• Title/Summary/Keyword: Ni-MH battery

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Photovoltaic Streetlight System using Ni-MH Battery (Ni-MH전지를 적용한 태양광 가로등시스템)

  • Hyun, D.S.;Jang, M.H.;Jeong, N.I.;Kim, D.G.;Choi, Y.O.;Cho, G.B.
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.618-620
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    • 2008
  • 본 논문에서는 대기 오염 물질의 방출이 적고, 소음이 적은 환경 친화적인 Ni-MH전지를 독립형 태양광 가로등시스템에 적용하였으며 충방전제어기를 구성하여 출력특성을 고찰하였다. 출력특성을 고찰한 결과 충전 및 방전이 원활히 진행됨을 알 수 있었다. 그러나 충전시 정전압 충전방식을 사용하였고 태양 전지 출력측에 MPPT제어가 이루어 지지 않은 탓으로 태양전지 이용률이 떨어지며 화창한 날 태양전지의 등가 발전시간은 약 6시간에서 7시간 정도 나오지만 축전지는 오전 중에 충전이 완료되고 오후발전량은 모두 버리게 됨을 알 수 있었다.

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An Improvement in the Properties of MH Electrode of Ni/MH Battery by the Copper Coating (Ni/MH 전지에서 Cu 도금에 의한 음극활물질의 전극 특성 향상)

  • Cho, Jin Hun;Kim, In Jung;Lee, Yun Sung;Nahm, Kee Suk;Kim, Ki Ju;Lee, Hong Ki
    • Applied Chemistry for Engineering
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    • v.8 no.4
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    • pp.568-574
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    • 1997
  • The effect of microencapsulation of maetal hydride (MH) with copper on the electrode performance of a Ni/MH battery has been investigated. The MH electrodes were prepared with a combination of cold press and paste methods. The discharge capacity of the electrode increased with an addition of small amounts if CMC into the electrode, but decreased when heat-treated in an oxygen-free nitrogen flow. The capacity of a Cu-coated $LaNi_5$ electrode was higher than that of LaNi5electrode. The discharge capacity of the electrode prepared with Cu-coated $LaNi_5$ increased with the increase of copper content in the electrode. It is considered that the increase of copper content enhanced the current density on the electrode surface, leading to the increase of the discharge capacity The MH electrode coated by an acidic electroless plating method showed much higher discharge capacity than that using an alkaline electroless plating method. The discharge capacity of the $LaNi_{4.5}Al_{0.5}$ electrode was higher than that of the $LaNi_5$ electrode. Also, the effect of microencapsulation on the deactivation of $LaNi_5$ was studied using an absorption-desorption cycle in CO-containing hydrogen.

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A Study on SOC Algorithm and Design of Battery ECU for Hybrid Electric Vehicle (하이브리드 전기자동차용 배터리 ECU 설계 및 잔존용량 알고리즘에 관한 연구)

  • 남종하;최진홍;김승종;황호석;김재웅
    • The Transactions of the Korean Institute of Power Electronics
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    • v.9 no.4
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    • pp.319-325
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    • 2004
  • The major factors that make ZEV affordable are the range and cost. The development of advanced batteries such as Ni-MH battery can solve the problem partly; on the hand the battery management system is an efficient way. Ni-MH battery and battery ECU is a key component influencing ZEV performance, such as range, acceleration and hill-climbing capability. Because most problems related to battery such as short circuit, over-discharge and overcharge occur easily during operation, it is necessary to develop a dedicated battery ECU for HEV. This paper proposes a new SOC algorithm for the HEV based on the terminal voltage and current integration. And battery ECU was designed and analyzed. Also, the validity is confirmed through experiment.

Development of Preparation Technique of Sintered Ni Electrode (소결식 니켈극 제조기술 개발)

  • Kim, Chan-Jung;Kim, Dai-Ryong
    • Transactions of the Korean hydrogen and new energy society
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    • v.10 no.3
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    • pp.159-170
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    • 1999
  • Recently Ni/MH secondary battery have been studied very extensively because of containing no pollutants as well as superior performance. However comparing to widely studying high capacity of hydrogen storage alloys electrode, the capacity of Ni electrode is inferior. Using for high capacity Ni/MH battery as a anodic materials, the study about high capacity Ni electrode is necessary. To making high capacity Ni electrode, active materials were impregnated in various polarization impregnation conditions. Plaque, milling for 6hr and sintered at $800^{\circ}C$, indicated porosity over 80%, and porosity were increased with proper condition electrochemical etching treatment. Proper impregnation condition was 40~80mA/cm, polarizing time was 5~10min.

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Three-phase Power Equalizing System with UPS Function based on Battery Storage (UPS 기능을 가지는 배터리 기반의 삼상 전력 평준화 시스템)

  • Kwon, Jung-Min
    • The Transactions of the Korean Institute of Power Electronics
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    • v.17 no.4
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    • pp.353-358
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    • 2012
  • In this paper, three-phase power equalizing system (PES) with UPS function is proposed. This system is based on NiMH battery with battery management system. The power conversion circuit is composed with the three-phase converter/inverter, the bi-directional converter, and the thyristor switches. The three-phase converter/inverter provides the power to the grid or get the power from the grid. Also, it operates as a UPS. The bi-directional converter charges or discharges the battery. The thyristor switches are used for connecting/disconnecting with the grid and the load. A 15 kW prototype is implemented for the verifying the performance of the proposed system.

Electrochemical Study of Electrode Material of Ni-MH Battery for HEV and PEMFC Fuel Cell (HEV 및 PEMFC 연료전지용 니켈수소 전지의 전극재료에 대한 전기화학적 평가)

  • Kim, Ho-Sung
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.20 no.2
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    • pp.24-28
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    • 2006
  • Electrochemical hydrogenation/dehydrogenation properties were studied for a single particle of a Mm-based(Mm : misch metal) hydrogen storage alloy($MmNi_{3.55}Co_{0.75}Mn_{0.4}Al_{0.3}$) for the anode of Ni-MH batteries. A carbon fiber microelectrode was manipulated to make electrical contact with an alloy particle, and the cyclic voltammetry and the galvanostatic charge/discharge experiments were performed. A single particle of the alloy showed the discharge capacity of 280[mAh/g], the value being 90[%] of the theoretical capacity. Data were compared with that of the composite film consisting of the alloy particles and a polymer binder, which is more practical form for Ni-MH batteries. Additionally, pulverization of the alloy particles are directly observed. Compared with the conventional composite film electrodes, the single particle measurements using the microelectrode gave more detailed, true information about the hydrogen storage alloy.

Electrochemical Properties of Laves Phase Zr-V System Hydrogen Absorbing Alloys (Zr-V계 Laves상 수소저장합금의 전기화학적 성질)

  • Park, Chan-kyo;Cho, Tae-hwan
    • Transactions of the Korean hydrogen and new energy society
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    • v.8 no.2
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    • pp.51-56
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    • 1997
  • The Zr-based Laves phase, $ZrV_2$ hydrogen storage alloy is not suited for the electrode of Ni-MH battery, because the binding strength of that with hydrogen is too strong although the storage capacity is high. For an application to electrode a part of V in alloys is substituted with Ni to make weaken the binding strength. The electrochemical and thermodynamic properties of Zr-V-Ni system alloys are investigated from the equilibrium potential and studied the possibility for the application to the rechargeable battery electrode.

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Electrode Fabrication and Electrochemical Characterization of a Sealed Ni-MH Battery for Industrial Use (산업용 밀폐형 니켈수소전지의 전극 제조 및 전기화학적 특성)

  • An, Yang-Im;Kim, Sae-Hwan;Jo, Jin-Hun;Kim, Ho-Sung
    • Journal of the Korean Electrochemical Society
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    • v.11 no.4
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    • pp.289-296
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    • 2008
  • Electrochemical studies were performed by a half-cell test for the nickel hydroxide (cathode) and hydrogen storage alloy(anode) electrodes for the sealed Ni-MH batteries applicable to industrial use. The electrodes were fabricated and checked a charge efficiency and an internal pressure of the battery during charge-discharge cycling. In order to reduce the internal pressure of the sealed Ni-MH battery, cyclic voltammetry (CV) were performed on the electrodes of nickel hydroxide(cathode) and hydrogen storage alloy(anode), respectively. The results of the test showed clearly the oxidation/reduction and oxygen evolution reaction in a nickel hydroxide electrode and the hydrogenation behavior of a hydrogen storage electrode. The sealed Ni-MH battery of 130Ah was fabricated by using nickel hydroxide of a high over-voltage for an oxygen gas evolution and hydrogen storage alloy of a good performance for activation The battery showed a good characteristics such as a high charge efficiency of 98% at 1 C charge current, a low level internal pressure of 4 atm on a continuous over-charging and a large preservation capacity of 95% at 400 cycle.

NiMH battery charge/discharge test considering C-rate (C-rate를 고려한 NiMH 배터리 충·방전 특성실험)

  • Kong, Seil;Lee, Jongkyung;Cha, Hanju
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.58-59
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    • 2011
  • 본 논문은 전류에 따른 NiMH 배터리의 성능 변화를 충 방전 실험을 통하여 비교 분석하였다. 따라서 실험을 통하여 NiMH 배터리의 데이터시트에 있는 충 방전 특성곡선과 실제 실험을 통한 충 방전 특성곡선을 비교 분석한다. 또한 충 방전 전류의 크기에 따라 변하는 특성곡선의 차이를 비교 분석한다. 전류 변화에 의한 배터리 분석을 위해 0.2C, 0.5C, 1C, 2C 정전류 충 방전 실험과 동일한 C-rate로 펄스전류로 충 방전 실험을 하였다. 실험을 통해서 얻은 데이터로 1차 Randles 등가회로를 통해 C-rate변화와 잔존용량 변화에 의한 파라미터 분석과 잔존용량-개로전압 곡선에서의 충 방전 히스테리시스를 알아보았다.

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A Study on the Alloy Design of High Capacity Ti-Based Metal Hydride for Ni/MH Rechargeable Battery (Ni/MH 2차 전지용 고용량 Ti계 수소저장합금의 설계에 관한 연구)

  • Lee, Han-Ho;Lee, Jai-Young
    • Transactions of the Korean hydrogen and new energy society
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    • v.7 no.1
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    • pp.19-28
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    • 1996
  • Ti-Mn based hydrogen storage alloy were modified by substituting alloying elements such as Zr, V and Ni in order to design a high capacity MH electrode for Ni/MH rechargeable battery. When V was substituted in Ti-Mn binary system, the crystal structure was maintained as $Cl_4$ Laves phase at a composition of $Ti_{0.2}V_{0.4}Mn_{0.4}$ and $Ti_{0.4}V_{0.2}Mn_{0.4}$ and equilibrium pressure decreased below 1 atm without decreasing hydrogen storage capacity considerably. It was found that Ni should be included in Ti-V-Mn alloy in order to hydrogenate it electrochemically in KOH electrolyte. But substitution of Ni for Mn in Ti-V-Mn system caused the increase of equilibrium pressure above 1atm and decrease of hydrogen storage capacity. Zr was able to increase the reversible hydrogen storage capacity of Ti-V-Mn-Ni alloy without considerable change of hydrogenation properties. The electrochemical discharge capacity of Ti-Zr-V-Mn-Ni system were in the range of 350 - 464mAh/g and among them $Ti_{0.8}Zr_{0.2}V_{0.5}Mn_{0.5}Ni_{1.0}$ alloy had $Cl_4$ Laves single phase and very high electrochemical discharge capacity of 464mAh/g.

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