基于物联网的智能太阳能花水泵系统

B. H. Band, A. D. Ingole
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引用次数: 0

摘要

各国的电力需求日益增加,而现有的资源却远远不能满足这一需求。其原因是传统能源资源正在减少,可用资源有限。由于这些原因,太阳能发电是一种很有前途的替代品,它容易获得,无污染,使用寿命长。太阳能系统还为负载提供了更高的运行效率,并且太阳能电池板的成本最低。为了改进用于功率转换的开关技术,我们提出了一种由光伏板供电的智能花系统,可以提供独立的交流/直流负载。在这个系统中,太阳能电池板产生直流电,可以通过转换器转换成交流电,用于家庭、工业和农业应用。电池板的输出取决于太阳光线(太阳能)的方向,太阳能光伏电池将太阳能转化为有用的电能。本文的目的是开发基于标准电力电子电池的太阳能光伏发电系统,用于微工业、商业、家庭和农业应用。该系统能够提供挡风和防雨的保护,从而提高太阳能电池板的效率。由于直接暴露在太阳光线下,跟踪器比固定式跟踪器更容易发电。根据跟踪系统的地理位置,这一增幅可达25%。产生的输出电压可以用于各种目的,我们利用存储的能量通过物联网(IoT)来运行农业水泵。引文:Band, b.h., and Ingole, A. D.(2019)。基于物联网的智能太阳能花水泵系统。可再生能源发展趋势,5,229-236。DOI: 10.17737 / tre.2019.5.3.0098
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IoT Based Smart Solar Flower Water Pump System
The electric demand of the countries is increasing day by day and the available resources are quite insufficient to fulfill this demand. The reasons are that the conventional energy resources are diminishing and available with finite sources. Due to these reasons, the solar power is one of the promising alternatives that is easily available, pollution free and having higher operating life. The solar system also provides higher operating efficiency for the load, and the cost of the solar panel is minimum. To improve the switching technology used for the power conversion, we presented a smart flower system powered by photovoltaic panels that could supply standalone AC/DC load. In this system, solar panels produce a direct current, which can be converted into AC by the converter and used in home, industrial and agriculture applications. The output of the panels depends on the direction of sun's rays (solar energy), and the solar photovoltaic cell converts the solar energy into useful electrical energy. The aim of this paper is to develop the solar photovoltaic generation system based on a standard power electronics cell for micro industrial, commercial, home as well as agriculture applications. The proposed system is capable to provide protection from wind and rain, thereby the efficiency of the solar panels will increase. The generation of the electricity is more with trackers than stationary counterparts due to direct exposure to sun's rays. This increase can be as much as 25% depending upon the geographic location of the tracking system. The generated output voltage can be used for various purposes, and we used the store energy to run an agriculture water pump by using the internet of things (IoT).  Citation:  Band, B. H., and Ingole, A. D. (2019). IoT Based Smart Solar Flower Water Pump System. Trends in Renewable Energy, 5, 229-236. DOI: 10.17737/tre.2019.5.3.0098
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