高谐波控制:一个历史的视角

IF 1.4 4区 工程技术 Q2 ENGINEERING, AEROSPACE Journal of the American Helicopter Society Pub Date : 2021-01-01 DOI:10.4050/JAHS.66.022001
C. Hammond, Lockheed Martin
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引用次数: 2

摘要

高谐波控制(HHC)是一种通过控制振动旋翼载荷以使机身激励最小化来实现降低直升机振动的方法。本文从历史的角度考察了一个旨在直升机减振的项目是如何作为NASA兰利研究中心固定翼颤振抑制的结果而开始的,如何在气动弹性比例风洞模型上证明了HHC概念,并在1982年在OH-6A直升机上进行了全尺寸飞行测试。在OH-6A飞行试验之后,直升机研究界通过分析、风洞试验和飞行试验来验证HHC在不同构型上的有效性。所有这些研究都表明,HHC可以有效地将振动降低到常规振动控制方法无法达到的水平,而且没有任何有害的副作用。HHC的发展已经取得了进展,该技术为解决直升机中一直存在的振动问题提供了另一种选择。文献表明,应用HHC可获得与固定翼飞机相当的直升机乘坐质量。
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Higher Harmonic Control: A Historical Perspective
Higher harmonic control (HHC) is an approach for achieving reduced helicopter vibration by controlling the vibratory rotor airloads in such a way that the fuselage excitation is minimized. This paper is a historical look at how a program aimed at helicopter vibration reduction started as an outgrowth of fixed wing flutter suppression at NASA Langley Research Center, proved the HHC concept on aeroelastically scaled wind tunnel models and went on to demonstrate viability in full-scale flight testing on the OH-6A helicopter in 1982. Following the OH-6A flight tests, the helicopter research community was stimulated to prove the effectiveness of HHC on different configurations through analysis, wind tunnel tests, and flight tests. All of these investigations have shown HHC to be effective in reducing vibration to levels not attainable with conventional vibration control methods and without any detrimental side effects. HHC development has progressed to the point that the technology provides one more option to address the ever-present vibration problem in helicopters. The literature demonstrates that helicopter ride quality equivalent to that of fixed wing aircraft is attainable with application of HHC.
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来源期刊
Journal of the American Helicopter Society
Journal of the American Helicopter Society 工程技术-工程:宇航
CiteScore
4.10
自引率
33.30%
发文量
36
审稿时长
>12 weeks
期刊介绍: The Journal of the American Helicopter Society is a peer-reviewed technical journal published quarterly (January, April, July and October) by AHS — The Vertical Flight Society. It is the world''s only scientific journal dedicated to vertical flight technology and is available in print and online. The Journal publishes original technical papers dealing with theory and practice of vertical flight. The Journal seeks to foster the exchange of significant new ideas and information about helicopters and V/STOL aircraft. The scope of the Journal covers the full range of research, analysis, design, manufacturing, test, operations, and support. A constantly growing list of specialty areas is included within that scope. These range from the classical specialties like aerodynamic, dynamics and structures to more recent priorities such as acoustics, materials and signature reduction and to operational issues such as design criteria, safety and reliability. (Note: semi- and nontechnical articles of more general interest reporting current events or experiences should be sent to the VFS magazine
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