• 제목/요약/키워드: Electricity Vehicle

검색결과 136건 처리시간 0.027초

플러그인 하이브리드 전기자동차의 연료 경제성에 관한 연구 (Study on the Fueling Economic Feasibility of Plug-in Hybrid Electric Vehicle)

  • 노철우;김민수
    • 대한기계학회논문집B
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    • 제33권4호
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    • pp.255-263
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    • 2009
  • The most concerning issue of these days is the energy crisis caused by increasing threat of dependence on imported oil and volatile market trend. Under these circumstances, the PHEV(plug-in hybrid electric vehicle) is drawing attention for the next generation's car which could give a chance to decrease the dependence on imported oil and reduce the environmental impact of vehicle. The fueling cost of PHEV, one of the core factor of decision about buying car, should be calculated in the circumstances of Korea to make sure that PHEV has competitive power in real market. The fuel cost saving of PHEV versus CV(conventional vehicle) is simulated and discussed in the condition of increasing gasoline cost, electricity rate, and city-gas rate. In conclusion, the PHEV60-FS shows the best economic feasibility when gasoline price goes up. The PHEV20 has the most stable economic feasibility as electricity rate increases. The fuel cell cogeneration system for RPG could be an alternative for charger of PHEV in the near future.

대체연료 자동차에 대한 소비자 선호 분석을 통한 산업전략과 기술정책에 관한 연구 (Analysis on the business strategy and policy for the alternative fuel vehicle : Using stated preference data)

  • 김연배;정기철;안지운;이정동
    • 기술경영경제학회:학술대회논문집
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    • 기술경영경제학회 2006년도 제28회 동계학술발표회 논문집
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    • pp.264-297
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    • 2006
  • In this paper, we attempt to analyze consumer preference for the alternative-fuel vehicles based on data from a stated preference using the conjoint analysis. Five possible fuel types (gasoline, diesel, CNG, LPG, Hybrid (electricity+gasoline)) are covered in conjoint cards. To estimate and analyze consumer preference, discrete choice model is used. Specifically, Bayesian mixed logit model is used. Based on estimating results, we discuss the business strategy and policy for the alternative fuel vehicle.

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2축 병렬형 하이브리드 차량의 최저 연비 주행 알고리즘 (An Operation Algorithm for a 2 Shaft Parallel Type Hybrid Electric Vehicle for Optimal Fuel Economy)

  • 최득환;김현수
    • 한국자동차공학회논문집
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    • 제9권5호
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    • pp.122-130
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    • 2001
  • In this paper, an operational algorithm for a 2-shaft parallel hybrid electric vehicle is suggested for the minimization of operation cost. The operation cost is obtained as a summation of the engine fuel cost and the motor electricity cost. The electrical cost function is estimated in case of motoring, and generating when the recuperation is carried out during the braking. In addition, weight function is introduced in order to maintain the battery state of charge. Based on the operation algorithm, the optimal engine operation point that minimizes the operation cost is obtained with respect to the required vehicle power for every state of charge of battery. The optimal operation point provides the optimal power distribution of the engine and the motor for a required vehicle power Simulation was performed and the fuel economy of the hybrid vehicle was compared to that of the conventional vehicle. Simulation results showed that hybrid vehicle's fuel economy can be improved as much as 45∼48% compared to the conventional vehicle's.

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Evaluation of Fuel Economy for a Parallel Hybrid Electric Vehicle

  • Park, Dookhwan;Kim, Hyunsoo
    • Journal of Mechanical Science and Technology
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    • 제16권10호
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    • pp.1287-1295
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    • 2002
  • In this work, the fuel economy of a parallel hybrid electric vehicle is investigated. A vehicle control algorithm which yields operating points where operational cost of HEV is minimal is suggested. The operational cost of HEV is decided considering both the cost of fossil fuel consumed by an engine and the cost of electricity consumed by an electric motor. A procedure for obtaining the operating points of minimal fuel consumption is introduced. Simulations are carried out for 3 variations of HEV and the results are compared to the fuel economy of a conventional vehicle in order to investigate the effect of hybridization. Simulation results show that HEV with the vehicle control algorithm suggested in this work has a fuel economy 45% better than the conventional vehicle if braking energy is recuperated fully by regeneration and idling of the engine is eliminated. The vehicle modification is also investigated to obtain the target fuel economy set in PNGV program.

슈퍼캐패시터를 이용한 자동차 전압 안정화 모듈 (Vehicle Voltage Stabilizing Module Using Supercapacitors)

  • 박석희;정규원
    • 한국생산제조학회지
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    • 제24권1호
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    • pp.124-129
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    • 2015
  • The performance of a passenger vehicle has been greatly improved recently owing to the intensive use of electronic controllers. Many components of a vehicle, including the engine, are controlled by electronic systems installed in the vehicle. Therefore, the electrical power required for such electronics has increased significantly. However, the electrical power generated by the vehicle's alternator, operated by the engine, is limited, and when the vehicle is started, a large instantaneous current is required. The voltage of the vehicle electrical system fluctuates to a very low level, then, it is gradually recovered. This case is very severe and can even cause damage to electronic systems. In this study, a voltage-stabilizing module comprising electric double layer supercapacitors, which could alleviate the voltage variation, was developed and tested.

항공기 외표면 정전기 방출기 장착설계 및 시험에 관한 연구 (A Research on the Static Discharger Installation Design and Test for Air Vehicle)

  • 우희채;김용태;김봉규
    • 한국항공우주학회지
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    • 제45권7호
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    • pp.574-580
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    • 2017
  • 항공기에는 비행 중 공기 중으로부터 축적된 정전기를 방출시키기 위하여 정전기방출기를 장착하여야 한다. 특히 정전기 방출기에 의해 방출되지 않으면, 항공기 표면에 이온화현상이 발생하게 되고, 그에 따라 항공기 외부로 돌출된 안테나 및 날개 끝부분에서 코로나 현상을 발생시켜 무선통신 및 장비운용에 영향을 미치게 한다. 본 논문에서는 항공기 정전기 방출기를 장착하기 위하여 항공기 표면적과 속도 그리고 기후조건을 분석하였다. 또한 그 분석결과를 바탕으로 정전기 방출기 장착설계를 수행할 수 있으며, 장착된 정전기 방출기의 기능시험을 통하여 효과적으로 장착설계가 되어있음을 확인할 수 있다. 그리하여 본 연구결과를 바탕으로 추후 다양한 크기와 임무조건을 가지는 항공기의 정전기 방출기 장착설계를 최적화하여 수행할 수 있다.

PV 시스템을 이용한 전기자동차 충전소의 구조시스템 연구 (A Study of Electronic Vehicle Charging Station Structure System Using PV(Photovoltaic) System)

  • 임재휘;윤성원
    • 한국공간구조학회논문집
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    • 제11권1호
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    • pp.105-112
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    • 2011
  • 전기자동차의 상용화시대에 대비한 전기자동차 충전네트워크가 시급해지고 있다. 해외에서는 주차장에 PV시스템을 설치하여 얻어진 전력으로 전기자동차 충전을 할 수 있는 전기자동차 충전소가 설치되어지고 있다. 또한 우리나라에서도 충전인프라 구축방안 및 전기자동차 충전시설 지원기준 등을 설정하여 제시하고 있지만 해외처럼 PV시스템을 이용한 전기자동차 충전소의 사례가 국내에는 없으며, 일반전력을 이용한 전기자동차 충전소만 제시하고 있다. 따라서 본 논문에서는 국내의 전기자동차 충전네트워크 구축에 대비하여 국내 외 태양광 주차장과 해외 PV시스템 전기자동차 충전소의 사례를 조사하여 구조시스템, 구조 재료 등을 분석하여 비교 분석한 결과, 해외 PV시스템 전기자동차 충전소의 경우 캔틸레버 구조와 소규모 타입이 많이 설치되었다.

고분자 전해질형 연료전지/2차전지/태양전지 하이브리드 자동차에 대한 모델링 및 특성평가 (Modeling and Analysis of PEMFC/Battery/Photovoltaic Hybrid Vehicle)

  • 지현진;안효정;차석원;배중면
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.2255-2260
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    • 2007
  • This Paper focuses on modeling and simulation to analyze the characteristic of hybrid vehicle. The system includes proton exchange membrane fuel cell(PEMFC), photovoltaic generator(PV), lead-acid battery, motor, vehicle and controller. Main electricity is produced by the PEMFC and battery to meet the requirements of a user load. When vehicle is parked in a sunny place, extra power is generated by the photovotaics and is charged in a battery for next drive. Further we evaluate usefulness of this hybrid vehicle by using ADVISOR - the advanced vehicle simulator written in the Matlab/Simulink environment. According to simulation results, the extra power obtained by photovoltaics which have been explored in nature conditions can help to reduce the electrical load of PEMFC and increase the efficiency (over 30%).

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연료전지-태양전지 하이브리드 자동차에 대한 제어전략 및 특성평가 (Control Strategy and Characteristic Analysis of PEMFC/Photovoltaics Hybrid Vehicle)

  • 안효정;지현진;배중면;차석원
    • 대한기계학회논문집B
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    • 제31권10호
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    • pp.840-847
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    • 2007
  • This Paper focuses on modeling and simulation to analyze the characteristic of hybrid vehicle. The system includes a proton exchange membrane fuel cell(PEMFC), photovoltaic generator(PV), lead-acid battery, motor, vehicle and controller. Main electricity is produced by the PEMFC and battery to meet the requirements of a user load. When vehicle is parked in a sunny place, extra power is generated by the photovotaics and is charged in a battery for next drive. Further we evaluate usefulness of this hybrid vehicle by using ADVISOR - the advanced vehicle simulator written in the Matlab/Simulink environment. According to simulation results, the extra power obtained by photovoltaics which have been explored in nature conditions can help to reduce the electrical load of PEMFC and increase the efficiency (over 21 %).

전기 자동차 성능 평가를 위한 도심 주행 모드 개발 Part I : 주행 모드 개발 (Development of Urban Driving Cycle for Performance Evaluation of Electric Vehicles Part I : Development of Driving Cycle)

  • 양성모;정낙탁;김광섭;최수빈;;김현수;서명원
    • 한국자동차공학회논문집
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    • 제22권7호
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    • pp.117-126
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    • 2014
  • Recently, due to various environmental problems such as global warming, increasing of international oil prices and exhaustion of resource, a paradigm of world automobile market is rapidly changing from vehicles using internal combustion engine to eco-friendly vehicles using electric power such as EV (Electric Vehicle), HEV (Hybrid Electric Vehicle), PHEV (Plug-in Hybrid electric Vehicle) and FCEV (Fuel Cell Electric Vehicle). There are many driving cycles for performance evaluation of conventional vehicles. However there is a lack of researches on driving cycle for EV. This study is composed of part 1 and part 2. In this paper part 1, in order to develop urban driving cycle for performance evaluation of electric vehicles, Gwacheon-city patrol route of police patrol car was selected. Actual driving test was performed using EV. The driving data such as velocity, time, GPS information etc. were recorded. GUDC-EV (Gwacheon-city Urban Driving Cycle for Electric Vehicles) including road gradient was developed through the results of analyzing recorded data. Reliability of the driving cycle development method was substantiated through comparison of electricity performance. In the second part of this study, the developed driving cycle was compared to simulation result of the existing urban driving cycle. Verification of the developed driving cycle for EV performance evaluation was described.