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Energy-Saving and Control of General Indoor Lighting Elements Fed from a Micro-Controlled Hybrid Power Generation System

机译:微型混合动力发电系统馈电的一般室内照明元件的节能和控制

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In this study, an off grid wind-solar hybrid power generation system was established at Afyon Kocatepe University to meet the energy need of lighting system of three different laboratories. It is planned to efficiently use the energy obtained from the designed hybrid power generation system. For this purpose, PIC 16F877 was used in controlling of lighting load of laboratories. The off-grid wind-solar hybrid power generation system consists of 570 W 24 V mono crystal solar panels, 600 W wind power generation system and accumulator groups. The load control circuit made with PIC 16F877 is designed in a manner that will control the lighting armature groups individually activate and deactivate the armature groups according to intensity of illumination in environment Besides, separately from generation and storing units constituting the hybrid power generation system, data in kWh are recorded by means of software in 10 seconds intervals. With the obtained power generation and storing data, analyzing of power consumption data when the load control system in active or passive position is made. According to analysis results, with controlling of lighting load and using of energy obtained from off grid wind-solar hybrid power generation system, 20.6% energy saving has been ensured.
机译:在这项研究中,阿菲永科卡特佩大学建立了离网风电混合发电系统,以满足三个不同实验室的照明系统的能源需求。计划有效利用从设计的混合发电系统获得的能量。为此,将PIC 16F877用于控制实验室的照明负载。离网风光互补发电系统由570 W 24 V单晶硅太阳能电池板,600 W风力发电系统和蓄电池组组成。 PIC 16F877制成的负载控制电路的设计方式是,控制照明电枢组根据环境中的光照强度分别激活和停用电枢组。此外,与构成混合动力发电系统的发电和存储单元不同,数据通过软件以10秒为间隔记录千瓦时(kWh)。利用获得的发电和存储数据,当负载控制系统处于主动或被动位置时分析功耗数据。根据分析结果,通过控制照明负荷和利用离网风光互补发电系统获得的能量,可确保节能20.6%。

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