Active Airframe Vibration Control Simulations of Lift-offset Compound Helicopters in High-Speed Flights

Author:

Hong Sung-Boo,Kwon Young-Min,Kim Ji-Su,Lee Yu-Been,Park Byeong-Hyeon,Shin Hyun-Cheol,Park Jae-Sang

Abstract

This paper studies the simulations of active airframe vibration controls for the Sikorsky X2 helicopter with a lift-offset coaxial rotor. The 4P hub vibratory loads of the X2TD rotor are obtained from the previous work using a rotorcraft comprehensive analysis code, CAMRAD II. The finite element analysis software, MSC.NASTRAN, is used to model the structural dynamics of the X2TD airframe and to analyze the 4P vibration responses of the airframe. A simulation study using Active Vibration Control System(AVCS) with Fx-LMS algorithm to reduce the airframe vibrations is conducted. The present AVCS is modeled using MATLAB Simulink. When AVCS is applied to the X2TD airframe at 250 knots, the 4P longitudinal and vertical vibration responses at the specified airframe positions, such as the pilot seat, co-pilot seat, engine deck, and prop gearbox, are reduced by 30.65 ~ 94.12 %.

Funder

Agency for Defense Development

Publisher

The Korea Institute of Military Science and Technology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Active Airframe Vibration Control Study Using a Small-Scale Model for Lift-Offset Compound Helicopter;International Journal of Aeronautical and Space Sciences;2022-08-03

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