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Optimal Communication Topology Determination and Sensor Selection for Independent Airspace SurveillanceThe paper presents an approach to sensors selection and network topology determination for independent airspace surveillance with maximum outcome and minimum cost using ground based distributed sensing, computing and communication network infrastructure. The selection criteria includes minimum estimation error, maximum airspace coverage, minimum communication time and power consumption while guaranteeing the system observability and providing in-time quality information to a monitoring observer. The developed algorithm uses multi-objective optimization strategy taking into account trade-offs between conflicting objectives and relaxations for in time implementation. It is implemented utilizing graph theoretic tools. The approach is validated in a desktop simulation environment using synthetic sensors data generated for a simulated multi-vehicle flight scenario in the selected regional airspace.
Document ID
20240006616
Acquisition Source
Ames Research Center
Document Type
Extended Abstract
Authors
Vahram Stepanyan
(Wyle (United States) El Segundo, California, United States)
Corey Ippolito
(Ames Research Center Mountain View, United States)
Keerthana Kannan
(Wyle (United States) El Segundo, California, United States)
Evan T Kawamura
(Ames Research Center Mountain View, United States)
Thomas Lombaerts
(Wyle (United States) El Segundo, California, United States)
Date Acquired
May 21, 2024
Subject Category
Aircraft Communications and Navigation
Meeting Information
Meeting: AIAA SciTech Forum and Exposition
Location: Orlando, FL
Country: US
Start Date: January 6, 2025
End Date: January 10, 2025
Sponsors: American Institute of Aeronautics and Astronautics
Funding Number(s)
TASK: 15182.11.00.203.001
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
NASA Technical Management
Keywords
Distributed sensing
Optimal allocation
Communication network topology
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