Regressor time-shifting to identify longitudinal stability and control derivatives of the Jetstream 3102

Date

2017-06-20

Supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Department

Type

Article

ISSN

1270-9638

Format

Free to read from

Citation

Yusuf S, Lone M, Cooke A, Lawson N. (2017) Regressor time-shifting to identify longitudinal stability and control derivatives of the Jetstream 3102. Aerospace Science and Technology, Volume 69, October 2017, pp. 218-225

Abstract

The Jetstream 31 G-NFLA aircraft is used as a national flying laboratory test vehicle for flight dynamics research and teaching purposes. It has been the subject of much theoretical and experimental modelling and therefore, the need for generating validation data through flight testing is critical. In this paper, the aircraft's short period pitch oscillation mode characteristics are identified using data from sixteen flight tests. An identification procedure based on the least squares method and reduced order state-space model is used and the need for pre-processing regressors due to the effects of sensor location and instrumentation delays is highlighted. It has been shown that time-shifting the regressors based on relative locations of the angle of attack vanes and the inertial measurement unit results in significant reductions in uncertainty bounds of the estimated aeroderivatives and also a model that provides a closer match to flight test data. The estimated models are validated using separate flight test data and the variations in aeroderivatives over a range of airspeeds and centre of gravity positions are also presented.

Description

Software Description

Software Language

Github

Keywords

Parameter estimation, Short period pitch oscillation, Regressor corrections

DOI

Rights

Attribution-NonCommercial-NoDerivatives 4.0 International

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