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Original Articles

An adaptive disturbance rejection control scheme for multivariable nonlinear systems

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Pages 594-610 | Received 19 Nov 2014, Accepted 23 Aug 2015, Published online: 01 Oct 2015
 

ABSTRACT

An adaptive disturbance rejection control scheme is developed for uncertain multi-input multi-output nonlinear systems in the presence of unmatched input disturbances. The nominal output rejection scheme is first developed, for which the relative degree characterisation of the control and disturbance system models from multivariable nonlinear systems is specified as a key design condition for this disturbance output rejection design. The adaptive disturbance rejection control design is then completed by deriving an error model in terms of parameter errors and tracking error, and constructing adaptive parameter-updated laws and adaptive parameter projection algorithms. All closed-loop signals are guaranteed to be bounded and the plant output tracks a given reference output asymptotically despite the uncertainties of system and disturbance parameters. The developed adaptive disturbance rejection scheme is applied to turbulence compensation for aircraft fight control. Simulation results from a benchmark aircraft model verify the desired system performance.

Additional information

Funding

This work was supported in part by the National Natural Science Foundations of China [grant number 61374130], [grant number 61473143], [grant number 61533009]; by the National Science Foundation of USA [grant number ECS1509704]; by the Fundamental Research Funds for Central Universities [grant number NE2015002], [grant number NE2015103]; and by the Jiangsu Innovation Program for Graduate Education [grant number KYLX0278].

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