• 제목/요약/키워드: fuel cell vehicle

검색결과 419건 처리시간 0.021초

다중 동력 연료전지 하이브리드 장갑차량의 동력관리 전략에 관한 연구 (A Study on Power Management Strategy for Multi-Power Source Fuel Cell Hybrid Armored Vehicle)

  • 안상준;김태진;이교일
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.361-365
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    • 2005
  • Since the fuel cell uses the hydrogen for its fuel. it has no emission and higher efficiency than an internal combustion engine. Also fuel cell is much quieter than engine generator and generates heat much less than engine generator. So it has advantage of Army's 'si lent watch' capability and the ability to operate undetected by the enemy. The fuel cell hybrid system combines a fuel cell power system with an ESS. The ESS (e.g., batteries or ultracapacitors) reduces the fuel cell's peak power and transient response requirements. It allows the fuel cell to operate more efficiently and recovery of vehicle energy during deceleration. The battery has high energy density, so it has the advantage regarding driving distance. However, it has a disadvantage considering dynamic characteristic because of low power density. One other hand. the ultracapacitor has higher power density, so it can handle sudden change or discharge of required power. Yet. it has lower energy density. so it will be bigger and heavier than the battery when it has the same energy. This paper proposes the power management strategy for multi-power source fuel cell hybrid system. which is applied with the merits of both battery and ultra capacitor by using both of them simultaneous.

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물의 결빙이 고분자전해질 연료전지 성능에 미치는 영향 및 그 원인에 관한 연구 (A Study on the Effect of Water Freezing on the Characteristics of Polymer Electrolyte Membrane Fuel Cells)

  • 고재준;조은애;하흥용;홍성안;이관영;임태원;오인환
    • 전기화학회지
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    • 제6권1호
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    • pp.36-40
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    • 2003
  • 고분자 전해질 연료전지를 자동차용 동력원으로 사용하는 경우 겨울철 운전 시 연료전지 내에 존재하는 물이 결빙하여 연료전지의 성능을 저하시킬 수 있다. 물의 결빙이 연료전지의 성능에 미치는 영향을 조사하기 위해 연료전지의 온도를 운전온도인 $80^{\circ}C$에서 물이 결빙하기에 충분한 온도인 $-10^{\circ}C$까지 열순환하면서 전류전압 곡선을 측정했다. 열순환이 반복됨에 따라 물의 상변화와 이에 따른 부피변화로 인해 연료전지의 성능이 감소했다. 물의 결빙이 연료전지의 성능을 저하시키는 원인을 규명하기 위해 BET분석과 순환전류전압법, 임피더스 분석을 이용해 열순환이 전극의 구조와 분극 저항에 미치는 영향을 조사했다.

연료전지 자동차용 흡기 소음기의 설계 변수 최적화에 관한 연구 (Optimization of the Multi-chamber Perforated Muffler for the Air Processing Unit of the Fuel Cell Electric Vehicle)

  • 김의열;이상권
    • 한국소음진동공학회논문집
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    • 제19권7호
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    • pp.736-745
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    • 2009
  • Fuel cells convert a fuel together with oxygen in a highly efficient electrochemical reaction to electricity and water. Since the electrochemical reaction in the fuel cell stack dose not generate any noise, Fuel cell systems are expected to operated much quieter than combustion engines. However, the tonal noise and the broad band noise caused by a centrifugal compressor and an electric motor cause which is required to feed the ambient air to the cathode of the fuel cell stack with high pressure. In this study, the multi-camber perforated muffler is used to reduce noise. We propose optimized muffler model using an axiomatic design method that optimizes the parameters of perforated muffler while keeping the volume of muffler minimized.

Study on Soft-Switching Transformers Inductor Boost Converter for Fuel Cell Powered Railway Vehicle

  • Jung, No-Geon;Kim, Jae-Moon
    • Journal of Electrical Engineering and Technology
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    • 제13권6호
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    • pp.2553-2560
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    • 2018
  • In Korea, there are no instances where a hydrogen fuel cell power generation system has been used in a railway vehicle. Only the basic topology has been studied. In the previous study, conventional converters using a single switch were applied to the fuel cell power generation system. Therefore, current stress on the switch at converter on-off transitions would be large when controlling a large-capacity railway vehicle. In addition, since the input side ripple is also large, there is a problem with a shortening of the lifetime of both the fuel cell power generation system and the inductor. In this paper, a soft-switching transformer inductor boost converter for fuel cell powered railway vehicles was proposed. A technique to reduce both the switching current stress generated during on-off transitions, and the input ripple current flowing in the inductor were studied. The soft-switching TIB converter uses a transformer-type inductor to configure the entire circuit in an interleaved method, and reduces both input current ripple and the current ripple of the inductor and switch.

투싼 연료전지 하이브리드 차량 개발 (Development of Tucson Fuel Cell Hybrid Electric Vehicle)

  • 전순일;최서호;권순우;이규일;정성진;윤성곤
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.357-360
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    • 2005
  • Hyundai Motor Company developed the second generation of fuel cell hybrid electric vehicle based on Tucson SUV in 2004. This vehicle has cold start capability below -10C and its driving performances including maximum speed and accelerating time are almost similar to conventional Tucson SUV's performances without any sacrifice in terms of cabin space. Especially. the cold start capability was realized by utilizing only internal power sources such as fuel cell power and high voltage lithium ion polymer battery. In this paper, we will briefly introduce specifications of Tucson FCEV and its driving performances based on field test and simulations.

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연료 전지 자동차 기술 분석 (Status of fuel cell vehicles)

  • 이원용;이봉도;김창수;신동열
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 A
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    • pp.24-26
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    • 1999
  • A new hybrid vehicle Powered by fuel cells is being developed in order to improve the fuel conversion rate and reduce air pollutions. Fuel cell electric vehicle(FCEV) is considered to be the next generation electric vehicle with on board generator. This paper is to determine the current technical status of FCEVs and assess and judge the prospect of the prospects of fuel cell electric engines.

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수소연료전지자동차 연료소비율 평가기술 개발에 관한 연구 (Development on Fuel Economy Test Method for Hydrogen Fuel Cell Vehicles)

  • 임종순;이현우;홍윤석;이광범;용기중;권해붕
    • 한국수소및신에너지학회논문집
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    • 제21권3호
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    • pp.207-213
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    • 2010
  • Fuel consumption measurement of hydrogen fuel cell vehicle is considerably different from internal combustion engine vehicle such as carbon balance method. A practical method of fuel consumption measurement has been developed for hydrogen fuel cell vehicles. There are three method of hydrogen fuel consumption testing, gravimetric, PVT (pressure, volume and temperature), and mass flow, all of which necessitate physical measurements of the fuel supply. The purpose of this research is to measure the fuel consumption of hydrogen fuel cell vehicles on chassis-dynamometer and to give information when the research is intended to develop test method to measure hydrogen fuel economy.

수소연료전지 자동차의 긴급대응 가이드 분석 (The Analysis of Emergency Response Guide for Hydrogen Fuel Cell Vehicle)

  • 이광주;이종태;용기중
    • 한국수소및신에너지학회논문집
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    • 제23권2호
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    • pp.156-161
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    • 2012
  • In case of commercializing of the hydrogen fuel cell vehicle, the suitable emergency response guide is necessary to prepare an accident. In order to suggest the suitable guide for the domestic affairs, the existing external guide about GM, Ford, Honda, and Hyundai was reviewed. The emergency response guides in CAFCP and main FC vehicle makers were included in the analysis. As the results, it was found that the design and make of vehicle for the domestic user are demanded in the emergency response and the guide is made with the shut-down manual picked out for the rescuer and repair man as well as user.

FUEL ECONOMY IMPROVEMENT FOR FUEL CELL HYBRID ELECTRIC VEHICLES USING FUZZY LOGIC-BASED POWER DISTRIBUTION CONTROL

  • Ahn, H.S.;Lee, N.S.;Moon, C.W.;Jeong, G.M.
    • International Journal of Automotive Technology
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    • 제8권5호
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    • pp.651-658
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    • 2007
  • This paper presents a new type of fuzzy logic-based power control strategy for fuel cell hybrid electric vehicles designed to improve their fuel economy while maintaining the battery's state of charge. Since fuel cell systems have inherent limitations, such as a slow response time and low fuel efficiency, especially in the low power region, a battery system is typically used to assist them. To maximize the advantages of this hybrid type of configuration, a power distribution control strategy is required for the two power sources: the fuel cell system and the battery system. The required fuel cell power is procured using fuzzy rules based on the vehicle driving status and the battery status. In order to show the validity and effectiveness of the proposed power control strategy, simulations are performed using a mid-size vehicle for three types of standard drive cycle. First, the fuzzy logic-based power control strategy is shown to improves the fuel economy compared with the static power control strategy. Second, the robustness of the proposed power control strategy is verified against several variations in system parameters.