Title :
Instrumental variable covariance method for the aircraft flutter model parameter identification
Author :
Wang, Jianhong ; Yong-hong, Zhu
Author_Institution :
Sch. of Mech. & Electron. Eng., Jingdezhen Ceramic Inst., Jingdezhen, China
Abstract :
When the observed input-output datas are corrupted with observed noises in the aircraft flutter statistic model, we should obtain the more exact aircraft flutter model parameters to predict the flutter boundary accuracy and assure flight safety of plane. So we combine the instrumental variable identification method in system identification theory and covariance matching method in modern spectrum theory to get a new strategy- instrumental variable covariance method. In aircraft flutter´s statistic model, we introduce some instrumental variable to develop a covariance function. And we propose a new criterion function which is composed as a difference between the theory value and actual estimation value of the covariance function. Now the new criterion function based on the covariance function can be used to identify some unknown parameter vector in parameterization frequency domain response function, furthermore we give the procedure in detail to solve the new criterion function and correspond to the partial derivatives expression. Finally we apply this new identification method to identify the transfer function in current loop of flight simulator and aircraft flutter model parameter identification. The simulation with real flight test data shows the efficiency of the algorithm.
Keywords :
aerospace safety; aerospace simulation; aircraft instrumentation; covariance matrices; estimation theory; frequency-domain analysis; parameter estimation; transfer functions; aircraft flutter model parameter identification; aircraft flutter statistic model; covariance function; covariance matching method; criterion function; estimation value; flight safety; flight simulator; flutter boundary accuracy; input-output datas; instrumental variable covariance method; instrumental variable identification method; modern spectrum theory; parameterization frequency domain response function; partial derivatives expression; system identification theory; transfer function identification; unknown parameter vector; Aerospace electronics; Aircraft; Aircraft propulsion; Atmospheric modeling; Instruments; Predictive models; System identification; aircraft flutter; instrumental variable covariance method; model parameter;
Conference_Titel :
Control and Decision Conference (CCDC), 2012 24th Chinese
Conference_Location :
Taiyuan
Print_ISBN :
978-1-4577-2073-4
DOI :
10.1109/CCDC.2012.6244475