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contributor authorAhsan, Muhammad Adeel
contributor authorDe Silva, Oscar
contributor authorMann, George K. I.
contributor authorGosine, Raymond G.
contributor authorJayasiri, Awantha
date accessioned2026-08-23T07:58:56Z
date available2026-08-23T07:58:56Z
date copyright2026/01/01
date issued2026
identifier issn2689-6117
identifier otheraldsc-25-1041.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4315897
description abstractAbstract. This letter presents a geometric disturbance observer-based nonlinear model predictive control (NMPC) architecture for quadrotor trajectory tracking. The proposed approach couples a geometric extended-state extended Kalman filter (ES-EKF) formulated on the SO(3) manifold with a disturbance-aware predictive controller. By embedding explicit force and torque disturbance states into the continuous-time model, the ES-EKF obtains real-time estimates of six degrees-of-freedom (DOF) perturbations. These disturbance estimates are injected as known parameters into the NMPC’s prediction model at each sampling instant, enabling proactive compensation within the receding-horizon optimization. Simulations are conducted on different trajectories with varied flight conditions subjected to periodic 6DOF perturbations. The proposed ES-EKF-NMPC framework reduces position root mean square error by 60% on average compared to baseline NMPC without disturbance feedback. These results demonstrate that the proposed architecture offers disturbance-resilient control for under-actuated unmanned aerial vehicles while handling constraints.
publisherThe American Society of Mechanical Engineers (ASME)
titleGeometric Disturbance Observer Based Nonlinear Model Predictive Control of a Quadrotor
typeJournal Paper
journal volume6
journal issue1
journal titleASME Letters in Dynamic Systems and Control
identifier doi10.1115/1.4069922
journal fristpage444
journal lastpage450
page7
treeASME Letters in Dynamic Systems and Control:;2026:;volume( 006 ):;issue:001
contenttypeFulltext


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