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Helicopter simulation modeling techniques for meeting FAA AC120-63 level D qualification requirements

机译:满足FAA AC120-63 D级认证要求的直升机仿真建模技术

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Recent advances in technology have significnatly expanded the capabilities and usefulness of helicopter full flgiht training simulators. In 1994, the FAA encouraged and challenged industry to take advantage of the emerging technology for use in training simulation by drafting the advisotry circular AC120-63. FlightSafety International (FSI) has recently incorporated many of the advances in helicopter flight dynamics modeling and qualified three helicopter full Level D's and one Level C). This paper summarizes the history of helicopter training simulation at FSI and specifically outlines the methods used to qualify the Sikorsky S-76C= to the new FAA AC120-63 Level D requirements. Included is a discussion on the nultiple simulation techniques integrated into a seamless model to match static and dynamic time histories through the entire operational envelope of the S-76C+, from startup to shutdown. In addition to successfully meeting FAA time history requirements, subjective requirements were also met through numerous pilot-in-the-loop simulator evaluations. The challenge of training simulation modeling is to main-tain teoretical and physical accuracy while allowing for objective and subjective adjustment.
机译:技术的最新进展显着扩展了直升机全功能训练模拟器的功能和实用性。 1994年,FAA通过起草建议性通告AC120-63来鼓励和挑战行业利用新兴技术进行培训模拟。国际飞行安全组织(FSI)最近结合了直升机飞行动力学建模的许多先进技术,并获得了三架直升飞机D级和一级C级的资格。本文总结了FSI直升机训练模拟的历史,并特别概述了使Sikorsky S-76C =符合FAA AC120-63 D级新要求的方法。其中包括对集成到无缝模型中的多种仿真技术的讨论,以在从启动到关闭的整个S-76C +整个操作范围内匹配静态和动态时间历史记录。除了成功满足FAA时程要求外,还通过大量的飞行员在环仿真器评估来满足主观要求。训练模拟建模的挑战是在保持客观和主观调整的同时,保持结构和物理准确性。

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