Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas

Transit Oriented Development (TOD) areas are locations that have limited land area. Solar PV systems are planned to be installed in these areas to support electric vehicles such as e-scooters, electric cars, motorcycles, and buses. However, solar PV systems in general require a large land area. The...

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Main Authors: Syahindra Kianda Dhipatya, Ma’arif Samsul, Widayat Aditya Anindito, Fauzi Ahmad Fakhrul, Setiawan Eko Adhi
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/07/e3sconf_peee2021_02002.pdf
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spelling doaj-446212742ed3488e91aa7c2903ad6ec42021-01-26T08:19:10ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012310200210.1051/e3sconf/202123102002e3sconf_peee2021_02002Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) AreasSyahindra Kianda DhipatyaMa’arif Samsul0Widayat Aditya AninditoFauzi Ahmad FakhrulSetiawan Eko AdhiTropical Renewable Energy Center, Faculty of Engineering, Universitas IndonesiaTransit Oriented Development (TOD) areas are locations that have limited land area. Solar PV systems are planned to be installed in these areas to support electric vehicles such as e-scooters, electric cars, motorcycles, and buses. However, solar PV systems in general require a large land area. The purpose of this paper is to find out and compare the Performance Ratios (PR) of a solar PV system installed on the rooftop with a floating solar PV system installed on the lake to determine which solar PV system fits better for TOD areas. PR analysis uses two methods, PVSyst software simulation and is validated using mathematical calculations. The result of the PR of floating solar PV is 76.39% using PVSyst simulation and 80.24% using mathematical calculation. Meanwhile, the PR of rooftop solar PV is 82.69% using PVSyst simulation and 73.41% using mathematical calculation. The significant factors that influence PR value are the energy produced by the solar PV system, its losses, and albedo value of the reflector surface for bifacial solar PV. Albedo value has to be maximized in order to obtain a higher performance ratio value. Based on this study, both rooftop and floating PV systems are equally suitable for TOD areas.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/07/e3sconf_peee2021_02002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Syahindra Kianda Dhipatya
Ma’arif Samsul
Widayat Aditya Anindito
Fauzi Ahmad Fakhrul
Setiawan Eko Adhi
spellingShingle Syahindra Kianda Dhipatya
Ma’arif Samsul
Widayat Aditya Anindito
Fauzi Ahmad Fakhrul
Setiawan Eko Adhi
Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
E3S Web of Conferences
author_facet Syahindra Kianda Dhipatya
Ma’arif Samsul
Widayat Aditya Anindito
Fauzi Ahmad Fakhrul
Setiawan Eko Adhi
author_sort Syahindra Kianda Dhipatya
title Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
title_short Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
title_full Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
title_fullStr Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
title_full_unstemmed Solar PV System Performance Ratio Evaluation for Electric Vehicles Charging Stations in Transit Oriented Development (TOD) Areas
title_sort solar pv system performance ratio evaluation for electric vehicles charging stations in transit oriented development (tod) areas
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Transit Oriented Development (TOD) areas are locations that have limited land area. Solar PV systems are planned to be installed in these areas to support electric vehicles such as e-scooters, electric cars, motorcycles, and buses. However, solar PV systems in general require a large land area. The purpose of this paper is to find out and compare the Performance Ratios (PR) of a solar PV system installed on the rooftop with a floating solar PV system installed on the lake to determine which solar PV system fits better for TOD areas. PR analysis uses two methods, PVSyst software simulation and is validated using mathematical calculations. The result of the PR of floating solar PV is 76.39% using PVSyst simulation and 80.24% using mathematical calculation. Meanwhile, the PR of rooftop solar PV is 82.69% using PVSyst simulation and 73.41% using mathematical calculation. The significant factors that influence PR value are the energy produced by the solar PV system, its losses, and albedo value of the reflector surface for bifacial solar PV. Albedo value has to be maximized in order to obtain a higher performance ratio value. Based on this study, both rooftop and floating PV systems are equally suitable for TOD areas.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/07/e3sconf_peee2021_02002.pdf
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