• Title/Summary/Keyword: 충전 표준

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The Development of Electric Vehicle Slow Charging System Applying ISO/IEC 15118 Power Line Communication (ISO/IEC 15118 국제표준기반 충전기용 전력선 통신을 적용한 완속 충전기 개발)

  • Oh, JeongHun;Baek, Yohan;Oh, SungMin;Choi, YoungGon;Seo, JeongDueok
    • Proceedings of the KIPE Conference
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    • 2013.11a
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    • pp.83-84
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    • 2013
  • 최근 국내에서 진행중인 스마트 그리드(Smart Grid) 사업 분야에 속해 있는 스마트 운송(Smart Transportation) 사업의 하나로 전기차 운영이 핵심이 되어 진행이 되고 있다. 그러나 실제적으로 전기차를 원활히 운영하기 위해서는 극복해야 할 여러 문제가 있으며 대표적으로 주행 거리를 좌우하는 배터리 용량 문제와 고객이 어디서든 전기차를 사용하고 충전하는데 불편이 없을 만큼 충분한 충전 인프라 구축 문제가 있다. 충전 인프라는 현재, 완속 충전기와 급속 충전기로 구성되어 있으나 본 논문에서는 완속 충전기에 한정하여 서술하였고 인프라 구축에 있어 표준화 일환으로 미국자동차기술학회에서 제시하는 SAE-J1772 규격에 맞추어 개발한 자사의 완속 충전기에 2012년 독일과 미국의 자동차 업체 주도로 발표된 국제표준(ISO/IEC 15118, Vehicle-to-Grid Communication Interface) 기술 규격이며 향후 충전 인프라에 적용 예상이 되는 PLC 통신 방식을 적용한 완속 충전기 개발에 관하여 소개하도록 하였다.

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A Study for a Transformation of Communication Message within the EVSE Using XML Schema Transformation (XML 스키마 변환을 이용한 전기차 충전 장치 내의 통신 메시지 변환에 관한 연구)

  • Un, Koaunghi;Jang, Hyuksoo;Kim, Hwimin;Kim, Myongsoo
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.28-30
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    • 2015
  • 전기차 충전 장치가 전기차로부터 ISO/IEC 15118 국제 표준을 따르는 XML 형식의 통신 메시지를 받아 IEC 61850 국제 표준의 SCL (Substation Configuration Language)로 구성되는 논리 노드를 통해 통신 메시지를 전력 계통으로 보낸다. 역방향 통신 메시지의 경우에는 그 역순으로 진행된다. ISO/IEC 15118 국제 표준이 XML 형식을 스키마로 규정하고 있고 IEC 61850 국제 표준이 SCL 형식을 스키마로 규정하고 있으며 두 스키마를 변환하여 ISO/IEC 15118 통신 메시지와 IEC 61850 통신 메시지를 상호 변환할 수 있다.

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Deep Learning-based UWB Distance Measurement for Wireless Power Transfer of Autonomous Vehicles in Indoor Environment (실내환경에서의 자율주행차 무선 전력 전송을 위한 딥러닝 기반 UWB 거리 측정)

  • Hye-Jung Kim;Yong-ju Park;Seung-Jae Han
    • KIPS Transactions on Computer and Communication Systems
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    • v.13 no.1
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    • pp.21-30
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    • 2024
  • As the self-driving car market continues to grow, the need for charging infrastructure is growing. However, in the case of a wireless charging system, stability issues are being raised because it requires a large amount of power compared with conventional wired charging. SAE J2954 is a standard for building autonomous vehicle wireless charging infrastructure, and the standard defines a communication method between a vehicle and a power transmission system. SAE J2954 recommends using physical media such as Wi-Fi, Bluetooth, and UWB as a wireless charging communication method for autonomous vehicles to enable communication between the vehicle and the charging pad. In particular, UWB is a suitable solution for indoor and outdoor charging environments because it exhibits robust communication capabilities in indoor environments and is not sensitive to interference. In this standard, the process for building a wireless power transmission system is divided into several stages from the start to the completion of charging. In this study, UWB technology is used as a means of fine alignment, a process in the wireless power transmission system. To determine the applicability to an actual autonomous vehicle wireless power transmission system, experiments were conducted based on distance, and the distance information was collected from UWB. To improve the accuracy of the distance data obtained from UWB, we propose a Single Model and Multi Model that apply machine learning and deep learning techniques to the collected data through a three-step preprocessing process.

Evaluation of Metering Accuracy of Hydrogen Station Using Master Meter Method (표준유량계법을 적용한 수소 충전소 계량 정확도 평가)

  • Han, Wonguk;Yim, Sangsik;Song, Bohee;Kil, Sunghee;Kim, Younggyu;Kim, Hongchul
    • Journal of the Korean Institute of Gas
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    • v.23 no.6
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    • pp.67-73
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    • 2019
  • Hydrogen is difficult to accurately measure the amount of charge due to sudden temperature changes and pressure rise when charging the vehicle. In order to construct a hydrogen infrastructure, it is important to precisely measure the amount of charge that can be a sensitive issue in commercial transactions. In this study, the accuracy of metering of domestic hydrogen stations was evaluated as a study for metering management of hydrogen dispenser. For the experiment, we constructed metering system using master meter method and measured the flow rate in the actual hydrogen vehicle charging environment. As a result of error occurred about 10% on average, and the hydrogen loss per one charge was found to be up to 60g.

Obturation efficiency of non-standardized gutta-percha cone in curved root canals prepared with 0.06 taper nickel-titanium instruments (0.06-경사도의 니켈-티타늄 기구로 형성된 레진 만곡근관에서 비표준화 GUTTA-PERCHA CONE의 근관충전 효율)

  • Lee, Eun-Ah;Kim, Sung-Kyo
    • Restorative Dentistry and Endodontics
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    • v.30 no.2
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    • pp.79-85
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    • 2005
  • The purpose of this study was to evaluate the obturation efficiency of a non-standardized gutta-percha cone in curved root canals prepared with 0.06 taper nickel-titanium instruments. Sixty simulated curved root canals in clear resin blocks were prepared with crown-down technique using 0.06 taper rotary $ProTaper^{TM}$and ProFile (Dentsply-Maillefer) until apical canal was size 30. Root canals were randomly divided into 4 groups of 15 blocks and obturated with cold-laterally compacted gutta-percha technique by using either a non-standardized size medium gutta-percha cone or an ISO-standardized size 30 one as a master cone. Gutta-percha area ratio were calculated at apical levels of 1, 3 and 5 mm using AutoCAD 2000 after cross-sectioning, and the data were analyzed with one-way and two-way ANOVAs and Duncan's multiple range test. Non-standardized size medium cone groups showed significantly higher gutta-percha area ratio than standardized cone groups at all apical levels (p < 0.01). Non-standardized cone groups used significantly less accessory cones than standardized cone groups (p < 0.01).

A Technology Trend and Analysis of Electric Vehicle Wireless Charging System (전기 자동차 무선 충전 시스템 기술 동향 및 분석)

  • Lim, Jong-Gyun;Lee, Dong-Yong
    • The Journal of the Korea institute of electronic communication sciences
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    • v.16 no.2
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    • pp.255-260
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    • 2021
  • The importance of electric vehicles is gradually increasing due to the recent depletion of fossil fuels. In order to use an electric vehicle, the battery built into the vehicle must be frequently charged. Electric vehicles has very good performance in terms of noise and vibration. However, due to the limitations of the battery, the mileage is considerably shorter than that of an internal combustion engine vehicle once it is charged, and the battery charging time is relatively long compared to the refueling time. There are two types of charging methods for electric vehicle batteries: plug-in and wireless charging. In this paper, we introduced the wireless charging technology for electric vehicles and the current state of technology development and standards in major countries.

Prediction of Temperature Distribution to Evaluate Axial Strength of Unprotected Concrete-filled Steel Tubular Columns under Fire (화재 시 무피복 CFT 기둥의 축강도 평가를 위한 단면온도분포 예측기법의 개발)

  • Koo, Cheol Hoe;Lee, Cheol Ho;Ahn, Jae Kwon
    • Journal of Korean Society of Steel Construction
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    • v.25 no.6
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    • pp.587-599
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    • 2013
  • A simple but accurate analytical method to evaluate the fire resistance of unprotected concrete filled tubular (CFT) columns under standard fire condition is proposed based on the fire design framework of EC4. To this end, the accuracy of the current tabulation method for the temperature prediction proposed by Lawson et al. was first critically evaluated, and a new prediction equation for the temperature gradient across the CFT section was then proposed based on available test and finite element analysis results. Overall, the axial strength predicted by using the proposed equation under the general fire design framework of EC4 was more accurate than that based on existing methods and appeared reasonable for design purposes. The results of this study are directly usable for the more rational fire analysis and design of unprotected CFT columns.

Development of Hydrogen Flow Field Standard in Hydrogen Refueling Station (수소충전유량 현장교정시스템의 개발 )

  • WOONG KANG;JINWOO SHIN;SAENG-HEE LEE;BYUNG-RO YOON;UNBONG BAEK
    • Transactions of the Korean hydrogen and new energy society
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    • v.33 no.6
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    • pp.684-691
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    • 2022
  • Hydrogen fuel cell electric vehicles are typically refueled at a wide range of temperatures (-40℃ to 85℃) in the hydrogen refueling station in accordance with the worldwide accepted standard. Currently, there is no traceable method by which to verify and calibrate the hydrogen flowmeters to be used at hydrogen refueling stations except for a water calibration process as a conventional method. KRISS hydrogen field test standard based on the gravimetric principle was developed to verify the measurement accuracy of the mass flowmeter to be used at hydrogen refueling stations for the first time in Korea.