• 제목/요약/키워드: Lithium-Ion battery

검색결과 923건 처리시간 0.026초

Development of Low Cost, High-Performance Miniaturized Lithium-ion Battery Tester Using Raspberry Pi Zero

  • La, Phuong-Ha;Im, Hwi-Yeol;Choi, Sung-Jin
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2017년도 추계학술대회
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    • pp.47-48
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    • 2017
  • This paper presents a low-cost portable lithium battery parameter measuring and estimating the solution. In this method, lithium battery characteristics are monitored during discharging and charging cycles. The battery profile is analyzed, and its key parameters are estimated by GNU Octave running on Raspberry Pi Zero, a mini computer. The proposed method can measure and estimate the battery parameters for SOC and DOD estimation with reasonable accuracy as well as portability features.

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트랜스포머 1차측 병렬 구조를 가진 직렬 연결 리튬이온 배터리 전하 균일 컨버터 (Charge Equalization Converter with Parallel Primary Winding for Series Connected Lithium-Ion Battery strings)

  • 김철호;박홍선;김정은;문건우;이중휘
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2007년도 하계학술대회 논문집
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    • pp.256-258
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    • 2007
  • A charge equalization converter with parallel-connected primary windings of transformers is proposed in digest. The proposed work effectively balance the voltage among Lithium-Ion battery cells despite each battery cell has low voltage gap compared with its SOC. The principle of the proposed work is that the equalizing energy from all battery strings moves to the lowest voltage battery through the isolated dc/dc converter controlled by the corresponding bi-directional switch. In this digest, a prototype of four Lithium-Ion battery cells is optimally designed and implemented, and experimental results show that the proposed method has excellent cell balancing performance.

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리튬이온폴리머전지용 가교형 겔폴리머전해질의 중합조건 최적화 연구 (Optimization Study on Polymerization of Crosslink-type Gel Polymer Electrolyte for Lithium-ion Polymer Battery)

  • 김현수;문성인;김상필
    • 한국전기전자재료학회논문지
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    • 제18권1호
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    • pp.68-74
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    • 2005
  • In this work, polymerization conditions of the gel polymer electrolyte (GPE) were studied to obtain better electrochemical performances in a lithium-ion polymer battery. When the polymerization temperature and time of the GPE were 70$^{\circ}C$ and 70 min, respectively, the lithium polymer battery showed excellent a rate capability and cycleability. The TMPETA (trimethylolpropane ethoxylate triacrylate)/TEGDMA (triethylene glycol dimethacrylate)-based cells prepared under optimized polymerization conditions showed excellent rate capability and low-temperature performances: The discharge capacity of cells at 2 Crate showed 92.1 % against 0.2C rate. The cell at -20 $^{\circ}C$ also delivered 82.4 % of the discharge capacity at room temperature.

Experiment and Electro-Thermo-Chemical Modeling on Rapid Resistive Discharge of Large-Capacity Lithium Ion Battery

  • Doh, Chil-Hoon;Ha, Yoon-Cheol;Eom, Seung-Wook;Yu, Jihyun;Choe, Seon-Hwa;Kim, Seog-Whan;Choi, Jae-Won
    • Journal of Electrochemical Science and Technology
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    • 제13권3호
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    • pp.323-338
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    • 2022
  • Heat generation and temperature of a battery is usually presented by an equation of current. This means that we need to adopt time domain calculation to obtain thermal characteristics of the battery. To avoid the complicated calculations using time domain, 'state of charge (SOC)' can be used as an independent variable. A SOC based calculation method is elucidated through the comparison between the calculated results and experimental results together. Experiments are carried for rapid resistive discharge of a large-capacitive lithium secondary battery to evaluate variations of cell potential, current and temperature. Calculations are performed based on open-circuit cell potential (SOC,T), internal resistance (SOC,T) and entropy (SOC) with specific heat capacity.

블루투스 기반 리튬인산철 배터리팩을 위한 BMS 모듈 알고리즘 개발에 관한 연구 (A Study on Development of BMS module Algorithm for Bluetooth-based Lithium-Iron Phosphate Battery pack)

  • 김종민;류갑상
    • 한국융합학회논문지
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    • 제12권4호
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    • pp.1-8
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    • 2021
  • 현재 자동차를 포함한 에너지 저장장치 제품에는 리튬 이온 배터리가 주로 사용되고 있으며, 이를 과충전하거나, 고온 상황에 방치하는 잘못된 배터리 관리 상황 발생시 폭발 등 위험한 상황에 노출될 수 있으며, 과방전 시 배터리 불능 상황을 야기한다. 이로 인해 배터리 상태를 관리해주는 시스템이 필요하며 배터리 관리 시스템은 배터리 상태를 정확하게 인지하고 각 셀의 전압을 일정하게 유지하여 최적의 배터리 효율을 얻는 데 목적이 있다. 본 논문에서는 일반적 리튬이온배터리에 비해 고안전성을 갖는 리튬인산철 배터리팩과 이를 관리하기 위해 Matlab Simulink 기반의 시뮬레이션을 사용하여 셀 특성을 확인할 수 있는 RC등가회로 모델을 이용한 분석방법을 제시하고, 저전력 및 상호통신간섭이 적은 블루투스 기반 BMS 모듈의 알고리즘을 개발하였다.

은 담지한 흑연을 부극 활물질로 이용한 Lithium ion 2차전지의 충방전 특성 (Charge/Discharge Characteristics of Lithium ion Secondary Battery Using Ag-deposited Graphite as Anode Active Material)

  • 김상필;조정수;박정후;윤문수
    • 한국전기전자재료학회논문지
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    • 제11권9호
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    • pp.727-732
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    • 1998
  • Ag-deposited graphite powder was prepared by a chemical reduction method of metal particles onto graphite powder. X-ray diffraction observation of Ag-deposited graphite powder revealed that silver existed in a metallic state, but not in an oxidized one. From SEM measurement, ultrafine silver particles were highly dispersed on the surface of graphite particles. Cylindrical lithium ion secondary battery was manufactured using Ag-deposited graphite anodes and $LiCoO_2$ cathodes. The cycleability of lithium ion secondary battery using Ag-deposited graphite anodes was superior to that of original graphite powder. The improved cycleability may be due to both the reduction of electric resistance between electrodes and the highly durable Ag-graphite anode.

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시계열 모델 기반의 계절성에 특화된 S-ARIMA 모델을 사용한 리튬이온 배터리의 노화 예측 및 분석 (Degradation Prediction and Analysis of Lithium-ion Battery using the S-ARIMA Model with Seasonality based on Time Series Models)

  • 김승우;이평연;권상욱;김종훈
    • 전력전자학회논문지
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    • 제27권4호
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    • pp.316-324
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    • 2022
  • This paper uses seasonal auto-regressive integrated moving average (S-ARIMA), which is efficient in seasonality between time-series models, to predict the degradation tendency for lithium-ion batteries and study a method for improving the predictive performance. The proposed method analyzes the degradation tendency and extracted factors through an electrical characteristic experiment of lithium-ion batteries, and verifies whether time-series data are suitable for the S-ARIMA model through several statistical analysis techniques. Finally, prediction of battery aging is performed through S-ARIMA, and performance of the model is verified through error comparison of predictions through mean absolute error.

NCM계 리튬이온 배터리 양극재의 수소환원 거동 (Hydrogen Reduction Behavior of NCM-based Lithium-ion Battery Cathode Materials)

  • 이소영;이소연;이대현;손호상
    • 한국분말재료학회지
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    • 제31권2호
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    • pp.163-168
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    • 2024
  • As the demand for lithium-ion batteries for electric vehicles is increasing, it is important to recover valuable metals from waste lithium-ion batteries. In this study, the effects of gas flow rate and hydrogen partial pressure on hydrogen reduction of NCM-based lithium-ion battery cathode materials were investigated. As the gas flow rate and hydrogen partial pressure increased, the weight loss rate increased significantly from the beginning of the reaction due to the reduction of NiO and CoO by hydrogen. At 700 ℃ and hydrogen partial pressure above 0.5 atm, Ni and Li2O were produced by hydrogen reduction. From the reduction product and Li recovery rate, the hydrogen reduction of NCM-based cathode materials was significantly affected by hydrogen partial pressure. The Li compounds recovered from the solution after water leaching of the reduction products were LiOH, LiOH·H2O, and Li2CO3, with about 0.02 wt% Al as an impurity.

리튬이온 배터리 동특성 및 안전성 평가를 위한 배터리 시뮬레이터 시험설비 (Test Facility of Battery Simulator for Dynamic Characteristics and Safety Evaluation in Lithium-ion Battery)

  • 정성인;윤용호
    • 한국인터넷방송통신학회논문지
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    • 제24권2호
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    • pp.133-138
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    • 2024
  • 리튬이온 배터리는 높은 에너지 밀도 빠른 충전조건 긴 사이클수명의 특성으로 여러 분야에서 사용되고 있다. 하지만 리튬이온 배터리는 과충전, 과방전, 물리적손상, 고온에서의 사용은 배터리 수명 감소와 보호회로 손상에 의한 화재 및 폭발에 의한 인명피해를 입힐 수 있다. 이러한 배터리의 위험성을 낮추며 배터리 성능을 향상시키기 위해서는 충전 및 방전 과정에서의 특성들을 분석하고 이해하여야 한다. 따라서 본 논문에서는 배터리 충방전기와 시뮬레이터를 활용하여 리튬이온 배터리의 충전 및 방전 특성을 분석하여 과충전 과방전에 따른 배터리 수명 감소와 보호회로 손상에 의한 화재 및 폭발에 의한 인명피해를 줄이고자 한다.

FEMLAB을 이용한 리튬이온전지의 발열특성 평가모델링 (Evaluation Modeling Heat Generation Behavior for Lithium-ion Battery Using FEMLAB)

  • 이대현;윤도영
    • 청정기술
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    • 제18권3호
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    • pp.320-324
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    • 2012
  • 본 연구에서는 리튬이온전지의 방전특성에 따른 열발생 속도를 계산하여 전지의 특성을 평가하였다. 이를 위하여 Butler-Volmer 식을 지배방정식으로 하여, 유사 2차원 모델링을 적용하고, 편미분 연산자인 FEMLAB을 이용하여 전산모사를 수행하였다. 전류밀도를 5 $A/m^2$에서 25 $A/m^2$까지 증가시켜 계산을 수행한 결과, 전류밀도가 증가함에 따라 전극표면에서 고체상 리튬의 소모량이 증가되는 것으로 나타났다. 이로 인한 확산제한의 발생시점이 단축되었으며, 동시에 리튬이온전지의 내부 전위가 컷오프 전위에 도달하는 시점에서 열발생 속도가 급격하게 증가되는 현상을 보여주었다.