• 제목/요약/키워드: Electric Charging Infrastructures

검색결과 8건 처리시간 0.016초

전기자동차 보급을 위한 농촌지역의 주유소 기반 급속 충전인프라 구축 방안 분석 (Analysis of Construction Plans of Rapid Charging Infrastructures based on Gas Stations in Rural Areas to Propagate Electric Vehicles)

  • 김솔희;김태곤;서교
    • 농촌계획
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    • 제21권1호
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    • pp.19-28
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    • 2015
  • As environmental concerns including climate change drive the strong regulations for car exhaust emissions, electric vehicles attract the public eye. The purpose of this study is to identify rural areas vulnerable for charging infrastructures based on the spatial distributions of the current gas stations and provide the target dissemination rates for promoting electric cars. In addition, we develop various scenarios for finding optimal way to expand the charging infrastructures through the administrative districts data including 11,677 gas stations, the number of whole national gas stations. Gas stations for charging infrastructures are randomly selected using the Monte Carlo Simulation (MCS) method. Evaluation criteria for vulnerability assessment include five considering the characteristic of rural areas. The optimal penetration rate is determined to 21% in rural areas considering dissemination efficiency. To reduce the vulnerability, the charging systems should be strategically installed in rural areas considering geographical characteristics and regional EV demands.

전기자동차 충전 인프라에서의 보안위협 및 보안요구사항 분석 (An Analysis of the Security Threats and Security Requirements for Electric Vehicle Charging Infrastructure)

  • 강성구;서정택
    • 정보보호학회논문지
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    • 제22권5호
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    • pp.1027-1037
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    • 2012
  • 지구 온난화에 대한 대응 노력으로 스마트그리드가 주목받고 있으며, 국내의 경우 정부는 CO2 배출량의 20%를 차지하고 있는 수송 분야를 대체하기 위한 노력으로 전기자동차 및 충전 인프라 구축을 확대하고 있다. 하지만 전기자동차 충전 인프라는 지능화를 위해 IT기술을 접목하고 있어 기존 IT기술이 가지고 있던 보안위협들을 그대로 상속받을 수 있다. 이로 인해 발생할 수 있는 보안 사고를 미연에 방지할 수 있도록 보다 안전한 전기자동차 충전 인프라 구축이 요구된다. 이에 본 논문은 전기자동차 충전 인프라에 대한 논리적 아키텍처를 제시하고 이를 바탕으로 발생 가능한 보안위협들을 식별하였다. 또한, 이러한 보안위협들을 대응하기 위한 보안요구사항을 분석 및 제시하였다.

전기자동차 주차 및 충전을 위한 지하주차장 계획연구 (Underground parking lot planning study for electric vehicle charging and parking)

  • 진경일;문진우
    • KIEAE Journal
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    • 제13권6호
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    • pp.39-44
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    • 2013
  • As the use of electric vehicles perspectively increases, infrastructures for charging car batteries need to be properly planned for satisfying new requirements. This study aimed at theoretically investigating the relative laws, size of existing parking lots, and diverse car sizes for suggesting parking places for electric vehicles. In addition, potential problems for changing existing parking lots to new parking lots for electric vehicles were thoroughly considered. Based on the problem recognition, the feasibility, in particular, of the change of existing parking place to new place equipped with electricity charging systems was investigated. The comprehensive reviews and surveys revealed that additional systems for charging electricity need to be developed to be suspended on the ceiling for existing parking lots in order to prevent changing current layout of the space. This system will alleviate the perspective problems when the charging systems are located on the floor such as contamination, electric shock, and damage by cars. Further study will be followed for testing performance of the suggested systems in the actual parking lots.

2020년 아파트의 전기자동차 수요예측 분석 연구 (Demand Forecasts Analysis of Electric Vehicles for Apartment in 2020)

  • 변완희;이기홍;이상혁;기호영
    • 한국ITS학회 논문지
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    • 제11권3호
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    • pp.81-91
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    • 2012
  • 최근 기후변화에 따른 위기감으로 인해 세계 각국은 화석연료의 자동차를 전기자동차로 대체하기 위한 노력을 기울이고 있다. 정부는 2020년까지 소형차의 10% 이상을 전기자동차 보급 목표로 설정하였고 '주택건설 기준 등에 관한 규정'을 개정하여 전기자동차 충전설비를 공동주택의 부대설비에 포함시키는 등 충전 인프라 구축에도 노력하고 있다. 공동주택에서 전기자동차의 충전 인프라 및 주차 공간 등의 확보는 전기자동차 보급에 있어 핵심이 되지만, 이들에 대한 합리적 용량 산정 등에 필요한 전기자동차의 수요예측 연구는 미미한 상태이다. 이를 위해 본 연구는 수도권의 공동주택 거주자(분양과 임대 구분)를 대상으로, 통계자료의 시계열분석과 선호도 결과를 이용하여 전기자동차 수요를 예측하였다. 그 결과 2020년 공동주택 거주자의 전기자동차 비율은 임대아파트의 경우 6~21%, 분양아파트는 21~39% 수준이며, 이들의 사용을 지원할 최대전력량은 1,000가구 1일 기준으로 임대아파트 4,200kwh, 분양아파트 7,800kwh로 예측되었다.

주유소 기반의 전기자동차 충전인프라 구축에 대한 취약지역 분석 (Analysis of Vulnerable Districts for Electronic Vehicle Charging Infrastructure based on Gas Stations)

  • 김태곤;김솔희;서교
    • 농촌계획
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    • 제20권4호
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    • pp.137-143
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    • 2014
  • Car exhaust emissions are recognized as one of the key sources for climate change and electric vehicles have no emissions from tailpipe. However, the limited charging infrastructures could restrict the propagation of electric vehicles. The purpose of this study is to find the vulnerable districts limited to the charging station services after meeting the goal of Ministry of Knowledge Economy(12%). We assumed that the charging service can be provided by current gas stations. The range of the vulnerable grades was determined by the accessibility to current gas stations and the vulnerable regions were classified considering the optimal number of charging stations estimated by the efficiency function. We used 4,827 sub-municipal divisions and 11,677 gas station locations for this analysis. The results show that most of mountain areas are vulnerable and the fringe areas of large cities generally get a good grade for the charging infrastructure. The gangwon-do, jeollanam-do, gyeongsangbuk-do, and chungcheongnam-do include more than 40% vulnerable districts.

전기자동차 교통-전력-시설 통합 정보통신 네트워크 설계 및 정보관리시스템 간 연계 방안 수립에 관한 연구 (Study on drawing up the integration method between combined information communication network design and information management system for Transportation-Power-Infrastructures on the electric vehicle)

  • 최윤근;황태홍;김건국
    • 한국ITS학회 논문지
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    • 제10권5호
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    • pp.60-70
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    • 2011
  • 전기버스를 대상으로 교통-전력-시설 통합 정보통신 네트워크 통신방식을 선정하기 위하여 최신기술 동향과 정확성, 안정성, 경제성의 선정요인을 기준으로 차량위치검지 및 무선통신방식을 GPS, CDMA, WLAN 방식으로 설계한다. 또한, 효율적인 연계를 위하여 대안별 주요 특징을 검토하고, 방안별 기술적 난이도와 정책적 행정적 난이도 및 비용타당성의 선정요인을 기준으로 Spoke & Hub 연계방식, 즉, 교통융합충전센터와 교통센터, 스마트 그리드센터를 각각 연계토록 연계방안을 수립한다.

시장수요예측 모델을 활용한 서울시 수소차 충전시설의 입지선정 우선순위에 관한 연구 (A Study on the Priority of Site Selection for Hydrogen Vehicle Charging Facilities in Seoul Using a Market Demand Prediction Model)

  • 김진식;장국진;이주연;정명석
    • 시스템엔지니어링학술지
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    • 제18권2호
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    • pp.140-148
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    • 2022
  • Hydrogen is expected to be widely applied in most sectors within the current energy system, such as transportation and logistics, and is expected to be economically and technologically utilized as a power source to achieve vehiclebon emission reduction. In particular, the construction of hydrogen charging station infrastructure will not only support the distribution of hydrogen electric vehicles, but also play an important role in building a hydrogen logistics system. Therefore, This paper suggest additional charging infrastructure areas in Seoul with a focus on supply according to the annual average growth rate (CAGR), centering on Seoul, where hydrogen vehicles are most widely distributed. As of February 2022, hydrogen charging infrastructures were installed in Gangseo-gu, Gangdong-gu, Mapo-gu, Jung-gu, and Seocho-gu in downtown Seoul. Next, looking at the number of hydrogen vehicles by administrative dong in Seoul from 2018 to 2022, Seocho-gu has the most with 246 as of 2022, and Dongjak-gu has the highest average growth rate of 215.4% with a CAGR of 215.4%. Therefore, as a result of CAGR analysis, Dongjak-gu is expected to supply the most hydrogen vehicles in the future, and Seocho-gu currently has the most hydrogen vehicles, so it is likely that additional hydrogen charging infrastructure will be needed between Dongjak-gu and Seocho-gu.

Evaluation of Voltage Sag and Unbalance due to the System Connection of Electric Vehicles on Distribution System

  • Lee, Soon-Jeong;Kim, Jun-Hyeok;Kim, Doo-Ung;Go, Hyo-Sang;Kim, Chul-Hwan;Kim, Eung-Sang;Kim, Seul-Ki
    • Journal of Electrical Engineering and Technology
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    • 제9권2호
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    • pp.452-460
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    • 2014
  • Due to increased concerns for rising oil prices and environmental problems, various solutions have been proposed for solving energy problems through tightening environmental regulations such as those regarding $CO_2$ reduction. Among them, Electrical Vehicles (EVs) are evaluated to be the most realistic and effective approach. Accordingly, research and development on EVs and charging infrastructures are mainly proceeding in developed countries. Since EVs operate using electric energy form a battery, they must be connected to the power system to charge the battery. If many EVs are connected during a short time, power quality problems can occur such as voltage sag, voltage unbalance and harmonics which are generated from power electronics devices. Therefore, when EVs are charged, it is necessary to analyze the effect of power quality on the distribution system, because EVs will gradually replace gasoline vehicles, and the number of EVs will be increased. In this paper, a battery for EVs and a PWM converter are modeled using an ElectroMagnetic Transient Program (EMTP). The voltage sag and unbalance are evaluated when EVs are connected to the distribution system of the Korea Electric Power Corporation (KEPCO). The simulation results are compared with IEEE standards.