Open and Closed Loop Stability of Hingeless Rotor Helicopter Air and Ground Resonance
SM_DYN_1974-5470
2/13/1974
- Content
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The air and ground resonance instabilities of hingeless rotor helicopters are examined on a relatively broad parametric basis including the effects of blade tuning, virtual hinge locations, and blade hysteresis damping, as well as size and scale effects in the gross weight range from 5,000 to 48,000 pounds. A special case of a 72,000 pound helicopter air resonance instability is also included. An evolutionary approach to closed loop stabilization of both the air and ground resonance instabilities is considered by utilizing a conventional helicopter swashplate-blade cyclic pitch control system in conjunction with roll, roll rate, pitch and pitch rate sensing and control action. The study shows that nominal to moderate and readily achieved levels of blade internal hysteresis damping in conjunction with a variety of tuning and/or feedback conditions are highly effective in dealing with these instabilities. Tip weights and reductions in pre-coning angles are also shown to be effective means for improving the air resonance instability.
- Citation
- Young, M., Bailey, D., and Hirschbein, M., "Open and Closed Loop Stability of Hingeless Rotor Helicopter Air and Ground Resonance," AHS - NASA Ames Specialists Meeting on Rotorcraft Dynamics, Moffett Field, California, Feb 1974, Moffett Field, California, February 13, 1974, https://doi.org/10.4050/SM_DYN_1974-5470.