NASA NTRS · 20200001383
Mode-Based Sensing and Actuation Techniques for Multi-Objective Flexible Aircraft Control
Abstract
Intelligent sensing and actuation designs are explored as a means to improve performance of a gust load alleviation control design for a flexible wing aircraft equipped with wing-shaping control surfaces. The proposed techniques rely on identification of the dominant structural modes during specified flight conditions and uses them as a basis for sensor placement and actuator utilization. Specifically, a strategy for sensor placement is discussed that uses target mode shape capture as a mean to improve state estimation quality. A second strategy that reduces the number of wing-shaping control inputs using mode and objective-based shape functions as virtual input channels is also presented. Both techniques are demonstrated in simulation of a flexible wing transport aircraft utilizing a multi-objective control system designed to suppress flexible motion, minimize gust and maneuver load, and reduce drag.
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Hashemi, Kelley E., Alder, Andrew, Cramer, Nick, Nguyen, Nhan T.. 2020-01-06. Mode-Based Sensing and Actuation Techniques for Multi-Objective Flexible Aircraft Control. https://ntrs.nasa.gov/citations/20200001383
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