• 제목/요약/키워드: mission

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센서 시스템의 연속적인 임무 수행을 위한 연구 (A study of continuous mission implement of sensor system)

  • 박상준;이종찬
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2022년도 추계학술대회
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    • pp.381-382
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    • 2022
  • 본 논문에서는 위험 지역에서 연속적인 임무 수행을 위한 센서 노드 시스템의 특성을 고려한다. 위험 지역에서 특정 노드가 더 이상 임무를 수행하기 어려울 때 다음 노드가 임무를 넘겨받아야 한다. 위험 지역에 도착한 다음 노드가 이전 노드의 임무의 특성 및 기능을 분석하여 연속적인 임무 수행이 가능하도록 준비해야 한다.

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베이지안기법에 의한 임무 신뢰도 예측 (Mission Reliability Prediction Using Bayesian Approach)

  • 전치혁;양희중;정의승
    • 한국경영과학회지
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    • 제18권1호
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    • pp.71-78
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    • 1993
  • A Baysian approach is proposed is estimating the mission failure rates by criticalities. A mission failure which occurs according to a Poisson process with unknown rate is assumed to be classified as one of the criticality levels with an unknown probability. We employ the Gamma prior for the mission failure rate and the Dirichlet prior for the criticality probabilities. Posterior distributions of the mission rates by criticalities and predictive distributions of the time to failure are derived.

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Satellite Ground Track Display on a Digitized World Map for the KOMPSAT-2 Mission Operations

  • Lee, Byoung-Sun;Kim, Jae-Hoon
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.246-249
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    • 2005
  • Satellite ground track display computer program is designed and implemented for the KOMPSAT-2 mission operations. Digitized world map and detailed Korean map is realized with zoom and pan capability. The program supports real-time ground trace and off-line satellite image planning on the world map. Satellite mission timeline is also displayed with the satellite ground track for the visualized mission operations. In this paper, the satellite ground track display is described in the aspect of the functional requirements, design, and implementation.

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Mission Description Structure for Autonomous Collaboration of Media Things

  • Chun, Jonghoon;Kim, Sang-Kyun
    • 방송공학회논문지
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    • 제27권7호
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    • pp.1034-1042
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    • 2022
  • Internet of Media Things (IoMT) aims to provide intelligent media services to users by connecting (media) things to each other and exchanging media data. The mission given by the user is automatically executed, and intelligent media service can be provided to the user. To achieve this, ISO/IEC 23093-5 started standardization work on the mission data given by the user to the media thing and the media thing controller (MController) that controls the media things. This paper introduces the contents of ISO/IEC 23093-5.

한국과 일본병원의 미션선언문 비교연구 - 한국의 상급종합병원과 일본의 특정기능병원을 중심으로- (A study of Mission statements for strategic management - Focusing on the tertiary care hospitals in korea and special functioning hospitals in Japan-)

  • 당지연;최윤수;김영훈
    • 한국병원경영학회지
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    • 제18권1호
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    • pp.70-87
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    • 2013
  • This study investigated contents of mission statements for Strategic Management of hospitals in Korea and Japan. For the study, 44 tertiary care hospitals in korea, which were accredited by the Ministry of Health and Welfare, were selected. And 83 special functioning hospitals in Japan, which were approved by the Minister of Health, Labour and Welfare, were included. Both quantitative and qualitative analyses were conducted by classifying 5 components of the mission statement; market, service, philosophy, image, contribution. Findings from this study are as follow. First, hospitals in Korea emphasized image(93.2%) and philosophy(81.8%) components in their mission statements, whereas hospitals in Japan highlighted components of service(89.2%) and market(72.3%). In detail, mission statements of Korean tertiary care hospitals describe the components of hospital's image (93.2%), philosophy(81.8%), contribution(56.8%), market(22.7%) and service (18.2%) in order. On the other hand, mission statements of Japanese special functioning hospitals describe hospital's service(89.2%), market(72.3%), contribution(61.4%), image (49.4%) and philosophy(34.9%), respectively. Second, as results of Content analysis, there were some differences in mission statements of hospitals between two countries, and it is mainly from the divergences of standards for recognition of medical institutions, environmental factors, and different ways of mission statement description. For strategic hospital management, carrying out innovative restructuring organization or promoting of research and training for medical development is considered as a desirable approach. However, clear description of mission statement is more important and it is required for effective control and managing organization. And then the mission should be communicated within an organization so all internal members understand it and put their efforts to achieve the mission of organization. In conclusion, it is recommended that a leader and senior managers should re-evaluate its mission statement whether it reflects characteristics of an organization. In addition, a mission statement should be created or improved based on critical decision, as well as it should be clearly shared within an organization in order to become a future oriented organizations.

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궤도상 유지보수를 위한 홀추력기 임무해석 (Mission Analysis Involving Hall Thruster for On-Orbit Servicing)

  • 권기범
    • 한국항공우주학회지
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    • 제48권10호
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    • pp.791-799
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    • 2020
  • 2019년 10월 발사된 Northrop Grumman사의 MEV-1(Mission Extenstion Vehicle)은 세계 최초의 무인임무로서 궤도상 유지보수(On-Orbit Servicing)가 실질적으로 가능함을 보였다. 물론 궤도상 유지보수 임무는 수십 년 전부터 제안된 개념으로 운영 중인 위성에 대한 궤도수정 및 유지, 추진제/장비 보급 및 업그레이드, 수리, 궤도상 조립 및 제작, 우주잔해 처리 등 다양한 임무개념으로 발전되고 있으며, 이번 MEV-1 임무의 성공으로 향후 세계적으로 정부기관 및 민간분야 위성사업에서의 시장이 확대될 것으로 예상된다. 궤도상 유지보수 임무는 임무의 특성상 기본적으로 고효율의 전기추진시스템의 활용은 필수적이다. 본 연구에서는 전기추진시스템 중 홀추력기를 활용한 간단한 궤도상 유지보수 임무에 대한 임무해석 내용을 소개하고자 한다. 임무사례로서 정지궤도위성의 수명연장 임무에 대해 다양한 홀추력기 설계변수조합에 대한 설계공간탐색을 수행하고, 설계공간분석 및 최적화를 통해 고려하는 임무에 적합한 홀추력기의 설계 및 운용 파라미터를 제안함과 동시에 임무성능을 도출하였다. 추가적으로 현재 궤도상 유지보수 임무해석 시 개선점과 홀추력기를 활용한 우주임무해석에서의 발전방향을 고찰하였다.

한국형기동헬기 임무컴퓨터 비행필수기능 설계 (Design on Flight-Critical Function of Mission Computer for KUH)

  • 유연운;김태열;장원홍;김성우;임종봉
    • 한국군사과학기술학회지
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    • 제14권2호
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    • pp.213-221
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    • 2011
  • Avionics system tends to be designed to have the integrated architecture, and it is getting difficult and complex to verify the flight-critical function because of sophisticated structure. In Korean Utility Helicopter, mission computer acts as the MUX Bus Controller to handle the data from both communication, identification, mission/display and survivability equipment inside Mission Equipment Package and aircraft subsystems such as fuel system and electrical system while it is interfacing with Automatic Flight Control System and Full-Authority Digital Engine Control via ARINC-429 bus. The Flight Displays which is classified as flight-critical function in aircraft is implemented on Primary Flight Display after mission computer processes data from AFCS in order to generate graphics. This paper defines the flight-critical function implemented in mission computer for KUH, and presents the static and dynamic test procedures which is performed on System Integration Laboratory along with Playback Recorder prior to flight test.