract maximum power from the conditions. Fuzzy Logic Controller (FLC) based Maximum Power Point Tracking (MPPT) controlled boost converter are utilized for viable operation and to keep DC voltage steady at desired level. The control scheme of the inverter is intended to keep the load voltage and frequency of the AC supply at constant level regardless of progress in natural conditions and burden. A Simulink model of the proposed Hybrid system with the MPPT controlled Boost converters and Voltage regulated Inverter for stand-alone application is developed in MATLAB R2015a, Version 8.5.0. The ongoing information of Wind Speed and Solar Irradiation levels are recorded at BITS-Pilani, Hyderabad Campus utilizing climate observing framework introduced at the area the performance of the voltage regulated inverter under constant and varying linear, non-linear AC load with the real time data of the solar irradiation and wind speed as input is analyzed. The investigation shows that the magnitude of load voltage and frequency of the load voltage is maintained at desired level by the proposed inverter control logic.
机译:完全基于太阳和风的发电被认为是绿色发电的替代来源,可以减轻电力需求问题。随着太阳能和风能的发展日趋牢固,这些可再生能源(RES)向网络的渗透正在动态扩大,因此,测试任务是保持RES产生的电压和频率一致,因为它们特别依赖于环境条件。为了概述合理的控制并利用RES的力量,了解特定区域的自然条件至关重要。利用有关环境条件的基本信息,可以选择合适的光伏和风力发电来从这些条件中提取最大功率。基于模糊逻辑控制器(FLC)的最大功率点跟踪(MPPT)控制的升压转换器用于可行的操作,并将直流电压稳定在所需水平。逆变器的控制方案旨在将交流电源的负载电压和频率保持在恒定水平,而不管自然条件和负荷如何变化。在MATLAB R2015a版本8.5.0中,开发了所提出的混合系统的Simulink模型,该系统具有MPPT控制的Boost转换器和调压逆变器,用于独立应用。在海得拉巴校园的BITS-Pilani,利用气候观测框架记录了风速和太阳辐射水平的持续信息,该框架在该地区引入了调压逆变器在恒定和变化的线性,非线性AC负载下的性能以及实时数据。分析了太阳辐射和风速的输入。研究表明,所提出的逆变器控制逻辑将负载电压的幅度和负载电压的频率保持在所需的水平。

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