• Title/Summary/Keyword: Human-Machine Interface

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An Auto-drawing Algorithm for the Single Line Diagram of Distribution Systems (배전선로 회선별단선도 자동생성 알고리즘)

  • Son, Ju-Hwan;Lim, Seong-Il
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.59 no.5
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    • pp.854-859
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    • 2010
  • Distribution Automation System(DAS) is designed to improve operational efficiency by acquisition and control of remote data using its components such as central computation units, communication network and feeder remote terminal units. A conventional human machine interface of the DAS adopts a schematic diagram which is made by drawing power equipments on the geographic information system map. The single line diagram is more useful than the schematic diagram for the main tasks of distribution system operation such as protective relay coordination, service restoration and loss minimization. Since the configuration of the distribution line is changed according to the relocation of the open tie switches, the auto-drawing algorithm based on the connection between the sections and the switches is an essential technique. This paper proposes a new auto-drawing algorithm for a single line diagram of distribution systems based on tertiary tree and collision avoidance method. The feasibility of the proposed algorithm has been testified for various cases using practical distribution system with 12 feeders.

The research of the Control Work Position for developing ATC (항공관제시스템 개발을 위한 현시시스템 연구)

  • Na, Sang-Il;Lee, Jun-Woo;Won, In-Su;Choi, Sang-Bang;Park, Hyo-Dal;Jeong, Dong-Seok
    • Proceedings of the IEEK Conference
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    • 2008.06a
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    • pp.1197-1198
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    • 2008
  • The purpose of the Air Traffic Control(ATC) system is to provide a safe, efficient flow of air traffic from origin to destination. Therefor, it is important to reduce the operational errors. Most of errors occurs from controllers. So, we suggest the human machine interface scheme for Air Traffic Control system.

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FPSO Cargo Pumping 시스템 가상운전 시스템 개발

  • Nam, Ki-Il;Han, Ki-Hun;Chang, Kwang-Pil;Oh, Tae-Young;Chang, Dae-Jun;Song, Seok-Ryong
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2006.06a
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    • pp.251-252
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    • 2006
  • This study developed the virtual operation system for the hydraulic pump system for marine usage. The scope of this study is to develop a process dynamic simulation model for the hydraulic pump system for marine usage, to investigate the process dynamic characteristics using the models, to accomplish the logic diagram for the PLC control and to achieve a human-machine interface (HMI) for the convenience of operators to monitor and control the process. The virtual operation system provides a virtual operation environment for the pumping system, enabling the operators to simulate the change of process variables. The system will assist in developing advanced control logics and then optimal design of the system.

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DISTRIBUTED HMI SYSTEM FOR MANAGING ALL SPAN OF PLANT CONTROL AND MAINTENANCE

  • Yoshikawa, Hidekazu
    • Nuclear Engineering and Technology
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    • v.41 no.3
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    • pp.237-246
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    • 2009
  • Digitalization of not only non-safety but also safety-grade I &C systems with full computerized Main Control Room (MCR) is the recent trend of I&C systems of nuclear power plants (NPP) around the world, while plant maintenance has been shifting from traditional time based maintenance to condition based maintenance. In order to cope with the new trend of operation and maintenance in NPP, a concept of online distributed diagnostic system for both plant operation and maintenance has been proposed in order to further improve both the plant efficiency and the work environment of plant operation staff members by organizational learning. In this respect, the research subjects of human machine interface (HMI) for the online distributed diagnostic system are also discussed for supporting the plant personnel at both MCR and local working places in the plant by the application of advanced ICT (Information and Communication Technologies).

Wind Generation Monitoring System Based on IEC61400-25 International Standard (IEC61400-25 국제 표준 프로토콜을 적용한 풍력 발전 모니터링 시스템 개발 사례)

  • Lee, Duck-Su;Lee, Jun-Chul;Hong, Jung-Gi
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.227-228
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    • 2008
  • This paper presents monitoring system based on IEC61400-25 for 750kW-class DFIG wind power generation system. It is consists of wind turbine PLC, Local and Remote I/O Server, human machine interface, and Web-server. Proposed System has been demonstrated in Daegi-ri, Kangwon-do, which aims to test IEC61400-25 communication capability of monitoring system and evaluate the performance of 750kW-class WTS.

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Performance Evaluation Procedure for Advanced Emergency Braking System (자동비상제동 시스템의 안전성능평가)

  • Kim, Taewoo;Yi, Kyongsu;Choi, In Seong;Min, Kyong Chan
    • Journal of Auto-vehicle Safety Association
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    • v.7 no.2
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    • pp.25-31
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    • 2015
  • This paper presents a performance evaluation procedure for advanced emergency braking (AEB) system. To guarantee the performance of AEB system, AEB test scenario should contains various driving conditions which can be occurred in real driving condition. Also, performances of each elements of AEB system, such as sensor, decision, human machine interface (HMI) and control, should be evaluated in various situations. For this, driving conditions, road types, environment, and elements of AEB system were introduced. Test scenario has been designed to represent the real driving condition and to evaluate the safety performance of AEB system in various situations. To confirm that the proposed AEB test scenario is realistic and physically meaningful, vehicle test have been conducted in two cases of proposed AEB test scenario: subject vehicle cut-out scenario and narrow street turn left scenario.

Electric Vehicle Quick Charging System (전기자동차 급속 충전 시스템)

  • Cho, H.Y.;Kang, T.H.;Oh, J.H.;Goo, T.H.;Suh, I.Y.;Sim, E.B.;Song, C.Y.;Shin, Y.S.
    • Proceedings of the KIPE Conference
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    • 2010.07a
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    • pp.324-325
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    • 2010
  • 전기자동차 충전 인프라 구축은 스마트 그리드사업과 연계하여 스마트 트랜스포테이션(Smart Transportation)이라는 새로운 사업모델로 활발히 추진되고 있다. 충전인프라 구축은 전력망, 운영시스템, 과금 및 정산 시스템과 급속충전기로 구성된다. 스마트 트랜스포테이션 제주 실증단지 구축사업(한전 컨소시움)에 설치 운영 될 급속충전기의 HMI(Human Machine Interface), BMS 인터페이스, 운영알고리즘에 대하여 소개하고자 한다.

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A Study of HMI on In-Vehicle Telematics System (차량 환경에서의 HMI 에 관한 연구)

  • Choi, Yeon-Jun;Kim, Sun-Jung;Gwon, O-Cheon
    • Annual Conference of KIPS
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    • 2005.11a
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    • pp.1231-1234
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    • 2005
  • 차량 내에 도입되는 텔레매틱스 시스템을 설계할 때에는 차량의 특성이 반영되어야 한다. 차량 내의 사용자 인터페이스, 즉 HMI(Human-Machine Interface)는 외관에서 비롯되는 상업성 뿐 아니라 안전과 차량 기능에 있어서 더욱 중요하다. 본 논문에서는 차량 탑승자 중 특히 운전자를 위한 차량 환경을 고려하여 HMI 시스템을 설계하기 위한 방안을 제시한다. HMI 아키텍처는 OSG-i 프레임워크와 같은 국제 표준을 따른다.

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Development of Photovoltaic PCS HMI Unit (태양광 PCS HMI Unit 개발)

  • Choi, In-Sun;Lee, Jun-Chol;Kim, Myong-Hoe
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.134-137
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    • 2008
  • 현재 에너지 시장은 신흥 개발 도상국의 화석 에너지 사용량 급등 등의 요인으로 인해 고유가 시대가 지속될 것으로 전망되고 있다. 또한 화석 에너지 사용으로 지구 온난화가 지속되고 있으며, 이에 온실가스 배출을 규제하기 위한 유엔기후변화협약 및 환경변화 문제 해결을 위한 사회적인 합의가 이뤄지고 있다. 그러므로 다양한 신재생 에너지원의 연구 개발 및 사용이 가속화되고 있으며, 그중 기술적으로 가장 근접한 것이 태양광 발전이다. 본 논문은 당사에서 개발하는 50kW 태양광 PCS의 운전 상태를 감시하고, 필요 요소를 제어하며, 취득된 데이터를 eRTU 등의 상위 시스템에 개방된 프로토콜로 통신을 통해 올려주는 태양광 PCS HMI Unit에 대해 논하였다.

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Extraction of Speech Features for Emotion Recognition (감정 인식을 위한 음성 특징 도출)

  • Kwon, Chul-Hong;Song, Seung-Kyu;Kim, Jong-Yeol;Kim, Keun-Ho;Jang, Jun-Su
    • Phonetics and Speech Sciences
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    • v.4 no.2
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    • pp.73-78
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    • 2012
  • Emotion recognition is an important technology in the filed of human-machine interface. To apply speech technology to emotion recognition, this study aims to establish a relationship between emotional groups and their corresponding voice characteristics by investigating various speech features. The speech features related to speech source and vocal tract filter are included. Experimental results show that statistically significant speech parameters for classifying the emotional groups are mainly related to speech sources such as jitter, shimmer, F0 (F0_min, F0_max, F0_mean, F0_std), harmonic parameters (H1, H2, HNR05, HNR15, HNR25, HNR35), and SPI.