• Title/Summary/Keyword: Fuel Cell Electric Vehicle

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Sizing of Powertrain in Fuel Cell Hybrid Vehicles (연료전지 하이브리드 자동차의 동력전달계의 용량 선정)

  • Zheng, Chun-Hua;Shin, Chang-Woo;Park, Yeong-Il;Cha, Suk-Won
    • Transactions of the Korean Society of Automotive Engineers
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    • v.19 no.6
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    • pp.113-118
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    • 2011
  • Fuel Cell Hybrid Vehicle (FCHV) is one of the most promising candidates for the next generation of transportation. It has many outstanding advantages such as higher energy efficiency and much lower emissions than internal combustion engine vehicles. It also has the ability of recovering braking energy. In order to design an FCHV drive train, we need to determine the size of the electric motor, the Fuel Cell System (FCS), and the battery. In this paper, the methodology for the sizing of these components is introduced based on the driveability constraints of the FCHV. A power management strategy is also presented because the battery energy capacity depends on it. The warm-up time of the FCS is also considered in the power management strategy and the simulation result is compared to that without considering the warm-up time.

Development of Fuel Cell Engine System for Electric Vehicle (연료전지 자동차 추진용 엔진 시스템 개발)

  • 백동현;이원용;김창수;최수현
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2000.11a
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    • pp.243-246
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    • 2000
  • 연료전지(Fuel Cell)는 carnot 과정을 거치지 않고 연료의 화학 에너지를 전기 에너지로 직접 전환시키는 고효율의 전기화학적 발전장치이다. 기존의 내연기관은 실제 효율이 20-45%이지만, 연료전지는 40-65%의 효율로 운전할 수 있고 공해물질의 발생도 거의 없는 장점이 있다. 또한 다양한 대체 연료를 사용할 수 있어 석유에너지 절감과 대체 에너지 개발에 기여할 수 있다는 장점이 있다.(중략)

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A Study on the Strategy of Smart Charging System to Charge the PHEV in the House Which has a 1 kW Fuel Cell Cogeneration System (1 kW 급 가정용 연료전지 코제너레이션 시스템이 설치된 주택 내 플러그인 하이브리드 자동차의 스마트 충전전략 연구)

  • Roh, Chul-Woo;Kim, Min-Soo
    • Proceedings of the SAREK Conference
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    • 2008.06a
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    • pp.838-843
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    • 2008
  • Cause of struggling to escape from dependency of fossil fuels, the fuel cell and the Plug-in Hybrid Electric Vehicle (PHEV) draw attention in the all of the world. Especially, the Polymer Electrolyte Membrane Fuel Cell (PEMFC) systems have been anticipated for next generation's energy supplying system, and we can predict the PHEV will enlarge the market share in the next few years to reduce not only the air pollution in the metropolis but the fuel-expenses of commuters. This paper presents simulation results about the strategy of smart charging system for PHEV in the residential house which has 1 kW PEMFC cogeneration system. The smart charging system has a function of recommending the best time to charge the battery of PHEV by the lowest energy cost. The simulated energy cost for charging the battery based on the electricity demand data pattern in the house. The house which floor area is $132\;m^2$ (40 pyeong.). In these conditions, the annual gasoline, electricity, and total energy cost to fuel the PHEV versus Conventional Vehicle (CV) have been simulated in terms of cars' average life span in Korea.

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Development of Power Measurement Method for Electrified Vehicles (전동화된 자동차의 출력측정방법 개발)

  • Choi, Dongseok;Ryu, Kihyeon;Lee, Jaewan;Park, Yongsung
    • Transactions of the Korean Society of Automotive Engineers
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    • v.22 no.7
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    • pp.135-143
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    • 2014
  • Electrified vehicles can be classified with hybrid electric vehicles, battery electric vehicles and fuel cell electric vehicles. These vehicles have two more than energy converters which are the part of a powertrain. It is particularly difficult to estimate the power of hybrid electric vehicles due to two different energy converters with different power characteristics. Therefore, a new power concept for these vehicles is needed. The vehicle power as the new concept for solving this problem was defined in this study. The test method and the procedure were made a development in this study. Four electrified vehicles with different electric fraction were used to validate the method. Two percentage of COV was suggested as a criterion for the maximum vehicles power based on the previous studies. The repeatability of this method was within ${\pm}2$ per cent for the maximum vehicle power and within ${\pm}5$ per cent for the vehicle speed at maximum vehicle power.

R&D Technology and Dissemination Policy and of FCEV (수소전기차 기술 개발 및 보급 정책 동향)

  • Kim, Myong-Hwan
    • Prospectives of Industrial Chemistry
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    • v.24 no.4
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    • pp.22-35
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    • 2021
  • 현재 수소전기차는 승용 및 상용 등 다양한 모빌리티 분야에서 전 세계적으로 이슈가 되고 있다. 환경규제 강화, 신기후체제 출범 등의 변화의 물결에 따라 자동차산업의 패러다임이 친환경으로 전환되고 있으며, 세계적으로 관련 기술 개발 및 보급을 위한 확대 정책이 발표되고 있다. 1990년 초 수소전기차(Fuel Cell Electric Vehicle, FCEV) 기술 개발이 진행되어 1994년 독일 다임러사가 세계 최초로 NECAR1을 개발하였다. 이후 많은 완성차가 상용화를 위해 기술개발이 진행되었으며, 2013년 국내 현대차가 세계최초로 양산차인 투싼 ix 수소전기차를 출시하였다. 1년 이후 다시 일본 도요타에서 세계 최초로 전용 차체를 적용한 미라이 수소전기차가 출시되면서 초기시장이 형성되었으며, 이후 현대차는 NEXO를 2018년에 발표하였다. 전 세계적으로 가장 많이 팔린 수소전기차에 해당된다. 2021년 미라이 2세대가 더욱 진보된 기술을 바탕으로 출시되었으며, 국내 현대차에서도 2세대 수소전기차 출시를 앞두고 있다. 또한 수소승용차 뿐만 아니라 수소상용차 시장이 뜨겁게 부각되고 있으며, 각국에서 수소상용차 기술개발을 진행하고 있다. 본 기획특집에서는 각국의 수소전기차 기술개발 및 보급 정책을 소개하고 국내 기술개발 및 보급 정책의 타당성을 확인하고자 하였다.

The Heat Management of PEM Fuel Cell Stack (운전 조건에 따른 PEMFC 스택 열 관리)

  • Son, Ik-Jae;Lee, Jong-Hyun;Nam, Gi-Young;Ko, Jae-Jun;Ahn, Byung-Ki
    • Journal of Hydrogen and New Energy
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    • v.21 no.3
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    • pp.184-192
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    • 2010
  • PEM fuel cell produces electric power, water and heat by the electrochemical reaction of hydrogen and oxygen. The heating value is dependent on the molar enthalpy of vaporization of product water and the performance loss. In this paper, the heating value of fuel cell stack has been studied under various stack operating temperatures to achieve more efficient heat management. A technology using the molar enthalpy of vaporization of product water is suggested to reduce heat-up time during start-up of a fuel cell vehicle.

FES(Flywheel Energy Storage) is ready for HEV(Hybrid Electric Vehicle) (하이브리드 자동차를 위한 플라이 휠 에너지 저장 기술)

  • Ahn Hyeong-Joon;Park In-Hwang;Han Dong-Chul
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.06a
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    • pp.366-369
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    • 2005
  • 최근 환경 및 에너지 문제가 자동차 산업의 중요한 이슈로 인식되면서 하이브리드 자동차(Hybrid Electric Vehicle) 기술과 연료 전지 자동차(Fuel Cell Vehicle)등이 주목받고 있다. 특히 하이브리드 자동차는 요구되는 동력과 생성되는 동력의 차이 때문에 순시 동력 저장 장치 (peak power buffer)가 필요한데, 반복적인 충/방전 싸이클에서 용량의 감소 없이 높은 단위 질량당의 동력과 에너지를 가지며 부피, 효율, 수명 면에서도 우수한 플라이 휠 에너지 저장장치가 이러한 동력 저장 장치로 적합하다. 본 논문은 하이브리드 자동차를 위한 플라이 휠 에너지 저장 장치의 현 상태 (state of art)를 기술한다. 첫번째로, 플라이 휠 에너지 저장장치의 기원과 배경을 설명한다. 두 번째로 하이브리드 자동차를 위한 플라이 휠 에너지 저장 장치의 세부 사항을 요약하고, 플라이 휠 에너지 저장을 이용한 하이브리드 자동차의 예와 플라이 휠 에너지 저장장치의 설계 쟁점과 자동차에 적용시키기 위한 최근 기술적 진보를 논의한다. 마지막으로, 플라이 휠 에너지 저장장치의 파급 효과와 다른 적용 예를 소개한다.

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High Voltage Wiring System Evaluation Methode of FCEV (Fuel Cell Electric Vehicle) (수소연료전지 자동차용 고전압 배선 시스템 평가 기술 개발)

  • Lim, Ji-Seon;Lee, Jeong-Hun;Lee, Hyo-Jeong;Na, Joo-Ran
    • Journal of Hydrogen and New Energy
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    • v.23 no.4
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    • pp.330-336
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    • 2012
  • FCEV uses 250 ~ 450 V instead of using 12 V battery. High voltage vehicle can cause electric shock, fire and explosion accident. Therefore, it has potential factors that can cause hazard of safety for users. United states of America and Europe legislate regulations such as ECE R100, FMVSS 305 for regulating electrical safety during driving or after collision. The company manufacturing high voltage components must do advanced R&D about Method for improving and confirming the safety of high voltage. We develop the specific hardware components of high voltage wiring system for the power train system and power supply system of Hyundai Motors FCEV. This paper shows test method of insulative performance for securing the electrical safety of high voltage components such as power cable, connectors and buss-bar, and proposals the guide line value for human safety of FCEV according to the test result of our development components.

Electromagnetic Performance improvement and Rib thickness Reduction by making a hole on Interior Permanent Magnet Synchronous Motor (IPMSM의 Hole에 의한 Rib의 두께 감소와 전자기적 성능 향상)

  • Lee, Tae-Geun;Kim, Do-Jin;Hong, Jung-Pyo
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.867_868
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    • 2009
  • Interior permanent magnet synchronous motor [IPMSM] which has high power density is applied to motor for Hybrid electric vehicle[HEV], Electric vehicle[EV], Fuel cell electric vehicle[FCEV] and electric home appliances. In order to improve efficiency performance of IPMSM, this paper presented a study by making a hole around air barrier. Because concentrated rib stress is distributed by suitable hole, the hole can reduce rib thickness of IPM rotor. And it can help decrease PM[Permanent Magnet] leakage flux. Saliency ratio($L_q/L_d$) is also increased by magnetic circuit change. For this study, structure analysis of rotor is performed by Ansys program.

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The Voltage Drop Compensation of Electric Railway Feeding system using a Fuelcell System (연료전지 시스템을 이용한 전기철도 급전계통 전압강하 보상)

  • Kim, Jae-Moon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.64 no.2
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    • pp.342-348
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    • 2015
  • In this paper, fuel cell power generation system that is being studied in recent railway field was applied to compensate for the voltage drop due to the load as driving electric vehicle. PSIM simulation program is to be used to implement the modeling of the electric railway for AC AT feeder system. For it, It was applied to the product-type single-phase PLL algorithm, step-down converter is controlled as power so as to have the fuelcell generation system. Based on it's result, a reactive power due to the catenary impedance in accordance with the current flowing is compensated as linked with fuelcell generation system which supplied the current to the power supply grid. and then its performance was confirmed that voltage compensation effect obtained at SubStation (SS), SubSectioning Post (SSP), Sectioning Post (SP).