• Title/Summary/Keyword: System Interface

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Design for System Development Mothed with Extended user Participation (사용자의 참여를 확장한 시스템 개발 방법의 설계)

  • Lee, Seo-Jeong;Park, Jae-Nyeon
    • The Transactions of the Korea Information Processing Society
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    • v.6 no.5
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    • pp.1272-1279
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    • 1999
  • This paper suggests system development method with extended user participation. Context diagram, event diagram, information diagram, management diagram and interface STD are staple products. This method introduces interface STD, management diagram and context diagram with administrator as relator. We adapted to research business of professor and ATM(Automatic Teller machine), when it can be adaptable to business-oriented system.

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Process Management System using a PC (PC를 이용한 공정관리시스템 개발)

  • Song, Joon-Yeob;Lee, Seung-Woo;Lee, Hyun-Yong
    • IE interfaces
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    • v.6 no.2
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    • pp.171-181
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    • 1993
  • In this study, a process management system is designed that can automatically control the heat treating atmosphere, and a managment software is developed to monitor and control continously the heat treating process using a n interface device. Especially, a communication protocol is developed to control and monitor atmosphere condition, temperature, surrounding gas, and time. The developed interface device, called COMPORT SELECTOR is to send and receive information from PID controllers and PLC via RS-232C communication. This system will reduce manufacturing cost and cycle time, and improve the effectiveness of working process and quality.

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Tension Based 7 DOEs Force Feedback Device: SPIDAR-G

  • Kim, Seahak;Yasuharu Koike;Makoto Sato
    • Transactions on Control, Automation and Systems Engineering
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    • v.4 no.1
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    • pp.9-16
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    • 2002
  • In this paper, we intend to demonstrate a new intuitive force-feedback device for advanced VR applications. Force feed-back for the device is tension based and is characterized by 7 degrees of freedom (DOF); 3 DOF for translation, 3 DOF for rotation, and 1 DOF for grasp). The SPIDAR-G (Space Interface Device for Artificial Reality with Grip) will allow users to interact with virtual objects naturally by manipulating two hemispherical grips located in the center of the device frame. We will show how to connect the strings between each vertex of grip and each extremity of the frame in order to achieve force feedback. In addition, methodologies will be discussed for calculating translation, orientation and grasp using the length of 8 strings connected to the motors and encoders on the frame. The SPIDAR-G exhibits smooth force feedback, minimized inertia, no backlash, scalability and safety. Such features are attributed to strategic string arrangement and control that results in stable haptic rendering. The design and control of the SPIDAR-G will be described in detail and the Space Graphic User Interface system based on the proposed SPIDAR-G system will be demonstrated. Experimental results validate the feasibility of the proposed device and reveal its application to virtual reality.

COMS(Communication, Ocean color & Meteorological Satellite) Meteorological Imager Interface Unit(MI2U) Design (통신해양기상위성의 기상 탑재체 접속장치 설계)

  • Chae, Tae-Byeong
    • Journal of Satellite, Information and Communications
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    • v.1 no.2
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    • pp.38-44
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    • 2006
  • The COMS(Communication, Ocean & Meteorological Satellite) is the geostationary satellite which will be performing three main objectives such as meteorological service, ocean monitoring and Ka-band satellite communications. In order to accomplish these missions, the COMS system needs to implement a specific electrical/mechanical interface functions which are requested by each payload units. This paper describes a on-board interface hardware design for COMS Meteorological Imager(MI). The Meteorological Imager Interface Unit(MI2U) achieves, through MIL-STD-15533 system bus, the interface between the Spacecraft Computer Unit(SCU) and the instrument which is dedicated to MI. MI2U provides a necessary power input to MI from +50V Power Supply Regulator(PSR), and allows adaptation of the specific payload interfaces and protocol to COMS spacecraft.

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Tactile Sensation Display with Electrotactile Interface

  • Yarimaga, Oktay;Lee, Jun-Hun;Lee, Beom-Chan;Ryu, Je-Ha
    • 제어로봇시스템학회:학술대회논문집
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    • 2005.06a
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    • pp.145-150
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    • 2005
  • This paper presents an Electrotactile Display System (ETCS). One of the most important human sensory systems for human computer interaction is the sense of touch, which can be displayed to human through tactile output devices. To realize the sense of touch, electrotactile display produces controlled, localized touch sensation on the skin by passing small electric current. In electrotactile stimulation, the mechanoreceptors in the skin may be stimulated individually in order to display the sense of vibration, touch, itch, tingle, pressure etc. on the finger, palm, arm or any suitable location of the body by using appropriate electrodes and waveforms. We developed an ETCS and investigated effectiveness of the proposed system in terms of the perception of roughness of a surface by stimulating the palmar side of hand with different waveforms and the perception of direction and location information through forearm. Positive and negative pulse trains were tested with different current intensities and electrode switching times on the forearm or finger of the user with an electrode-embedded armband in order to investigate how subjects recognize displayed patterns and directions of stimulation.

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A Study on the Defense Key Interface Profiles Process for Improving Interoperability (상호운용성 향상을 위한 국방 KIP 프로세스에 관한 연구)

  • Park, H.K.;Jeong, C.K.
    • Journal of the military operations research society of Korea
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    • v.35 no.3
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    • pp.61-79
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    • 2009
  • It is recognized that guaranteeing the interoperability of defense complex systems(SoS: System of Systems, FoS: Family of Systems) provides an information advantage, which is one of the essential factors for determining an warfighting advantage. This study presents the defense KIP(Key Interface Profile) process for improving interoperability of defense complex systems. The KIP process is to develop key interface profiles based on the key interfaces which are identified through the analysis of architecture. The KIP developed can be leveraged to manage the interfaces of complex systems. We verify the effectiveness of the proposed KIP process through a case study based on the systems of counter-fire operation.

A Fully Soft Switched Two Quadrant Bidirectional Soft Switching Converter for Ultra Capacitor Interface Circuits

  • Mirzaei, Amin;Farzanehfard, Hosein;Adib, Ehsan;Jusoh, Awang;Salam, Zainal
    • Journal of Power Electronics
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    • v.11 no.1
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    • pp.1-9
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    • 2011
  • This paper describes a two quadrant bidirectional soft switching converter for ultra capacitor interface circuits. The total efficiency of the energy storage system in terms of size and cost can be increased by a combination of batteries and ultra capacitors. The required system energy is provided by a battery, while an ultra capacitor is used at high load power pulses. The ultra capacitor voltage changes during charge and discharge modes, therefore an interface circuit is required between the ultra capacitor and the battery. This interface circuit must have good efficiency while providing bidirectional power conversion to capture energy from regenerative braking, downhill driving and the protecting ultra capacitor from immediate discharge. In this paper a fully soft switched two quadrant bidirectional soft switching converter for ultra capacitor interface circuits is introduced and the elements of the converter are reduced considerably. In this paper, zero voltage transient (ZVT) and zero current transient (ZCT) techniques are applied to increase efficiency. The proposed converter acts as a ZCT Buck to charge the ultra capacitor. On the other hand, it acts as a ZVT Boost to discharge the ultra capacitor. A laboratory prototype converter is designed and realized for hybrid vehicle applications. The experimental results presented confirm the theoretical and simulation results.

A Design of Interface Module for Multiple Level MIL-STD-1553 Bus Topology (다중 MIL-STD-1553 버스 구조를 위한 인터페이스 모듈의 설계)

  • Seung Gi-Taek
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.10 no.6
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    • pp.1045-1054
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    • 2006
  • In this paper, described a design result of bus interface modulo for multiple level MU-SID-1553 data bus network. In general, MIL-SID-1553 network is used for single level data bus topology. But, according to applied system's structure. multiple level bus architecture is required., And for his, micro processor must be involved for system be, and a additional hardware and software functions are needed. The designed data bus interface module is simply consists of communication transceivers and simple electronic circuit without micro processor. Through the hardware testing and software simulation, the functional performance of the designed interface module was successfully validated.

A Study on Common Interface providing among Heterogeneous Terminal in Ubiquitous (유비쿼터스 환경에서 이기종 단말기 간의 공통 인터페이스 제공에 관한 연구)

  • Park, Jung-Yeon
    • Proceedings of the Korean Institute of Intelligent Systems Conference
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    • 2006.11a
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    • pp.391-394
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    • 2006
  • This paper deals with the method will be able to support a common interface softly for the different with each other operating system users in next generation ubiquitous network. To controls in proxy servers that data portion be able to use commonly such as each different instruction, metaphor, image based on operating system, icons, it will be able to increases the efficiency of bandwidth use and minimizes a duplication transmission data from inside the bandwidth which is limited. Also it will be able to do method of common user interface provision to support seamless connectivity with each different network devices in the next generation.

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Analysis of interface management tasks in a digital main control room

  • Choi, Jeonghun;Kim, Hyoungju;Jung, Wondea;Lee, Seung Jun
    • Nuclear Engineering and Technology
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    • v.51 no.6
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    • pp.1554-1560
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    • 2019
  • Development of digital main control rooms (MCRs) has greatly changed operating environments by altering operator tasks, and thus the unique characteristics of digital MCRs should be considered in terms of human reliability analysis. Digital MCR tasks can be divided into primary tasks that directly supply control input to the plant equipment, and secondary tasks that include interface management conducted via soft controls (SCs). Operator performance regarding these secondary tasks must be evaluated since such tasks did not exist in previous analog systems. In this paper, we analyzed SC-related tasks based on simulation data, and classified the error modes of the SCs following analysis of all operational tasks. Then, we defined the factors to be considered in human reliability analysis methods regarding the SCs; such factors are mainly related to interface management and computerized operator support systems. As these support systems function to reduce the number of secondary tasks required for SC, we conducted an assessment to evaluate the efficiency of one such support system. The results of this study may facilitate the development of training programs as well as help to optimize interface design to better reflect the interface management task characteristics of digitalized MCRs.