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      Optimal Sizing of Rooftop PV and Battery Storage for Grid-Connected Houses Considering Flat and Time-of-Use Electricity Rates

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      Energies
      MDPI AG

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          Abstract

          This paper investigates a comparative study for practical optimal sizing of rooftop solar photovoltaic (PV) and battery energy storage systems (BESSs) for grid-connected houses (GCHs) by considering flat and time-of-use (TOU) electricity rate options. Two system configurations, PV only and PV-BESS, were optimally sized by minimizing the net present cost of electricity for four options of electricity rates. A practical model was developed by considering grid constraints, daily supply of charge of electricity, salvation value and degradation of PV and BESS, actual annual data of load and solar, and current market price of components. A rule-based energy management system was examined for GCHs to control the power flow among PV, BESS, load, and grid. Various sensitivity analyses are presented to examine the impacts of grid constraint and electricity rates on the cost of electricity and the sizes of the components. Although the capacity optimization model is generally developed for any case study, a grid-connected house in Australia is considered as the case system in this paper. It is found that the TOU-Flat option for the PV-BESS configuration achieved the lowest NPC compared to other configuration and options. The optimal capacities of rooftop PV and BESS were obtained as 9 kW and 6 kWh, respectively, for the PV-BESS configuration with TOU-Flat according to two performance metrices: net present cost and cost of electricity.

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          Most cited references26

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          Promoting electric vehicle charging infrastructure considering policy incentives and user preferences: An evolutionary game model in a small-world network

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            Using electrical energy storage in residential buildings – Sizing of battery and photovoltaic panels based on electricity cost optimization

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              Economic Optimization of Component Sizing for Residential Battery Storage Systems

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                Author and article information

                Contributors
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                Journal
                ENERGA
                Energies
                Energies
                MDPI AG
                1996-1073
                June 2021
                June 13 2021
                : 14
                : 12
                : 3520
                Article
                10.3390/en14123520
                18ec084c-e07c-4ece-8bbd-e4bd34ee30b5
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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