Engineering
Optimization
100%
Optimization Approach
100%
Reinforcement Learning
100%
Tollmien-Schlichting Wave
100%
Particle Swarm Optimization
100%
Control System
33%
Performance
33%
Computational Efficiency
33%
Control Parameter
33%
Convergence Rate
16%
Artificial Intelligence
16%
Convective
16%
Control Flow
16%
Amplitude
16%
Comparative Study
16%
Laminar Boundary Layer
16%
Research
16%
Two Dimensional
16%
Development
16%
Rate of Convergence
16%
Stages
16%
Physics
Learning
100%
Tollmien-Schlichting Wave
100%
Optimization
100%
Particle Swarm Optimization
100%
Flow Control
66%
Retarding
50%
Controller
33%
Independent Variables
33%
Performance
33%
Amplitude
16%
Algorithm
16%
Attenuation
16%
Suction
16%
Optimal Control
16%
Laminar Boundary Layer
16%
Foci
16%
Artificial Intelligence
16%
INIS
control
100%
particles
100%
optimization
100%
comparative evaluations
100%
learning
100%
suppression
37%
convergence
25%
efficiency
25%
nonlinear problems
25%
performance
25%
control systems
25%
boundary layers
12%
convective instabilities
12%
attenuation
12%
jets
12%
amplitudes
12%
algorithms
12%
artificial intelligence
12%
Computer Science
Deep Reinforcement Learning
100%
Particle Swarm Optimization
100%
Waves
100%
Control
100%
Flow Control
66%
Control Parameter
33%
Convergence Rate
33%
Computational Efficiency
33%
Linear Controller
16%
Control Method
16%
Artificial Intelligence
16%
non linear control
16%
Reinforcement Learning
16%
Chemical Engineering
Reinforcement Learning
100%
Artificial Intelligence
25%
Keyphrases
Reinforcement Particles
100%
Blowing Jet
16%