Energy Loss Savings Using Direct Current Distribution in a Residential Building with Solar Photovoltaic and Battery Storage

Author:

Ollas PatrikORCID,Thiringer TorbjörnORCID,Persson MattiasORCID,Markusson Caroline

Abstract

This work presents a comparison of alternating current (AC) and direct current (DC) distribution systems for a residential building equipped with solar photovoltaic (PV) generation and battery storage. Using measured PV and load data from a residential building in Sweden, the study evaluated the annual losses, PV utilization, and energy savings of the two topologies. The analysis considered the load-dependent efficiency characteristics of power electronic converters (PECs) and battery storage to account for variations in operating conditions. The results show that DC distribution, coupled with PV generation and battery storage, offered significant loss savings due to lower conversion losses than the AC case. Assuming fixed efficiency for conversion gave a 34% yearly loss discrepancy compared with the case of implementing load-dependent losses. The results also highlight the effect on annual system losses of adding PV and battery storage of varying sizes. A yearly loss reduction of 15.8% was achieved with DC operation for the studied residential building when adding PV and battery storage. Additionally, the analysis of daily and seasonal variations in performance revealed under what circumstances DC could outperform AC and how the magnitude of the savings could vary with time.

Funder

Swedish Energy Agency

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference51 articles.

1. Bloomberg (2019). New Energy Outlook 2019, Bloomberg New Energy Finance (BNEF).

2. IEA (2018). 2018 Snapshot of Global Photovoltaic Markets, IEA PVPS TCP.

3. DC microgrids and distribution systems: An overview;Elsayed;Electr. Power Syst. Res.,2015

4. DC, come home: DC microgrids and the birth of the “enernet”;Patterson;IEEE Power Energy Mag.,2012

5. Ultra-Wide Voltage Gain Range Microconverter for Integration of Silicon and Thin-Film Photovoltaic Modules in DC Microgrids;Chub;IEEE Trans. Power Electron.,2021

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