Swarm grids - Innovation in rural electrification

Access to clean and affordable energy is a prerequisite for human development. In order to achieve access to sustainable energy for all innovation in rural electrification is needed. Decentralized renewable energy technologies in form of Solar Home Systems and Mini-grids possess the potential of ele...

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Main Author: Hollberg, Philipp
Format: Others
Language:English
Published: KTH, Energisystemanalys 2015
Subjects:
SHS
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-172846
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spelling ndltd-UPSALLA1-oai-DiVA.org-kth-1728462015-10-21T05:01:16ZSwarm grids - Innovation in rural electrificationengHollberg, PhilippKTH, Energisystemanalys2015Swarm gridsRural electrificationEnergy modellingSHSMini-gridsAccess to clean and affordable energy is a prerequisite for human development. In order to achieve access to sustainable energy for all innovation in rural electrification is needed. Decentralized renewable energy technologies in form of Solar Home Systems and Mini-grids possess the potential of electrifying a large number of rural households which cannot be connected to the national grid with local available energy sources. However, the deployment of Mini-grids is facing barriers such as a lack of private investments. By building on already existing SHSs swarm grids can enable households to trade electricity and use their excess electricity to supply additional loads. Swarm grids as an evolutionary bottom-up approach to electrification can overcome some of the obstacles regular Mini-grids face and play a vital role in improving electricity access. As part of this thesis a model has been developed which allows for simulating the electricity flow including line losses in swarm grids of any size on an hourly basis. The model facilitates the gaining of a better understanding for the impact global parameters (e.g. distance between households) have on the feasibility of swarm grids. A field trip to Bangladesh has been undertaken in order to obtain input data for simulating different cases in the model created. The simulations performed indicate that in a swarm grid the generated excess energy of SHSs which so far is wasted can supply the demand of households without SHS as well as commercial loads such as irrigation pumps. Overall the results point towards swarm grids being an innovation with the potential of improving rural electricity access by building on existing infrastructure. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-172846application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Swarm grids
Rural electrification
Energy modelling
SHS
Mini-grids
spellingShingle Swarm grids
Rural electrification
Energy modelling
SHS
Mini-grids
Hollberg, Philipp
Swarm grids - Innovation in rural electrification
description Access to clean and affordable energy is a prerequisite for human development. In order to achieve access to sustainable energy for all innovation in rural electrification is needed. Decentralized renewable energy technologies in form of Solar Home Systems and Mini-grids possess the potential of electrifying a large number of rural households which cannot be connected to the national grid with local available energy sources. However, the deployment of Mini-grids is facing barriers such as a lack of private investments. By building on already existing SHSs swarm grids can enable households to trade electricity and use their excess electricity to supply additional loads. Swarm grids as an evolutionary bottom-up approach to electrification can overcome some of the obstacles regular Mini-grids face and play a vital role in improving electricity access. As part of this thesis a model has been developed which allows for simulating the electricity flow including line losses in swarm grids of any size on an hourly basis. The model facilitates the gaining of a better understanding for the impact global parameters (e.g. distance between households) have on the feasibility of swarm grids. A field trip to Bangladesh has been undertaken in order to obtain input data for simulating different cases in the model created. The simulations performed indicate that in a swarm grid the generated excess energy of SHSs which so far is wasted can supply the demand of households without SHS as well as commercial loads such as irrigation pumps. Overall the results point towards swarm grids being an innovation with the potential of improving rural electricity access by building on existing infrastructure.
author Hollberg, Philipp
author_facet Hollberg, Philipp
author_sort Hollberg, Philipp
title Swarm grids - Innovation in rural electrification
title_short Swarm grids - Innovation in rural electrification
title_full Swarm grids - Innovation in rural electrification
title_fullStr Swarm grids - Innovation in rural electrification
title_full_unstemmed Swarm grids - Innovation in rural electrification
title_sort swarm grids - innovation in rural electrification
publisher KTH, Energisystemanalys
publishDate 2015
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-172846
work_keys_str_mv AT hollbergphilipp swarmgridsinnovationinruralelectrification
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