研究目的
To propose a novel dual battery storage system for the optimal use of the PV system/energy, formulate the problem in the form of a mathematical model, devise a cost function for effective cost calculation, present an optimal cost analysis for the effective use of PV energy, and apply real-time data of a solar PV and the demand profile collected from the user to the proposed approach with United Kingdom (UK) tariff incentives.
研究成果
The proposed dual battery with the solar PV system resulted not only in an uninterrupted supply, but also resulted in a good profit margin. The consequences of the comprehensive analysis of the proposed scheme over the conventional schemes, i.e., without the use of PV or the storage system, resulted in net savings, in addition to satisfying energy demands. The statistical analysis of import and export of power, and the energy storage presented in this study, favor the proposed methodology.
研究不足
The capital cost of implementing a dual battery system is higher than conventional approaches, but it is offset by the uninterrupted supply provided at a low cost and the net profit generated.
1:Experimental Design and Method Selection:
The study proposes a dual battery storage system coupled with a solar PV system and a low voltage grid, benefiting from the feed-in tariff (FIT) policy. A mathematical model and a cost function are devised for effective cost calculation.
2:Sample Selection and Data Sources:
Real-time data of a solar PV taken from the owner and the demand profile collected from the user is applied to the proposed approach, with United Kingdom (UK) tariff incentives.
3:List of Experimental Equipment and Materials:
The equipment and materials used for the flexible storage system include PV modules, PV-inverters, a battery-inverter, a battery, a frame on the roof, cables, and outlets.
4:Experimental Procedures and Operational Workflow:
The system works in a loop by charging one system from the solar PV for one day, and discharging the other system. Power is exported to the grid when the solar PV generates an excess amount; batteries are utilized during the peak hours, and power is purchased when the demand is not met by the batteries, or when the demand is higher than the generation.
5:Data Analysis Methods:
An optimal cost analysis is presented for the effective use of PV energy. The statistical analysis of the scheme was examined for buying, selling or reserving the power for 365 days.
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