The Role of Off-Grid Houses in the Energy Transition with a Case Study in the Netherlands

Author:

Quintero Pulido Diego F.,Ten Kortenaar Marnix V.,Hurink Johann L.ORCID,Smit Gerard J.M.ORCID

Abstract

Off-grid houses can be considered an important concept to increase the access to electricity throughout the world. Although there are quite some initiatives in place to improve the access to electricity, the implementation rate of practical solutions is far below the UN Sustainable Development Goal 7: Energy (SDG 7) + for 2030. This situation is most apparent in Sub-Saharan Africa, where the current trends of electricity access calculated by the World Bank indicate that this region will not be able to achieve the SDG 7 target. Another worldwide trend which may help to increase electricity access is that currently, a lot of renewable energy generation is realized locally in houses (especially Solar Photovoltaics (PV)). This paper reviews the recent developments to increase the access to electricity in the world and the implementation of off-grid houses in different scenarios. The focus here is on the different efforts to create off-grid houses considering their challenges on a macro and micro level. Moreover, potential research directions for technologies in off-grid houses are presented in more detail. For this, a case description of a possible off-grid house in the Netherlands is presented together with some initial simulations results for this case using solar PV, the Sea-Salt battery, and a Glycerol Fuel Cell. The simulations use the DEMkit software and the analysis is performed using measured house load data for a period in winter and in summer.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

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)

Reference46 articles.

1. Off-Grid Renewable Energy Solutions to Expand Electricity Access: An Opportunity Not To be Missedhttps://www.irena.org/-/media/Files/IRENA/Agency/Publication/2019/Jan/IRENA_Off-grid_RE_Access_2019.pdf

2. Energy Quality of Supply Work Stream (EQS WS) CEER Benchmarking Report 6.1 on the Continuity of Electricity and Gas Supplyhttps://www.ceer.eu/documents/104400/-/-/963153e6-2f42-78eb-22a4-06f1552dd34c

3. Net-Metering RES LEGAL Europehttp://www.res-legal.eu/search-by-country/netherlands/single/s/res-e/t/promotion/aid/net-metering-1/lastp/171/

4. Netherlands to Replace net Metering with New Scheme for Residential, Commercial PV—PV Magazine Internationalhttps://www.pv-magazine.com/2018/06/18/netherlands-to-replace-net-metering-with-new-scheme-for-residential-commercial-pv/

5. Towards Universal Electricity Access in Sub-Saharan Africa a Quantitative Analysis of Technology and Investment Requirements;Lucas,2017

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