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Comparison and Application of Battery Modeling Methods for Conceptual Electric AircraftGrowing interest in design and optimization of electrified aircraft propulsion concepts prompts the need for accurate, flexible, and efficient methods to model battery systems. Presented in this paper are three battery modeling methods that have been used at NASA’s Glenn Research Center, each representing different mathematical or electrical approaches. Thévenin equivalent circuit, normalization, and curve-fitting methods are compared against battery cell test data for the X-57 Maxwell electric aircraft technology demonstrator. The methods are then applied in a simple multidisciplinary optimization context using NASA’s Six-Passenger Electric Quadrotor concept to determine their applicability and performance. The normalization method achieves the highest accuracy for steady and unsteady discharge rates with a voltage mean error percentage of 0.423% and 1.186%, respectively. Optimal quadrotor mission range between the models varies up to 0.5 nmi, identifying current battery modeling methods as a potentially significant contributor to mission analysis error. A set of relevant tools and techniques for conceptual battery modeling are identified in this paper, with conclusions made on the utility of each modeling approach for various design challenges.
Document ID
20240007449
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
Jeshurun P. Horton
(Glenn Research Center Cleveland, United States)
Jeffryes W. Chapman
(Glenn Research Center Cleveland, United States)
Mark K. Leader
(Glenn Research Center Cleveland, United States)
Date Acquired
June 10, 2024
Subject Category
Aircraft Propulsion and Power
Meeting Information
Meeting: AIAA Aviation Forum
Location: Las Vegas, NV
Country: US
Start Date: July 29, 2024
End Date: August 2, 2024
Sponsors: American Institute of Aeronautics and Astronautics
Funding Number(s)
WBS: 664817.02.03.04.01.01
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Professional Review
Keywords
power
energy
battery
electric
aircraft
multidisciplinary
design
model
optimization
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