• 제목/요약/키워드: Battery of Life

검색결과 606건 처리시간 0.028초

배터리 잔존 유효 수명 예측을 위한 전기화학 모델 기반 고장 예지 및 건전성 관리 기술 (Prognostics and Health Management for Battery Remaining Useful Life Prediction Based on Electrochemistry Model: A Tutorial)

  • 최요환;김홍석
    • 한국통신학회논문지
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    • 제42권4호
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    • pp.939-949
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    • 2017
  • 고장 예지 및 건전성 관리 기술(Prognostics and Health Management; PHM)은 시스템의 현재 상태를 진단하고 향후 발생 가능한 고장 시점을 신뢰성 있게 예지하는 기술로써 유지 보수 비용의 절감 및 시스템의 안정성 향상을 꾀하고자 하는 다양한 산업분야에서 활발하게 이용되고 있다. 스마트 그리드의 에너지 저장장치, 전기차, 스마트폰, 항공우주산업 등 광범위한 사용처에서 중요한 에너지원으로 사용되고 있는 배터리 또한 성능 저하 및 폭발의 위험성으로부터 자유로울 수 없기 때문에 이러한 고장 예지 및 건전성 관리 기술이 반드시 적용되어야 할 어플리케이션이다. 본 논문에서는 PHM의 기본적인 개념을 소개함과 동시에 배터리의 잔존 유효 수명(Remaining Useful Life; RUL)을 예측하는 각종 알고리즘 및 성능 평가 지표 서술에 초점을 맞추도록 한다. 더불어 배터리의 기능적 동작 원리 및 전기화학 기반의 모델링에 대한 설명을 통해 향후 잠재적인 가능성을 지닌 배터리의 전반적인 특성에 대한 깊은 이해 및 응용 기술에 대한 통찰력을 제시하고자 한다.

리튬배터리의 잔여 유효 수명 추정을 위한 배터리 모듈용 AC 임피던스 스펙트럼 측정장치 (An AC Impedance Spectrum Measurement Device for the Battery Module to Predict the Remaining Useful Life of the Lithium-Ion Batteries)

  • 이승준;파르한 파루크;칸 아사드;최우진
    • 전력전자학회논문지
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    • 제25권4호
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    • pp.251-260
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    • 2020
  • A growing interest has emerged in recycling used automobile batteries into energy storage systems (ESSs) to prevent their harmful effects to the environment from improper disposal and to recycle such resources. To transform used batteries into ESSs, composing battery modules with similar performance by grading them is crucial. Imbalance among battery modules degrades the performance of an entire system. Thus, the selection of modules with similar performance and remaining life is the first prerequisite in the reuse of used batteries. In this study, we develop an instrument to measure the impedance spectrum of a battery module to predict the useful remaining life of the used battery. The developed hardware and software are used to apply the AC perturbation to the used battery module and measure its impedance spectrum. The developed instrument can measure the impedance spectrum of the battery module from 0.1 Hz to 1 kHz and calculate the equivalent circuit parameters through curve fitting. The performance of the developed instrument is verified by comparing the measured impedance spectra with those obtained by a commercial equipment.

2.3 kW급 전기자동차 배터리팩용 냉각 장치의 열전달 특성에 관한 해석적 연구 (Numerical Analysis of Heat Transfer Characteristics of Cooling System for 2.3 kW EV Battery Pack)

  • 성동민;박용석;성홍석;서정세
    • 한국기계가공학회지
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    • 제21권6호
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    • pp.44-49
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    • 2022
  • The improvement in the battery performance and life using a battery thermal management system directly affects the improvement in the performance, life, and energy efficiency of electric vehicles. Therefore, this study numerically analyzed the heat exchange processes between the coolant inside the cooling plate channel and the heat generated by the battery. The cooling performance was analyzed based on the average temperature, temperature uniformity, and the maximum and minimum temperature differences of the battery. A performance difference existed depending on the coolant inlet temperature but showed the same tendency of cooling performance according to the shape of each plate's channel. Type 1 showed the best results in terms of battery temperature uniformity, which is the most important measure of battery performance; Type 2 showed the best results in terms of the average temperature of the battery; and Type 3 showed the best results in terms of the maximum and minimum temperature differences of the battery compared with that of the other cooling plates.

전기적인 특성향상을 위한 리튬이온전지팩 개발 (Development of a new Li-Ion Pack-Battery for improving the electrical properties)

  • 강용구;권현규;서명수;박창용
    • 한국기계가공학회지
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    • 제8권2호
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    • pp.90-95
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    • 2009
  • This paper presents a new lithium ion unit-cell and pack battery by using a new formulation ratio of material. The three types of formulation ratio for the unit-cell were used. The life cycle and basic properties of the lithium ion unit-cell$({\Psi}18{\times}65(mm))$ about one of them were acquired by the charge-discharge experiment. The nominal voltage, nominal capacity and cycle life output of the lithium ion unit-cell is respectively 3.7V, 2.4Ah, and above 500cycle. Pack type lithium ion battery has the size of $29.5{\times}73.5{\times}115(mm)$ and the weight of 300g. As the results, the weight and bulk of lithium ion battery used to a safety lamp were decreased to 1/4 and 1/7. In addition, the comparison of the new lithium ion battery and lead storge battery for confirming the effectiveness of the new lithium ion battery have been performed.

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니켈카드뮴 축전지의 성능시험 분석 (An Analysis of Performance Test Results for Nickel-Cadmium Battery)

  • 온정근;김명룡;김원경;홍용기
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2003년도 추계학술대회 논문집(III)
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    • pp.600-605
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    • 2003
  • Battery of rolling stock is a very important device as power supply at starting and emergency control. This paper analyzes the quality of Ni-Cd battery by means of performance test. Ni-Cd battery have suitable and stable properties. That is very stable to discharge on low temperature state and very easy to manage and repair. This paper confirm the performance and property of Ni-Cd battery on low temperature environment by the performance test and estimate the life-cycle of Ni-Cd battery on board at rolling-stock by the life-test and the using-test.

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이차전지의 상태 감시 및 수명 예측 알고리즘 개발 (Development of State of Charge and Life Cycle Evaluation Algorithm for Secondary Battery)

  • 박재범;김병기;송석환;노대석
    • 한국산학기술학회논문지
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    • 제14권1호
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    • pp.369-377
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    • 2013
  • 현재 전기자동차와 신재생에너지전원의 출력안정화에 필수적인 2차전지가 개발되고 있고, 2차전지의 효율적인 운용을 위하여 상태감시 기술과 수명예측 기술이 요구되고 있다. 기존의 2차전지 상태감시 방법으로는 전압과 비중에 의한 충전상태평가 방법 등이 있으나, 이 방법은 온도에 따라 변화되는 전압과 비중의 특성을 고려할 수 없는 한계점을 가지고 있다. 즉, 2차전지의 SOC를 평가하기 위해서는 전지 케이스 내부의 전해액 온도에 따라 달라지는 비중 값을 측정해야 하지만, 대부분의 2차전지는 밀폐형으로 보급되고 있어서 전해액의 상태를 파악하기 어려운 실정이다. 따라서 본 논문에서는 전지내부의 온도를 보정하는 열전달식을 유도함으로 정확한 SOC평가 알고리즘을 제시하였다. 또한 2차전지의 수명 예측 방법으로는 내부저항 측정 또는 잔존 용량 측정 등의 수명 예측 방법들이 있으나, 충 방전상태와 충전 후 방치시간, 사용 환경 등 여러 가지 요인에 의해 2차전지의 수명을 정확하게 판단하기 어렵다. 따라서 상기의 문제점을 해결하기 위해 $20^{\circ}C$로 환산된 비중 값에 대하여 전지의 충 방전에 대한 비중누적 값을 계산함으로 충 방전 사이클을 판정하는 수명예측 알고리즘을 제시하였다. 상기에서 제시한 알고리즘을 바탕으로 시험 장치를 제작하여 다양한 시뮬레이션을 수행한 결과, 기존의 방법에 비하여 본 논문에서 제안한 알고리즘이 정확한 연축전지의 상태감시 및 수명예측에 대한 결과를 얻을 수 있음을 확인하였다.

Parameter Identification of 3R-C Equivalent Circuit Model Based on Full Life Cycle Database

  • Che, Yanbo;Jia, Jingjing;Yang, Yuexin;Wang, Shaohui;He, Wei
    • Journal of Electrical Engineering and Technology
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    • 제13권4호
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    • pp.1759-1768
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    • 2018
  • The energy density, power density and ohm resistance of battery change significantly as results of battery aging, which lead to decrease in the accuracy of the equivalent model. A parameter identification method of the equivale6nt circuit model with 3 R-C branches based on the test database of battery life cycle is proposed in this paper. This database is built on the basis of experiments such as updating of available capacity, charging and discharging tests at different rates and relaxation characteristics tests. It can realize regular update and calibration of key parameters like SOH, so as to ensure the reliability of parameters identified. Taking SOH, SOC and T as independent variables, lookup table method is adopted to set initial value for the parameter matrix. Meanwhile, in order to ensure the validity of the model, the least square method based on variable forgetting factor is adopted for optimizing to complete the identification of equivalent model parameters. By comparing the simulation data with measured data for charging and discharging experiments of Li-ion battery, the effectiveness of the full life cycle database and the model are verified.

CFD 해석을 적용한 18650 리튬-이온 배터리 팩의 열 해석 신뢰도 기초 분석 (Basic Investigation into the Validity of Thermal Analysis of 18650 Li-ion Battery Pack Using CFD Simulation)

  • 심창휘;김한상
    • 한국수소및신에너지학회논문집
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    • 제31권5호
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    • pp.489-497
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    • 2020
  • The Li-ion battery is considered to be one of the potential power sources for electric vehicles. In fact, the efficiency, reliability, and cycle life of Li-ion batteries are highly influenced by their thermal conditions. Therefore, a novel thermal management system is highly required to simultaneously achieve high performance and long life of the battery pack. Basically, thermal modeling is a key issue for the novel thermal management of Li-ion battery systems. In this paper, as a basic study for battery thermal modeling, temperature distributions inside the simple Li-ion battery pack (comprises of nine 18650 Li-ion batteries) under a 1C discharging condition were investigated using measurement and computational fluid dynamics (CFD) simulation approaches. The heat flux boundary conditions of battery cells for the CFD thermal analysis of battery pack were provided by the measurement of single battery cell temperature. The temperature distribution inside the battery pack were compared at six monitoring locations. Results show that the accurate estimation of heat flux at the surface of single cylindrical battery is paramount to the prediction of temperature distributions inside the Li-ion battery under various discharging conditions (C-rates). It is considered that the research approach for the estimation of temperature distribution used in this study can be used as a basic tool to understand the thermal behavior of Li-ion battery pack for the construction of effective battery thermal management systems.

Long range-based low-power wireless sensor node

  • Komal Devi;Rita Mahajan;Deepak Bagai
    • ETRI Journal
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    • 제45권4호
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    • pp.570-580
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    • 2023
  • Sensor nodes are the most significant part of a wireless sensor network that offers a powerful combination of sensing, processing, and communication. One major challenge while designing a sensor node is power consumption, as sensor nodes are generally battery-operated. In this study, we proposed the design of a low-power, long range-based wireless sensor node with flexibility, a compact size, and energy efficiency. Furthermore, we improved power performance by adopting an efficient hardware design and proper component selection. The Nano Power Timer Integrated Circuit is used for power management, as it consumes nanoamps of current, resulting in improved battery life. The proposed design achieves an off-time current of 38.17309 nA, which is tiny compared with the design discussed in the existing literature. Battery life is estimated for spreading factors (SFs), ranging from SF7 to SF12. The achieved battery life is 2.54 years for SF12 and 3.94 years for SF7. We present the analysis of current consumption and battery life. Sensor data, received signal strength indicator, and signal-to-noise ratio are visualized using the ThingSpeak network.

Step 충전을 통한 Mobile 기기용 Li-Ion Smart Battery의 LifeCycle 개선방안 (Lifecycle Improvement Method of Step Charge for Mobile Applications)

  • 김성훈;유지윤
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2011년도 추계학술대회
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    • pp.22-23
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    • 2011
  • 본 논문은 Battery의 열화 특성을 반영한 순차적 Step Charge를 통한, Mobile 기기용 Li-Ion Smart Battery의 Life Cycle 개선기술을 제안 하고자 한다. 현재 기술수준의 Li-Ion 2차전지 수명은 표준충방전 300~500cycle 내외이나. 초기용량을 희생하지 않고도 Smart Battery 내부의 ASOC(Absolute State of Charge)와 연동하여 Battery 수명열화 곡선을 추종하는 최적화된 가변 충전전압을 순차적 Step Charge로 제공하여 Li-Ion 2차 전지의 수명열화를 개선하고, 열화 특성의 검토 및 개선효과 확인을 논문의 목적으로 한다.

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