Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea

The large-scale adoption of electric vehicles in the public sector is essential for achieving emission reduction targets for transportation. In particular, the replacement of buses with internal combustion engines, which travel long distances and produce massive greenhouse gas emissions, by their el...

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Main Authors: Dan-Bi Bak, Jae-Seok Bak, Sung-Yul Kim
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Sustainability
Subjects:
Online Access:http://www.mdpi.com/2071-1050/10/10/3386
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spelling doaj-c0c4990757ee4c6499d10a48146a59312020-11-24T21:27:41ZengMDPI AGSustainability2071-10502018-09-011010338610.3390/su10103386su10103386Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South KoreaDan-Bi Bak0Jae-Seok Bak1Sung-Yul Kim2Department of Electrical Energy Engineering, Keimyung University, 1095 Dalgubeol-daero, Daegu 42601, KoreaDepartment of Electrical Energy Engineering, Keimyung University, 1095 Dalgubeol-daero, Daegu 42601, KoreaDepartment of Electrical Energy Engineering, Keimyung University, 1095 Dalgubeol-daero, Daegu 42601, KoreaThe large-scale adoption of electric vehicles in the public sector is essential for achieving emission reduction targets for transportation. In particular, the replacement of buses with internal combustion engines, which travel long distances and produce massive greenhouse gas emissions, by their electric counterparts can drastically reduce emissions. A variety of electric buses with different power supply systems are currently available, and their performance, charging type, battery capacity, and operating environment are related parameters that must be addressed for their successful and massive adoption. For instance, the appropriate charging type of electric buses depends on conditions, such as the operating environment. In this study, we determined the optimum capacity of electric bus batteries by considering the electric bus range, battery depth of discharge, and deterioration cost while using ADVISOR, which is a MATLAB-based electric vehicle simulator. In addition, we assessed the energy consumed and charging time according to the operating environments of electric buses. Finally, an economic efficiency analysis allowed for determining the appropriated charging type for electric buses. By integrating these data and analyses, we propose a comprehensive plan for selecting the most appropriate charging type according to the operating environment of these electric vehicles. We expect that the proposed plan will contribute to the adoption of electric buses and achieve the greenhouse gas reduction targets set by South Korea.http://www.mdpi.com/2071-1050/10/10/3386public-sector transportationoperating environmentelectric buscharging typecharging infrastructure
collection DOAJ
language English
format Article
sources DOAJ
author Dan-Bi Bak
Jae-Seok Bak
Sung-Yul Kim
spellingShingle Dan-Bi Bak
Jae-Seok Bak
Sung-Yul Kim
Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
Sustainability
public-sector transportation
operating environment
electric bus
charging type
charging infrastructure
author_facet Dan-Bi Bak
Jae-Seok Bak
Sung-Yul Kim
author_sort Dan-Bi Bak
title Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
title_short Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
title_full Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
title_fullStr Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
title_full_unstemmed Strategies for Implementing Public Service Electric Bus Lines by Charging Type in Daegu Metropolitan City, South Korea
title_sort strategies for implementing public service electric bus lines by charging type in daegu metropolitan city, south korea
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2018-09-01
description The large-scale adoption of electric vehicles in the public sector is essential for achieving emission reduction targets for transportation. In particular, the replacement of buses with internal combustion engines, which travel long distances and produce massive greenhouse gas emissions, by their electric counterparts can drastically reduce emissions. A variety of electric buses with different power supply systems are currently available, and their performance, charging type, battery capacity, and operating environment are related parameters that must be addressed for their successful and massive adoption. For instance, the appropriate charging type of electric buses depends on conditions, such as the operating environment. In this study, we determined the optimum capacity of electric bus batteries by considering the electric bus range, battery depth of discharge, and deterioration cost while using ADVISOR, which is a MATLAB-based electric vehicle simulator. In addition, we assessed the energy consumed and charging time according to the operating environments of electric buses. Finally, an economic efficiency analysis allowed for determining the appropriated charging type for electric buses. By integrating these data and analyses, we propose a comprehensive plan for selecting the most appropriate charging type according to the operating environment of these electric vehicles. We expect that the proposed plan will contribute to the adoption of electric buses and achieve the greenhouse gas reduction targets set by South Korea.
topic public-sector transportation
operating environment
electric bus
charging type
charging infrastructure
url http://www.mdpi.com/2071-1050/10/10/3386
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