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Active Airframe Vibration Control Simulations of Lift-offset Compound Helicopters in High-Speed Flights |
Sung-Boo Hong, Young-Min Kwon, Ji-Su Kim, Yu-Been Lee, Byeong-Hyeon Park, Hyun-Cheol Shin, Jae-Sang Park |
J. KIMS Technol. 2021;24(4):357-367. Published online August 5, 2021 DOI: https://doi.org/10.9766/KIMST.2021.24.4.357 |
Active Airframe Vibration Control Simulations of Lift-offset Compound Helicopters in High-Speed Flights Variable rotor speed strategy for coaxial compound helicopters with lift–offset rotors Effect of Lift-offset Rotor Hub Vibratory Load Components on Airframe Vibration Responses of High-Speed Compound Unmanned Rotorcrafts Active Airframe Vibration Control Study Using a Small-Scale Model for Lift-Offset Compound Helicopter Airframe Vibration Reduction for an Unmanned Lift-Offset Compound Helicopter Using Active Vibration Control System Active vibration reductions for airframe and human body of UH-60A helicopter in low- and high-speed flights Vibration reduction simulations of a lift-offset compound helicopter using two active control techniques Active vibration reductions of a lift-offset compound helicopter using individual blade pitch control with multiple harmonic inputs Flaps and High-Lift Devices Aerodynamically induced noise of a lift-offset coaxial rotor with pitch attitude in high-speed forward flight |