• Title/Summary/Keyword: Fast charging

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The Study of EV Charging Infrastructure Installation Policy's Effectiveness in Jeju (제주지역 전기차 충전 인프라 구축정책에 대한 효과성 연구)

  • Youngkyu Koh;Suwan Kim;Jisup Shim;Sang-Hoon Son;Chulwoo Rhim
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.21 no.6
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    • pp.211-224
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    • 2022
  • In this study, factors affecting the efficacy of EV charging infrastructure improvement were investigated for EV users on Jeju Island. This study analyzed satisfaction with the EV charging infrastructure and demographic factors that affect the efficacy of EV charging infrastructure improvement. Factors found to affect the efficacy of EV charging infrastructure improvement include a sufficient number of charger installations, the speed in using EV chargers, the ease of obtaining additional information about charging, and fast customer service for faulty chargers. It was also confirmed that demographic factors such as user's housing types had a significant effect. This study contributes to verifying user satisfaction with the construction of EV charging infrastructure throughout Jeju Island.

Design and Implementation of Enhanced Resonant Converter for EV Fast Charger

  • Ahn, Suk-Ho;Gong, Ji-Woong;Jang, Sung-Roc;Ryoo, Hong-Je;Kim, Duk-Heon
    • Journal of Electrical Engineering and Technology
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    • v.9 no.1
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    • pp.143-153
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    • 2014
  • This paper presents a novel application of LCC resonant converter for 60kW EV fast charger and describes development of the high efficiency 60kW EV fast charger. The proposed converter has the advantage of improving the system efficiency especially at the rated load condition because it can reduce the conduction loss by improving the resonance current shape as well as the switching loss by increasing lossless snubber capacitance. Additionally, the simple gate driver circuit suitable for proposed topology is designed. Distinctive features of the proposed converter were analyzed depending on the operation modes and detail design procedure of the 10kW EV fast charger converter module using proposed converter topology were described. The proposed converter and the gate driver were identified through PSpice simulation. The 60kW EV fast charger which generates output voltage ranges from 50V to 500V and maximum 150A of output currents using six parallel operated 10kW converter modules were designed and implemented. Using 60kW fast charger, the charging experiments for three types of high-capacity batteries were performed which have a different charging voltage and current. From the simulation and experimental results, it is verified that the proposed converter topology can be effectively used as main converter topology for EV fast charger.

The Characteristics Analysis of DC-Bias Pulse Method Charge for Fast Charging System (급속 충전 시스템을 위한 DC-bias Pulse 충전 방식의 특성 연구)

  • Ban, Choong Hwan;Lee, YJ;Kwon, WS;Han, DH;Byen, BJ;Eun, JM;Choe, Gyu-Ha
    • Proceedings of the KIPE Conference
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    • 2011.07a
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    • pp.218-219
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    • 2011
  • In this paper Li-polyer batteries, which are in use of EV recently, are used. The Li-polymer batteries have high density of energy and invulnerability of the fluids and explosion. It is confirmed that the DC-bias pulse mode/cc mode characteristics on charge by designing Fast-charging system designed in three phase PWM and full-bridge converter.

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Fast Rise Time High Voltage Pulse Generator Applying The Marx Generator (Marx 펄스발생기를 응용한 소형 고전압 급준 펄스 발생장치)

  • Park, Seung-Lok;Chung, Suk-Hwan;Kim, Jin-Gyu;Moon, Jae-Duk
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.50 no.2
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    • pp.72-78
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    • 2001
  • A compact size high voltage pulse generator with nanosecond rise time has been designed and investigated experimentally. The inductance of a pulse generator can be reduced by fixing the Marx generator and pulse forming network components into a single cylindrical unit. As a result, nanosecond rise time about $8{\sim}10[ns]$ and pulse width of several hundred [ns] can be obtained from a modified Marx pulse generator. And parametric studies showed that the rise time of the output pulse was depended little on the change of the load resistance and the charging capacitance while, the pulse width of the output pulse was depended greatly upon the change of the load resistance and the charging capacitance. The theoretical showed the possibility to design the laboratory-size pulse generator very fast rising time and a proper pulse width by minimizing stray inductance and varying resistance and capacitance.

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A Study on The Efficient Fast Charging Method considering Battery Temperature (배터리 온도를 고려한 효율적인 고속 충전 방법에 관한 연구)

  • Kim, Jae-Jin
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2018.07a
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    • pp.519-520
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    • 2018
  • 본 논문에서는 배터리의 온도를 고려하여 효율적으로 고속 충전할 수 있는 방법에 대해 제안하였다. 제안된 방법은 충전하고자 하는 배터리의 온도에 따라 충전에 필요한 전압과 전류의 양을 조절하여 최적의 충전 환경을 만들어 배터리의 수명을 감소시키지 않는 최적의 충전 환경을 제공하는 것이다. 충전으로 인하여 배터리 내부에 있는 전해액, 활물질, 분리막 등의 반응성이 증가되어 배터리의 온도 상승과 수명 단축이 발생되는 현상을 고려하여 배터리의 열 발생으로 저하되는 충전량을 보상할 수 있도록 전압 또는 전류의 량을 조절하여 초기의 충전량을 유지할 수 있도록 하는 고속 충전 방법이다. 제안한 방법의 효율성을 검증하기 위해 리튬이온 배터리를 이용하여 일반적인 충전과 비교하여 실험하였다. 실험 결과 존 논문에서 제안한 방법이 기존의 충전방법보다 고속으로 충전되어 효율성이 입증되었다.

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FVF-Based Low-Dropout Voltage Regulator with Fast Charging/Discharging Paths for Fast Line and Load Regulation

  • Hinojo, Jose Maria;Lujan-Martinez, Clara;Torralba, Antonio;Ramirez-Angulo, Jaime
    • ETRI Journal
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    • v.39 no.3
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    • pp.373-382
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    • 2017
  • A new internally compensated low drop-out voltage regulator based on the cascoded flipped voltage follower is presented in this paper. Adaptive biasing current and fast charging/discharging paths have been added to rapidly charge and discharge the parasitic capacitance of the pass transistor gate, thus improving the transient response. The proposed regulator was designed with standard 65-nm CMOS technology. Measurements show load and line regulations of $433.80{\mu}V/mA$ and 5.61 mV/V, respectively. Furthermore, the output voltage spikes are kept under 76 mV for 0.1 mA to 100 mA load variations and 0.9 V to 1.2 V line variations with rise and fall times of $1{\mu}s$. The total current consumption is $17.88{\mu}V/mA$ (for a 0.9 V supply voltage).

Prediction of EFT/B Signal Transfer Characteristics in Mobile Charging Circuit (모바일 충전회로에서 EFT/B 신호의 전달특성 예측에 대한 연구)

  • Song, SeungJae;Kim, Kwangho;Jo, Jeongmin;Lee, Seungbae;Kim, So-young;Nah, Wansoo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.26 no.10
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    • pp.895-906
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    • 2015
  • This paper presents a methodology and a model that can analyze the high frequency transfer characteristics from socket in the AC power port to the 5 V DC output port in the mobile charging circuit. This is to predict the output signals coming from the IEC(International Electrotechnical Commission) Standard(IEC 61000-4-4), EFT/B(Electric Fast Transient and Burst) immunity test for mobile charging circuit. Since the mobile charging circuit is energized from the AC power socket from the power line, it is necessary to know the high frequency transfer characteristics with activated AC power line. A simple CDN(Coupling-Decoupling Network) is designed and manufactured for measuring S-parameters of mobile charging circuit with and without AC power line activated. The result shows that the S-parameters of the specific mobile charging circuits are almost the same, independent of AC power line activation. Consequently, the S-parameters without AC line could be used to predict the output response to the EFT/B signals, and it was shown that the proposed methodology predicts the output responses quite accurately, which proves the validness of the methodology presented in this paper.

Low-cost crowbar system and protection scheme in capacitor bank module (커패시터 뱅크 모듈 구성에 있어서 경제적인 크로바 시스템과 보호회로)

  • Rim, Geun-Hie;Cho, Chu-Hyun;Lee, Hong-Sik;Pavlov, E.P.
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2089-2091
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    • 2000
  • Pulsed power systems consist of a capacitor bank, an isolated high-voltage charging power-supply, high-current bus-work for charging and discharging and a control system. In such pulsed power systems, the operating-lifetime of the capacitors is closely dependent on the voltage reversal. Hence, most capacitor-discharging systems includes crowbar circuits. The crowbar circuit prevents the capacitor recharging with reverse voltage. Usually it consists of crowbar resistors and high pulse-current diode-stacks connected in series. The requirements for the diode-stacks are fast-recovery time and high-voltage and large-current ratings, which results in the high cost of the pulsed-power system. This paper presents a protection scheme of a charging and discharging system of a 500kJ capacitor bank using a low-cost crowbar circuit and safety-fuses.

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The 10kW Rapid Battery Charger for Electric Vehicle with Active Power Filter Function (능동전력필터 기능을 갖는 전기자동차용 10kW급 준급속 배터리 충전기)

  • Choi, Seong-Chon;Song, Sang-Hoon;Kim, Do-Yun;Kim, Young-Real;Won, Chung-Yuen
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.28 no.5
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    • pp.122-133
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    • 2014
  • This paper deals with the rapid charger which is the mid-type between the slow and fast chargers in the aspect of charging time. In its functions, it can perform the Active Power Filter(APF) function without changing the topology besides the charging function. In addition, to perform the charging and APF function, this paper proposes the mode selection algorithm. The operation of the charger that has APF function and the mode selection algorithm are verified by the simulation and experiment.

Inductive Charger of Battery for Electric Vehicles (전기자동차용 축전지의 유도성 충전 장치)

  • Kim, Heung-Geun;Park, Jeong-Woo;Kim, Sang-O
    • Proceedings of the KIEE Conference
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    • 1995.07a
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    • pp.274-277
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    • 1995
  • Recent environmental pollutions have intensified the need to develop zero emission vehicles. The most effect method of such solutions is EV. EV is high energy efficiency, easy to maintain, repair and is possible to make high performance control. However, because energy density of batteries is constrained and the distance covered one charge is short range. Also because EV has disadvantage of poor accelation ability, development of high performance battery is required for large scale use of EV. EV charger analogous to gas apparatus must also be developed immediately. Charger is discriminate between on-vehicle type and off-vehicle type. As off-vehicle type is able to charge fast and safe, inductive charging is considered. This paper aims to develope off-vehicle inductive charging system. Therefore, it achieved power factor correction converter, high frequency DC/AC inverter control algorithm development which gives proof validity through simulation and formulated the basic concept of high frequency transformer design for inductive charging.

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