• 제목/요약/키워드: flight management system

검색결과 229건 처리시간 0.031초

인증비행시험 안전관리 및 위험도 평가기법 연구 (A Study on the Safety Management and Risk Assessment of the Certification Flight Test)

  • 최주원
    • 항공우주시스템공학회지
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    • 제5권1호
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    • pp.30-35
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    • 2011
  • Certification flight test is very risky and there are many hazards. Because the flight test is performed with the aircraft, that is safety and flight characteristics are not proven. And the test items and conditions are critical. If there is loss of aircraft during certification flight test, the certification program, development period can be delayed. Therefore, maintaining safety of the aircraft during flight test is very important. There are not much flight test experiences in Korea. However, developed nations has long history of flight test and experiences of flight test accidents. Based on these experiences, they has developed systematic management methods for the flight test safety. In this study, I would like to introduce safety management and risk assessment of the certification flight test.

자율비행기술 동향 (Development Trend of the Autonomous Flight Control Technology)

  • 성기정;김응태;김성필
    • 항공우주산업기술동향
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    • 제6권2호
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    • pp.143-153
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    • 2008
  • 본 논문에서는 자율비행(Autonomous Flight)의 연구동향 및 향후 발전방향에 대하여 기술하였다. 자율비행은 항공기의 예기치 않은 임의상황 발생에 대해서도 항공기가 스스로 인지하고, 판단 한 후 대처하는 것을 의미한다. 현재의 자율비행기술은 무인기를 위주로 개발되고 있으나, 차세대 항공교통관제 시스템 도입과 무인기의 활용성 증대 요구에 따라 자율비행기능이 항공교통관제시스템과 결합되어야 한다. 그러므로 현 항공교통관제 시스템의 주요 개요와 향후 변경될 차세대 항공교통관제 시스템의 주요 사항들을 살펴보았고, 자율비행기술 개발 현황을 기술하였으며 향후 발전방향을 전망하였다.

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비행안전을 고려한 조종사 개인별 자질관리(IPQC)제도의 개선에 관한 연구 (A Study on Improvement of the Individual Pilot Quality Control System for Flight Safety)

  • 윤봉수;이성희
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 1999년도 추계학술대회
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    • pp.53-72
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    • 1999
  • IPQC system was introduced for the flight safety at the age of scientific safety management in the 1980s. In spite of performing this system, aircraft accidents caused by human factors, which were above 70% among all flight accident factors, have not been reduced. Accordingly, throughout this paper I analyzed the aircraft accident factors by means of a literature study and a pilot survey. Then, based on the notion of TQC(Total Quality Control), I hierarchically classified Individual Quality into Capacity Management, Safety Management, and General Management and did the low-ranked management factors as well. AHP (Analytic Hierarchy Process), one of the scientific management methods, was used for estimating the relative importance of Individual Quality Control factors and the heavy aircraft accident causes over the last 20 years were analyzed according to the flight ranks. Based on the comparative analysis of results derived above, an IPQC model as flight ranks is established. In short, according to this newly suggested model we can obtain the maximum flight safety with the preventive actions against aircraft accidents caused by human factors and by improving the operation effect under the reasonable pilot management.

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비행 정보 시각화를 위한 DMM 시스템의 구현 (Implementation of the DMM System for Flight Information Visualization)

  • 허화라;박명철
    • 디지털산업정보학회논문지
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    • 제7권3호
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    • pp.115-121
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    • 2011
  • The flight information visualization of the aircraft is the system which is widely used to the threat against low altitude tasks and terrain altitude. But, it is difficult to implement the system because of restrictions that GPS data and huge geographic information should be stored. In this paper, it proposes economic DMM (Digital Moving Map) system for flight information visualization from open-source-base. First, the flight information is transferred from X-Plane through UDP and then demonstrated on the DMM system. In the proposed DMM system, flight information is visualized on the map information downloaded from an ArcGIS Map server using the mapping data between the present altitude of the aircraft and the terrain altitude. The result of this paper could be used an economic tool in the field of flight information visualization and the game algorithm research.

민간항공사의 운항승무원에 영향을 주는 위협관리에 관한 연구 (A study of the threats towards the flight crew)

  • 최진국;김칠영
    • 한국항공운항학회지
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    • 제18권2호
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    • pp.54-59
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    • 2010
  • The flight deck crew must manage complexity during daily flight operations. The Airline may obtain data regarding threats and errors through LOSA(Line Operations Safety Audits) on normal flights as predictive safety tool in Safety Management System of the Airline to actively improve the systems such as SOP(Standard Operation Procedure), training, evaluation and the TEM(Threat and Error Management) for the flight deck crew. The flight deck crew make errors when they fail managing threats. The crew mismanage around ten percent of threats and commit errors. The major mismanaged threats are aircraft malfunction, ATC(Air Traffic Communication), and wether threats. The effective countermeasures of TEM for manageing threats are leadership, workload management, monitor & cross check, Vigilance, communication environment and cooperation of the crew. It is important that organizations must monitor for the hazards of threats and improve system for the safer TEM environments.

Ground Test and Evaluation of a Flight Control Systemfor Unmanned Aerial Vehicles

  • Suk, Jin-Young
    • International Journal of Aeronautical and Space Sciences
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    • 제5권1호
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    • pp.57-63
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    • 2004
  • UAV(Unmanned Aerial Vehicle) has become one of the most popularmilitary/commercial aerial robots in the new millennium. In spite of all theadvantages that UAVs inherently have, it is not an easv job to develop a UAVbecause it requires very systematic and complete approaches in full developmentenvelop. The ground test and evaluation phase has the utmost importance in thesense that a well-developed system can be best verified on the ground. In addition,many of the aircraft crashes in the flight tests were resulted from the incompletedevelopment procedure. In this research, a verification procedure of the wholeairbome integrated system was conducted including the flight management system.An airbome flight control computer(FCC) senses the extemal environment from thepehpheral devices and sends the control signal to the actuating system using theassigned control logic and flight test strategy. A ground test station controls themission during the test while the downlink data are transferred from the flightmanagement computer using the serial communication interface. The pilot controlbox also applies additional manual actuating commands. The whole system wastested/verified on the wind-tunnel system, which gave a good pitch controlperformance with a preUspecified flight test procedure. The ground test systemguarantees the performance of fundamental functions of airbome electronic systemfor the future flight tests.

장시간 체공 항공기 조종사의 피로위험관리 적용 연구 (A Study on Application of Fatigue Risk Management System for Pilot to Fly Longer Hours)

  • 김대호;이장룡
    • 한국항공운항학회지
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    • 제27권2호
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    • pp.47-53
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    • 2019
  • The development of the aviation industry and the changes in the military operation mission environment are demanding more long - distance operation (long - time flight), and such a flying environment is a risk factor for fatigue - related accidents. For the aviation related organizations such as ICAO and FAA, fatigue risk management system (FRMS) are applied along with flight time restriction regulations to prevent fatigue related accidents. The most important process in FRMS is fatigue risk management. Fatigue risk management systematically manages fatigue through scientific fatigue risk data collection and fatigue risk assessment. The purpose of this study is to applicate the assessment of scientific fatigue risk management to pilots of airplanes engaged in long flight. We reviewed the current state of risk management and FRMS through previous research. We also developed fatigue risk management indicators and examined the validity of internationally recognized fatigue risk data collection methods and fatigue risk assessment tools. There are 134 mission (flight) data used for development. In order to verify the indicators, the fatigue risk score between the items was assigned through pair-wise comparison. In addition, the verify test results were normalized.

소형항공기를 위한 FBW 시스템과 비행운영 프로그램 개발 (FBW System and Operational Flight Program Development for Small Aircraft)

  • 이승현;김응태;성기정
    • 한국항공운항학회지
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    • 제21권1호
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    • pp.1-7
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    • 2013
  • To have the competitiveness in the future worldwide small aircraft market, we should be able to develop the aircraft which is highly safe, easy to fly, and having excellent flight characteristics. FBW(Fly-By Wire) system is essential for the enhancement of flight safety and control easiness. FBW system that has been applied only to the modern fighter and transport aircraft is recently applied to smaller aircraft such as regional aircraft, business aircraft and even small aircraft. The purpose of this research includes the development of flight control computer, the definition of FBW system component, the design concept of each component for redundant management, OFP(Operational Flight Program) development, FBW system integration and HILS(Hardware In-the Loop Simulation) verification environment to test this FBW system.

국내 비행시험 운영 매뉴얼 개발 기준 연구 (A Study on the Guidelines for the Development of Domestic Flight Test Operation Manual)

  • 김무근;백승돈;송찬용;안대희;한정호;유병선;강자영
    • 한국항행학회논문지
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    • 제23권4호
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    • pp.281-288
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    • 2019
  • 비행시험은 항공기 개발 및 인증을 비롯한 항공기 수명 주기에서 감항성 유지를 위해 반드시 수행해야 하는 중요한 절차로서 관련 표준에 대한 적합성을 입증 또는 검증하기 위한 것이다. 비행시험 항공사고 분석 결과는 항공기 자체 요소뿐만 아니라 다양한 복합 원인에 의해 발생되었음을 확인한다. 국제민간항공기구는 항공기 사고 방지를 위해 안전관리시스템 구축 및 이행을 권고하고 있으나 비행시험의 특수성은 반영되어 있지 않다. 이에 항공선진국들은 이해관계자의 비행시험 안전관리 수행을 지원하기 위해 별도의 기준을 제공하고 있다. 본 논문에서는 국내 국가종합비행성능시험장 구축에 맞춰 항공선진국의 관련 규정을 조사, 분석하고 조직 구성, 안전 및 리스크 관리, 비행 운영, 인력 관리, 행정 사항 등의 내용을 포함하는 비행시험 운영 매뉴얼 개발을 위한 정부차원의 기준 안을 제시한다.

비행시험 위해요인 식별 연구 (Flight Test Hazard Identification)

  • 김무근;임인규;유병선;강자영
    • 한국항행학회논문지
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    • 제22권4호
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    • pp.279-287
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    • 2018
  • 항공기 개발 및 인증 등을 위한 비행시험은 타 항공우주산업 분야 보다 높은 항공 사고 발생 리스크를 가지고 있다. 따라서 안전관리시스템 중 리스크 관리를 위해 필요한 위해요인 식별은 비행시험 중 유사한 항공 사고를 예방할 수 있는 매우 중요한 요소이다. 그러나 국제적으로 발행되는 사고 통계자료는 통상적으로 상업 운송용 항공기에 국한된 것으로 비행시험의 특성을 반영하지 못하고 있으며, 국내 여건 또한 비행시험 중 위해요인을 식별할 수 있는 각종 데이터베이스가 구축되어 있지 않거나 가용하지 않은 실정이다. 따라서 본 연구에서는 항공기의 개발 및 인증을 위한 비행시험 특성을 알아보고, 리스크 관리에 필요한 국제기구 및 항공선진국 등에서 구축한 항공 사고 통계 및 예방 자료 등을 기초로 항공 사고의 주요 원인을 추적해 보았다. 미국교통안전위원회가 보유하고 있는 항공 사고/준사고 데이터베이스 중 비행시험 시 발생한 총 312건의 최종 보고서가 조사되었으며, 약 200여개의 비행시험 위해 요인이 식별되었다. 본 연구의 결과는 향후 국가종합 비행성능시험장의 안전관리시스템 구축을 위한 기초 자료로 활용될 예정이다.