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Static Design Flight Loads with Fly-By-Wire Technology

机译:采用线控技术的静态设计飞行载荷

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With the incorporation of Fly-By-Wire (FBW) technology as the primary rotorcraft control system, a new dimension to flight loads analysis is opened. Suddenly, the aircraft flight dynamics are not solely affected by the pilot control inputs, but are a combination of the control inputs and the underlying FBW flight control laws. This adds complexity to the development program, but the advantages associated with the technology far outweigh the additional effort. The purpose of this paper is to show the differences between developing static design flight loads using a FBW flight simulation vs. a legacy mechanical flight control system. It will also address the impact on maneuver methodology to meet design requirements. Finally, it will discuss how the overall design process differs from that of a mechanical flight loads program, highlighting the logistical challenges which are a result of incorporating a FBW control system. The content of this paper is drawn from experience gained and data generated on the UH-60M Modernization program, a derivative program of Sikorsky's BLACK HAWK helicopter line which will be the first of its kind equipped with Fly-By-Wire technology.
机译:通过将“线控飞行”(FBW)技术纳入主要旋翼飞机控制系统,为飞行载荷分析开辟了新的领域。突然,飞机的飞行动力学不仅受到飞行员控制输入的影响,而且还受到控制输入和潜在的FBW飞行控制定律的综合影响。这增加了开发程序的复杂性,但是与该技术相关的优势远远超过了额外的努力。本文的目的是展示使用FBW飞行模拟开发静态设计飞行负载与使用传统机械飞行控制系统之间的差异。它还将解决对满足设计要求的机动方法的影响。最后,它将讨论整体设计过程与机械飞行载荷程序有何不同,重点介绍了由于集成了FBW控制系统而导致的后勤挑战。本文的内容取材自UH-60M现代化计划的经验和数据,该计划是西科斯基的BLACK HAWK直升机系列的衍生计划,这将是首款配备Fly-By-Wire技术的同类产品。

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