IoT Based Enhanced Techno-Economic Feasibility of Photovoltaic-Battery System for a Household in Northern Cyprus

Muhammad Haseeb Rasool, Syed Mohammad Meesam Raza, M. Musadiq, Ahmed Zarrar
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Abstract

Renewable energy systems are gaining enormous importance worldwide due to their techno-economic feasibility with decreased carbon emissions. However, they are unreliable as they depend on varying resources, hence need energy storage system to increase reliability. The article analyzes the Internet of Things (IoT) based techno-economic feasibility of a Photovoltaic-Battery system for a house in Güzelyurt, Northern Cyprus. Moreover, integrating the renewable energy system with IoT increases the system's economic benefits and technical feasibility. IoT decreases the electricity cost of the system by 0.001 $/kWh in IoT enabled scenario for increasing the economic benefit (Scenario 2) with a 17.71% decrease in demand-supply fraction. In comparison, the demand-supply fraction increases by 8.14% with an increase in electricity cost by 0.004 $/kWh in the IoT-enabled scenario hence increasing the technical feasibility (Scenario 3). Scenario 3 also increases the minimum average state of charge, enhancing the battery life in a real-time application, making Scenario 3 best suited for a household in Northern Cyprus.
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北塞浦路斯一个家庭基于物联网增强的光伏电池系统技术经济可行性
可再生能源系统由于其技术经济可行性和减少碳排放而在世界范围内获得了巨大的重要性。然而,由于它们依赖于不同的资源,因此不可靠,因此需要储能系统来提高可靠性。本文分析了北塞浦路斯g zelyurt住宅光伏电池系统基于物联网(IoT)的技术经济可行性。此外,将可再生能源系统与物联网相结合,提高了系统的经济效益和技术可行性。在启用物联网的场景中,物联网将系统的电力成本降低了0.001美元/千瓦时,从而提高了经济效益(场景2),供需比例降低了17.71%。相比之下,在支持物联网的情况下,供需比例增加了8.14%,电力成本增加了0.004美元/千瓦时,因此增加了技术可行性(场景3)。场景3还增加了最小平均充电状态,提高了实时应用中的电池寿命,使场景3最适合北塞浦路斯的家庭。
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