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NASA NTRS · 20220019107

Candidate Performance Metrics for Generalized Control for Autonomous Flight

Abstract

Contingency management is the most challenging aspect of autonomous flight. In order to accommodate the most flexible response to unpredicted events and unexpected circumstances, i.e. contingencies, a new integrated path planning, trajectory following, flight control architecture is required that would maximize the safe operating envelope. For this highly integrated generalized control architecture, a new set of performance metrics that extends beyond traditional stability and performance is required. This paper proposes a candidate set of new performance metrics relevant to urban air mobility mission scenarios.

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BibTeXRIS

Irene M. Gregory, Michael J. Acheson, Andrew P. Patterson, Matthew D. Houghton, Alexander Oshin, Kasey A. Ackerman. Candidate Performance Metrics for Generalized Control for Autonomous Flight. https://ntrs.nasa.gov/citations/20220019107

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Candidate Performance Metrics for Generalized Control for Autonomous Flight

Contingency management is the most challenging aspect of autonomous flight. In order to accommodate the most flexible response to unpredicted events and unexpected circumstances, i.e. contingencies, a new integrated path planning, trajectory following, flight control architecture is required that would maximize the safe operating envelope. For this highly integrated generalized control architecture, a new set of performance metrics that extends beyond traditional stability and performance is required. This paper proposes a candidate set of new performance metrics relevant to urban air mobility mission scenarios.

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