• Title/Summary/Keyword: 감항기준

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A Study to the Technical Criteria of Propulsion System for the Military Airworthiness Certification (군용항공기 감항인증을 위한 추진체 기술기준에 대한 고찰)

  • Jeon, Jingark;Kim, Sunglae
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2017.05a
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    • pp.205-206
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    • 2017
  • This is a study on the propulsion criteria for airworthiness certification of the military aircraft. This treatise described the introduction of the airworthiness certification system, the features and difference between the military and commercial aircraft, the introduction of the standard airworthiness certification, the important technical criteria, and the several application instances of the criteria.

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Study on New Airworthiness Requirements of Powerplant System for the Small Airplane (소형 비행기 동력장치에 관한 신규 인증요건 분석)

  • Lee, Eunsuk;Lee, Seung geun;Lee, Kang-Yi
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2017.05a
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    • pp.207-212
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    • 2017
  • Korean civil airworthiness requirements of powerplant system are regulated on KAS Part 23 and Part 33. These are equivalent to FAR Part 23, Part 33 of FAA and CS-23, CS-E of EASA. FAA and EASA rewrites entire airworthiness requirements for the small airplane. It changed current 'prescriptive regulation' into 'performance-based regulation' which makes the object of safety performance. Powerplant requirements are also changed extensively by these concept revolution. In accordance with reorganization, we studied new powerplant system requirements of FAR Part 23 and proposed ideal direction to rewrite of Korean Airworthiness Standard rewrite.

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Study on New Airworthiness Requirements of Powerplant System for the Small Airplane (소형 비행기 동력장치에 관한 신규 인증요건 분석)

  • Lee, Eunsuk;Lee, Seung geun;Lee, Kang-Yi
    • Journal of the Korean Society of Propulsion Engineers
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    • v.22 no.3
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    • pp.128-133
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    • 2018
  • Korean civil airworthiness requirements of powerplant system are regulated by KAS(Korean Airworthiness Standard) Part 23 and Part 33. These are equivalent to FAR Part 23, Part 33 of FAA, and CS-23 and CS-E of EASA. FAA and EASA rewrite the airworthiness requirements for small airplane. They changed current 'prescriptive regulation' to a 'performance-based regulation' which makes safety performance the objective. Powerplant requirements have also been changed extensively by this concept revolution. In accordance with this reorganization, we studied the new powerplant system requirements of FAR Part 23 and proposed ideal directions to rewrite the Korean Airworthiness Standard.

Establishing Engine Accelerated Mission Test Cycles complying with the CS-E of European Aviation Safety Agency (유럽항공안전청 형식증명 감항기준에 부합하는 엔진가속시험 사이클 수립)

  • Park, Sooyoul;Moon, Gyeongchan;Koo, Hyuncheol
    • Journal of Aerospace System Engineering
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    • v.14 no.1
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    • pp.62-67
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    • 2020
  • The European Aviation Safety Agency (EASA) legislates the CS-E (Certification Specification-Engine) for type certification of aircraft engines. According to the CS-E, engine manufacturers (type certificate holders) the need to show compliance of continued airworthiness of an engine during the overhaul, and the Accelerated Mission Test (AMT) is usually accepted as means of compliance. As a part of the Korean Civil Helicopter program, the engine has been developed with foreign manufacturers to achieve the EASA engine type certificate. In this study, the AMT procedure is planned for the engine to be certified by the EASA, and AMT cycles are also established to meet airworthiness requirements of the CS-E in consideration of the engine design and operation characteristics.

A Study for the Airworthiness Certification Criteria and Compliance Related to the Flight Control Law (비행제어법칙 감항인증 기준 설정 및 입증 연구)

  • Koh, Gi Ok;Ko, Joon Soo;An, Young Gab
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.41 no.7
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    • pp.569-576
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    • 2013
  • The Airworthiness Certification from the government has an increasingly important role due to the dramatic growth of military aircraft development industry. It is a mandatory process of qualifying the flight safety within the aircraft's operational boundaries throughout its life cycle. The introduction of airworthiness certification has resulted in development paradigm shift from one requirement for one consumer need to the common requirement for many needs. This research paper provide the refinement of airworthiness certification criteria related to the flight control law and the verification methods which comply with its criteria.

항공기 안전성 시험평가에 대한 고찰(상)

  • Ryu, Jeong-Ju
    • Aerospace Industry
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    • v.47
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    • pp.14-21
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    • 1997
  • 국내에서 생산된 항공기 및 관련 부품을 운용하기 위해서는 항공기 및 그것을 구성하고 있는 모든 부품의 제반 특성이 감항기준을 만족시킨다는 것이 입증되어 감함당국에 의해 승인되어야 한다. 항공기와 관련 부품의 승인은 법에 의한 감항 적합성 평가 절차를 따라야 하며, 이러한 평가 절차를 거쳐서 승인된 항공기는 비로소 감항성을 인정받아 운항이 허락되고, 또한 승인된 관련 부품은 항공기에 사용되어 최종적으로 고부가가치의 경쟁력을 얻을 수 있다.

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Target Level of Safety Analysis in Airworthiness Certification for Military UAV (군용무인기의 감항인증 목표안전수준 분석)

  • Lee, Narae;Jeon, Byung-Il;Chang, Young-Keun
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.41 no.10
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    • pp.840-848
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    • 2013
  • Airworthiness certification of military aircraft is a government's certification that it must have airworthiness and ability to demonstrate its requested function and performance. NATO released STANAG-4671 to establish the minimum airworthiness requirements for UAVs between 150kg and 20,000kg MTOW in 2009. Up to now, there are no clear airworthiness certification criteria and guideline for small UAV which is less than 150kg. STANAG-4671 is used for military UAV airworthiness certification in Korea as Other Airworthiness Certification Criteria. However, since STANAG-4671 requires the same Target Level of Safety without regard to MTOW, excessive Target Level of Safety or design requirements could be applied to relatively small-medium UAV. In this paper, classification and criteria of airworthiness certification for military UAV were investigated and a Target Level of Safety was analyzed based on MTOW using ground victim criteria.

Study on Effective Airworthiness Certification Methods and Airworthiness Certification Standards for Aerial Launch Platform using Large Civil Aircraft (대형 민간항공기를 활용한 공중발사 플랫폼의 효율적 감항인증방안 및 감항인증기준 연구)

  • Oh, Yeon-Kyeong;Kim, Suho;Yoo, Min Young;Choi, Seong Hwan;Seo, Hyun Woo
    • Journal of Aerospace System Engineering
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    • v.16 no.4
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    • pp.28-34
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    • 2022
  • In 2021, Virgin Orbit converted a 747-400 aircraft into an air launch platform, and successfully launched it twice in February and July. Compared to the existing ground launch, interest in the air launch is increasing due to its great utility, such as its independence from the launch location or weather, cost reducing factor, shorter launch preparation time, and its benefit pursuant to altitude and speed. Additionally, as small satellites have similar performance to mid/large satellites in the past due to the miniaturization and precision of electronic equipment, small satellite launches are expected to dominate in the future. In this paper, institutional certification methods such as domestic, overseas, civilian and military airworthiness certification regulations/procedures are reviewed to ensure flight safety of aerial projectiles using large domestic civil aircraft, and applicable civil and military airworthiness certification technology standards are reviewed and analyzed. Additionally, we will review and suggest effective airworthiness certification application plans that reflect the reality, and present airworthiness certification standards (draft) for aerial launch vehicles, by analyzing applicable airworthiness certification technical standards when remodeling aerial launch vehicles.

Study on the Application of Airworthiness Standard for the e-VTOL (e-VTOL 항공기의 감항기술기준 적용 연구)

  • Choi, Joo-Won;Hwang, Chang-Jeon;Suk, Jin-Young
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.49 no.7
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    • pp.593-599
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    • 2021
  • The demand for e-VTOL aircraft is expected to be increased rapidly in the future as a means of urban transportation due to operating cost reduction, eco-friendliness and convenience of vertical take-off and landing using pilot-aids automation system. However, there are many technical hurdles to be solved in securing safety and certification which are essential for commercialization and urban operation. So far, there is no e-VTOL aircraft that has received type certificate and standard airworthiness certificate due to the technical problems and safety requirement differences with conventional aircraft. The e-VTOL aircraft certification should also meet the equivalent level of safety required by the current airworthiness standards, but there are existing problems in securing safety and meeting current standards. In this study, the e-VTOL's certification problems and technical limitations in satisfying the current standards are presented.

A Study on the Improvement of Airworthiness Certification (항공기 감항증명제도에 대한 고찰)

  • Hwang, Ho-Won;Hong, Seung-Taek
    • The Korean Journal of Air & Space Law and Policy
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    • v.26 no.1
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    • pp.31-63
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    • 2011
  • Since Korea has invested only on developing an aircraft, it is true that Korea has neglected detailed standards and procedures about certification activities including essential safety procedures. Most developed countries have implemented mandatory airworthiness system by legislating it for operational safety of aircraft based on ICAO Annex 8, and the U.S. Department of Defense and the FAA's Airworthiness system have been adapted it to the realities of their circumstance. Therefore, Airworthiness system that can guarantee the safety of the aircraft at international level is necessary to enhance flight safety and to create export opportunities of an aircraft as a country which can develop an aircraft by itself To achieve this, a study on the improvement of aircraft airworthiness was carried out by analyzing the problem of domestic airworthiness system and by reflecting international best practices on the establishment of a system for improved Airworthiness.

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