• 제목/요약/키워드: charger

검색결과 622건 처리시간 0.03초

전기자동차 충전기용 2-Stage 자기유도 무선전력전송 시스템 (Two-Stage Inductive Power Transfer Charger for Electric Vehicles)

  • 김민중;주동명;안상준;이병국
    • 전력전자학회논문지
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    • 제22권2호
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    • pp.134-139
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    • 2017
  • In this study, an inductive power transfer (IPT) charger for electric vehicles is proposed to improve the entire system efficiency and power density by eliminating the DC-DC converter in the secondary side. In the proposed IPT charger, the DC-link voltage is adjusted according to the coupling coefficient through cascade buck-boost converter in the front-end side, and the bridgeless rectifier performs the charging of battery. The control algorithm for the proposed IPT system is theoretically explained, and the validity of the proposed system is verified by informative simulation.

양면 LCC 보상 회로를 가진 무선 전력 충전기용 공진 컨버터의 설계 (Design of the Resonant Converter with a Double Sided LCC Compensation Circuit for Wireless Charger.)

  • 부반빈;트란덕홍;최우진
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2015년도 전력전자학술대회 논문집
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    • pp.321-322
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    • 2015
  • The aim of this paper is to propose a design method for the double-sided LCC compensation circuit for 6.6kW electric vehicle (EVs) wireless charger. The analysis and comparison with several compensation topologies such as SS, SP, PS, PP and the hybrid LCC compensation is presented. It has been found that the hybrid LCC compensation has superior performance in comparison with other topologies. The design procedure for the EV charger is presented and the PSIM simulation results are provided.

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충전데이터를 이용한 이상감지 제어시스템 (Abnormality Detection Control System using Charging Data)

  • Moon, Sang-Ho
    • 한국정보통신학회논문지
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    • 제26권2호
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    • pp.313-316
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    • 2022
  • In this paper, we implement a system that detects abnormalities in the charging data transmitted from the charger during the charging process of electric vehicles and controls them remotely. Using classification algorithms such as logistic regression, KNN, SVM, and decision trees, to do this, an analysis model is created that judges the data received from the charger as normal and abnormal. In addition, a model is created to determine the cause of the abnormality using the existing charging data based on the analysis of the type of charger abnormality. Finally, it is solved using unsupervised learning method to find new patterns of abnormal data.

전기자동차 충전기의 누전차단기 감도 전류 Trip 방지를 위한 Joule Heating 시뮬레이션 방안연구 (A Study on Joule Heating Simulation Method to Prevent Sensitivity Current Trip of Electric Vehicle Charger)

  • 이병국;어익수
    • 한국산학기술학회논문지
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    • 제22권4호
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    • pp.150-159
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    • 2021
  • 본 논문에서는 충전 시 발생하는 누전차단기 Trip으로 충전 중단에 의한 전기자동차 사용자의 불편함을 방지하기 위한 것이다. 현장 사례연구로 충전기 고장(failure) 유형, 차종별 누설전류 측정실험, 누전차단기 동작 실험 시 여름철 충전기 내부 온도가 60 ℃이상까지 상승하여 누전차단기가 정격 감도 전류의 80%에서 Trip으로 충전 중단됨을 확인하였다. Joule Heating 모델링을 통하여 32A 전류를 초기 시간 t=0 (s)의 기준온도 30℃에서 통전하여 t=3000 (s)경과 후에는 누전차단기 충전부 주위에서 발열이 32.4℃까지 증가함을 시뮬레이션으로 확인하였으며, 통계 검증 tool을 활용하여 온도 및 시간(s) 요인이 발생 열량에 상관관계 0.97로 검증되었다. 본 논문의 연구 실험 결과는 충전기 기구 물 개발 시 충전케이스의 재질, 내부 배선의 배치, 유전 매질에 따른 Joule Heating 시뮬레이션 수행으로 여름철 충전기 내부 온도 상승에 의한 누전차단기 감도 전류 Trip을 방지할 수 있음을 알 수 있었다.

더 형 core를 사용한 비접촉식 충전장치에 관한 연구 (Contactless Battery Charger with a the type Core)

  • 신태성
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2000년도 전력전자학술대회 논문집
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    • pp.678-681
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    • 2000
  • Contactless battery charger with a "더" type core is proposed in this paper. The proposed take-apart transformer maintain a high coupling coefficient in spite of air gap. The ZV-ZCS method is used for the efficiency and stable opeation of the system.he system.

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Corona Discharge Characteristics and Particle Losses in a Unipolar Corona-needle Charger Obtained through Numerical and Experimental Studies

  • Intra, Panich;Yawootti, Artit;Rattanadecho, Phadungsak
    • Journal of Electrical Engineering and Technology
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    • 제12권5호
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    • pp.2021-2030
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    • 2017
  • In this paper, the unipolar corona-needle charger was developed and its capabilities were both numerically and experimentally investigated. The experimental corona discharges and particle losses in the charger were obtained at different corona voltage, aerosol flow rate and particle diameter for positive and negative coronas. Inside the charger, the electric field and charge distribution and the transport behavior of the charged particle were predicted by a numerical simulation. The experimental results yielded the highest ion number concentrations of about $1.087{\times}10^{15}ions/m^3$ for a positive corona voltage of about 3.2 kV, and $1.247{\times}10^{16}ions/m^3$ for a negative corona voltage of about 2.9 kV, and the highest $N_it$ product for positive and negative coronas was found to about $7.53{\times}10^{13}$ and $8.65{\times}10^{14}ions/m^3$ s was occurred at the positive and negative corona voltages of about 3.2 and 2.9 kV, respectively, and the flow rate of 0.3 L/min. The highest diffusion loss was found to occur at particles with diameter of 30 nm to be about 62.50 and 19.33 % for the aerosol flow rate of 0.3 and 1.5 L/min, respectively, and the highest electrostatic loss was found to occur at particles with diameters of 75 and 50 nm to be about 86.29 and 72.92 % for positive and negative corona voltages of about 2.9 and 2.5 kV, respectively. The numerical results for the electric field distribution and the charged particles migration inside the charger were used to guide the description of the electric field and the behavior of charged particle trajectories to improve the design and refinement of a unipolar corona-needle charger that otherwise could not be seen from the experimental data.

응축 증발법을 통한 서브마이크론 입자의 단극하전 특성 (Characteristics of Unipolar Charging of the Submicron Particles by the Condensation-Evaporation Method)

  • 최영주;김상수
    • 대한기계학회논문집B
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    • 제30권2호
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    • pp.186-192
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    • 2006
  • We applied a new charging system using the condensation and evaporation method to charge the submicron particles with a uniform charging performance. The monodispersed NaCl submicron particles were condensed by n-butanol vapor and grew up to micron droplets with a same size, regardless of their initial size. Those condensed droplets were charged in an indirect corona charger. The indirect corona charger consisted of the ion generation zone and the particle charging zone. In the ion generation zone, Ions were generated by corona discharge and some of them moved into the particle charging zone by a carrier gas and mixed with the condensed droplet. And finally, the charged and condensed droplets dried through an evaporator to shrink to their original size. The average charge and penetration rate of the particles before and after evaporation were measured by CPC and aerosol electrometer and compared with those of a conventional corona charger. The results showed that the average charge was $5\~7$ charges and the penetration rate was over $90\%$, regardless of the initial particle size.

디지털방식 다중제어 충전기 개발 (Development of Digital Type Battery Charger based on Milti-Mode Control)

  • 변영복;구태근;김은수;조기연;김동희;변동환
    • 조명전기설비학회논문지
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    • 제15권5호
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    • pp.55-60
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    • 2001
  • 현재 대부분의 전동지게차 충전기는 3상의 일정전류제어와 일정전압제어 방식으로 운전되고 있으며, 이러한 충전방식은 충전기의 이용률을 저하시킬 뿐 아니라 축전지의 수명을 단축시키는 등의 단점을 가지고 있다. 이러한 문제점을 보완하기 위해서, 본 논문에서는 기존의 방식에서 일정전력제어 및 부가적인 제어모드를 첨가한 다중제어 충전방식을 제시하였다. 전체 제어시스템은 저가의 micro-controller를 적용하여 디지털화 시킴으로써 제어정도 및 신뢰성을 향상시켰으며, 제어장치의 소형화와 함께 저 가격화를 실현하였다.

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Investigation on the Electrical Discharge Characteristics of a Unipolar Corona-Wire Aerosol Charger

  • Intra, Panich;Yawootti, Artit;Vinitketkumnuen, Usanee;Tippayawong, Nakorn
    • Journal of Electrical Engineering and Technology
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    • 제6권4호
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    • pp.556-562
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    • 2011
  • In the present study, a simple corona-wire charger for unipolar diffusion charging of aerosol particles is designed, constructed, and characterized. Experimental characterizations of the electrostatic discharge in terms of current-voltage relationships of positive and negative coronas of the corona-wire charger are also presented and discussed. The charging current and ion concentration in the charging zone increased monotonically with corona voltage. The negative corona showed higher current than the positive corona. At the same corona voltages, the current in the discharge zone is about 600 times larger than the charging current. The ion number concentrations ranged within approximately $5.0{\times}10^{10}$ to $1.24{\times}10^{16}$ and $4.5{\times}10^{12}$ to $2{\times}10^{16}$ ions/$m^3$ in the discharge and charging zones, respectively. A numerical model is used to predict the behavior of the electric potential lines. Numerical results of ion penetration through the inner electrode are in good agreement with the experimental results.

전기차 배터리 충전기용 강인한 단위 입력 역률 제어장치 (Robust and Unity Input Power Factor Control Scheme for Electric Vehicle Battery Charger)

  • 웬콩롱;이홍희
    • 전력전자학회논문지
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    • 제20권2호
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    • pp.182-192
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    • 2015
  • This study develops a digital control scheme with power factor correction for a front-end converter in an electric vehicle battery charger. The front-end converter acts as the boost-type switching-mode rectifier. The converter assumes the two roles of the battery charger, which include power factor control and robust charging performance. The proposed control scheme consists of a charging control algorithm and a grid current control algorithm. The scheme aims to obtain unity input power factor and robust performance. Based on the linear average model of the converter, a constant-current constant-voltage charging control algorithm that passes through only one proportional-integral controller and a current feed-forward path is proposed. In the current control algorithm, we utilized a second band pass filter, a single-phase phase-locked loop technique, and a duty-ratio feed-forward term to control the grid current to be in phase with the grid voltage and achieve pure sinusoidal waveform. Simulations and experiments were conducted to verify the effectiveness of the proposed control scheme, both simulations and experiments.