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BioSwarm: Bio-Inspired Swarming Supplement: A Methodology for Modeling Swarm Behavioral Dynamics from Local Observations
Pratt, Stephen
(PI)
Liebig, Juergen
(CoI)
Berman, Spring
(CoI)
Pavlic, Theodore
(CoI)
Mechanical and Aerospace Engineering
Biomimicry Center, The
Industrial, Systems and Operations Engineering
Life Sciences, School of (SOLS)
Sustainability, School of (SOS)
Knowledge Enterprise (KE)
Global Futures Laboratory, Julie Ann Wrigley (GFL)
Project
:
Research project
Overview
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Engineering & Materials Science
Chemical reactions
100%
Robotics
65%
Site selection
58%
Rate constants
53%
Reaction rates
32%
Decision making
31%
Sensors
29%
Control theory
28%
Animals
27%
Differential equations
25%
Internet of things
24%
Machine learning
21%
Population dynamics
21%
Video recording
18%
Ecology
17%
Autonomous agents
17%
Physiology
17%
Swarm intelligence
17%
Decentralized control
17%
Supervisory personnel
16%
Stochastic models
15%
Sensor networks
12%
Dynamical systems
11%
Wireless networks
11%
Automation
10%
Switches
10%
Sampling
10%
Trajectories
10%
Robots
9%
Neural networks
8%
Testing
7%
Communication
7%
Experiments
5%