• 제목/요약/키워드: Cell battery

검색결과 935건 처리시간 0.039초

1kW급 연료전지-배터리 복합 전원 시스템의 운용 알고리즘 구현 (The operation algorithm of the 1kW fuel cell-battery hybrid power system)

  • 박진주;채수용;송유진;한수빈
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2013년도 추계학술대회 논문집
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    • pp.95-96
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    • 2013
  • In this paper, an operation algorithm for the fuel cell-battery hybrid power system is proposed. As the output current slope of the fuel cell is normally limited to protect the fuel cells' defection, efficient power distribution algorithm between the fuel cell and battery is very important for the successful hybrid control operation. For the experimentation, a 1kW dc-dc converter with 500W fuel cell stack and 1kWh Li-polymer battery is implemented.

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태양광발전 방식의 자동차용 과급 장치의 성능 평가 (Performance Test of Supercharger for Vehicle using Solar Cell)

  • 고광호
    • 한국수소및신에너지학회논문집
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    • 제22권6호
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    • pp.942-948
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    • 2011
  • The performance of a supercharger for vehicle using solar cell attached on the exterior of a car, an auxiliary battery, and an air compressor was evaluated in this study. This supercharger is composed of a solar cell of 40W, a battery of 60 Ah, an air compressor of 17 A, 8 $kgf/cm^2$ and an air tank of 8L. It takes about 6 days to charge the battery with the solar cell and the high pressure air of 8L can be supplied about 70 times to engine intake with this battery. The intake pressure increased by about 20~40% with this supercharger. The vehicle power and accelerating performance are enhanced by 87% and 50% each in the low speed range. But the performance improved little in the high speed range because of the rather constant flow rate of air supplied by this type of supercharger.

4D Lookup Table Interpolating을 이용한 단위 전지 방전 시험 기반 열전지 성능 예측 (Performance Estimation Based on 4D Lookup Table Interpolating and Unit Cell Discharge Tests for Thermal Battery)

  • 박병준;김지연;하상현;조장현
    • 한국전기전자재료학회논문지
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    • 제30권6호
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    • pp.393-400
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    • 2017
  • For comparison to the Li-ion battery, evaluating a thermal battery must consider additional variables. The first one is the temperature difference between the battery and its unit cell. Thermal batteries and their unit cells have a temperature difference that is caused by the thermal battery activation mechanism and its shape. The second variable is the electrochemical reaction steps. Most Li-ion batteries have a constant electrochemical reaction at the electrode, and battery voltage is affected when the concentration of Li ions is changed. However, a thermal battery has several steps in its electrochemical reaction, and each step has a different potential. In this study, we used unit cell discharge tests based on interpolating a 4D lookup table to estimate the performance of a thermal battery. From the test results, we derived an estimation algorithm by interpolating the table, which is queried from specified profile groups. As a result, we found less than a 5 percent difference between estimation and experiment at the 1.3 V cut-off time.

원통형 셀을 이용한 자동차용 배터리팩 냉각해석 (Cooling CFD Analysis of a Car Batter Pack with Circular Cells)

  • 신현장;이주성
    • 대한기계학회논문집B
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    • 제41권10호
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    • pp.693-698
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    • 2017
  • 원통형 리튬이온 배터리를 이용한 배터리 팩의 냉각을 위한 해석을 수행하였다. 파우치형에 비해서 원통형 셀을 이용한 배터리 팩은 저렴하면서 신뢰도가 우수한 것으로 알려져 있다. 단지 부피가 파우치 타입에 비해서 크고 디자인적으로 제약이 있다라는 단점을 가지고 있다. 본 논문에서는 18650 배터리를 이용한 배터리팩의 냉각성능을 해석을 통하여 예측하였다. 배터리팩의 온도 안정성은 자동차용 배터리 팩에서 가장 중요한 부분이기 때문이다. 해석을 수행하기 전에 발열 시험을 수행하였으며 열화상 카메라를 이용하여 온도를 측정하고 해석을 통해서 이에 해당하는 발열량 값을 예측하였다. 이를 바탕으로 배터리 팩의 자연대류와 강제대류 해석을 진행하였으며 각각의 냉각 성능을 비교하였다. 배터리 셀을 직접 냉각하는 직접냉각 방식, 배터리 케이스 상하면을 냉각하는 방식, 배터리 케이스 상하면에 공기 통로를 설치하는 세 가지 방식에 대해서 냉각 성능을 비교하였고, 공기채널 방식이 안정성과 냉각성능 면에서 우수함을 해석을 통하여 입증하였다.

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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이차전지 수분 제거용 유도가열 양산 시스템 개발에 관한 연구 (A Study on the Development of Induction Heating Mass Production System for Moisture Removal of Secondary Battery)

  • 지완근;김성환;정해영;이석현
    • 한국전기전자재료학회논문지
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    • 제36권1호
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    • pp.42-48
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    • 2023
  • Abstract: In this study, an induction heating system using resonance is developed to remove remaining moisture and contaminations which could be generated during fabricating secondary batteries. This system is composed of power supply and induction coil. Power supply needs an oscillator, zero crossing detection, frequency tracking function, and induction coil needs a dummy coil to obtain a uniform temperature distribution. It is very important to obtain a uniform heating temperature distribution of battery cell case in the induction heating system before pouring electrolyte into battery cell. Experimental results show a temperature distribution deviation of below 1℃ in the external position of battery cell cases. As well, the temperature of battery cell itself shows distribution of 40℃±3℃.

Comparison Study on Power Output Characteristics of Power Management Methods for a Hybrid-electric UAV with Solar Cell/Fuel Cell/Battery

  • Lee, Bohwa;Kwon, Sejin
    • International Journal of Aeronautical and Space Sciences
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    • 제17권4호
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    • pp.631-640
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    • 2016
  • A dual-mode power management for a hybrid-electric UAV with a cruise power of 200W is proposed and empirically verified. The subject vehicle is a low-speed long-endurance UAV powered by a solar cell, a fuel cell, and a battery pack, which operate in the same voltage bounds. These power sources of different operational characteristics can be managed in two different methods: passive management and active management. This study proposes a new power management system named PMS2, which employs a bypass circuit to control the individual power sources. The PMS2 normally operates in active mode, and the bypass circuit converts the system into passive mode when necessary. The output characteristics of the hybrid system with the PMS2 are investigated under simulated failures in the power sources and the conversion of the power management methods. The investigation also provides quantitative comparisons of efficiencies of the system under the two distinct power management modes. In the case of the solar cell, the efficiency difference between the active and the passive management is shown to be 0.34% when the SOC of the battery is between 25-65%. However, if the SOC is out of this given range, i.e. when the SOC is at 90%, using active management displays an improved efficiency of 6.9%. In the case of the fuel cell, the efficiency of 55% is shown for both active and passive managements, indicating negligible differences.

하이브리드 전기추진 시스템 지상통합시험 (Ground Integrated Test for the Hybrid Electric Propulsion System)

  • 이보화;김영문;박부민;김근배;차봉준
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제37회 추계학술대회논문집
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    • pp.772-776
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    • 2011
  • 개발 중인 중형 전기추진 무인기는 전력원으로 태양전지, 연료전지, 이차전지를 사용한다. 전력변환기 및 컨버터를 없이 전압 매칭을 통해 전력원을 선정하고 단품시험을 수행하였다. 여러 종류의 전력원을 통합하여 사용함에 따른 각 전력원 별 특성파악 및 에너지 사용 비율을 정량적으로 평가하기 위해 5시간 지상통합시험을 수행하였다. 그 결과 배터리는 시동 및 과도상태에서 다른 동력원에 비해 빠른 출력반응을 보였으며, 연료전지와 태양전지는 순항영역에서 주 전력 공급원의 역할을 수행함을 확인하였다. 사용한 에너지 비율은 연료전지, 태양전지, 배터리가 각각 68%, 29%, 2.5%임을 알 수 있었다.

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