Abstract
A lateral/directional state-space model of the Raptor 50 helicopter is identified in forward flight condition. A frequency sweep test is properly designed and executed to collect a well-suited time-history database. The measured accelerometers are transferred from the sensor location to the gravity, then, a complete set of non-parametric input-to-output frequency responses that fully characterizes the coupled helicopter dynamics are extracted from the frequency sweep test data. With the help of small perturbation theory, a linearized dynamic model for the stability and control derivative is extracted from linearization of a nonlinear mathematical model. A nonlinear search based on secant method is conducted for the linear lateral/directional state-space model that matches the frequency-response data set. The identified model is verified in the time domain, which indicates that the model matches the flight data well.
| Original language | English |
|---|---|
| Pages (from-to) | 137-143 |
| Number of pages | 7 |
| Journal | Procedia Engineering |
| Volume | 16 |
| DOIs | |
| State | Published - 2011 |
| Event | International Workshop on Automobile, Power and Energy Engineering, APEE 2011 - Wuhan, China Duration: 15 Apr 2011 → 17 Apr 2011 |
Keywords
- Forward flight
- Frequency identification
- Helicopter
- Lateral/directional model
- Secant method
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