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Cost-Saving Opportunities for Taylor’s University Daily Energy Consumption

机译:泰勒大学日常能耗的成本节约机会

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Solar energy is a renewable energy abundant throughout the year in a tropical weather country like Malaysia. This paper investigates the viability of using solar PV systems as a cost-saving measure to supply electricity for Taylor’s University (TU) daily energy usage. Experimental values were compared with theoretical values and analyzed in this paper. In this experiment, four photovoltaic (PV) panels connected in parallel were linked to a maximum power point tracking (MPPT) charge controller acting as a voltage regulator. A lead-acid battery was also coupled to the controller that acts as an energy storage to store the harvested solar energy from PV panels and discharge it in electricity. Temperature sensors connected to an Arduino UNO were placed at different locations on the solar panels to monitor for irregularities in the temperature of the panels. The amount of electricity produced was calculated using the data obtained. The results showed that using a larger PV system will generate much more electricity and create a high return on investment (ROI) if the solar panels absorbed sunlight under good weather conditions, thus bringing forward a potential solution to reduce TU’s electricity consumption.
机译:太阳能是一年中的可再生能源,在马来西亚等热带天气国家。本文调查了利用太阳能光伏系统作为为泰勒大学(TU)日常能源用电供电的节省成本节省措施的可行性。将实验值与理论值进行比较并在本文中分析。在该实验中,并联连接的四个光伏(PV)面板与作用作电压调节器的最大功率点跟踪(MPPT)电荷控制器连接。铅酸电池也耦合到控制器,该控制器充当能量存储器,以将收获的太阳能从PV面板存储并将其放电电力。连接到Arduino UNO的温度传感器被放置在太阳能电池板上的不同位置,以监测面板温度的不规则性。使用所获得的数据计算所产生的电量。结果表明,如果太阳能电池板在良好的天气条件下吸收了阳光,则使用较大的光伏系统会产生更多的电力,并在投资上产生高度的投资回报(ROI),从而引发潜在的解决方案来降低TU的电力消耗。

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