Engineering
Active Control
5%
Analytical Model
6%
Cantilever Beam
36%
Control System
5%
Damping Ratio ζ
21%
Degree of Freedom
12%
Design Optimization
5%
Electrical Energy
7%
Electromagnetic Coupling
6%
Energy Engineering
85%
Energy Harvesting
40%
Experimental Result
7%
Finite Element Method
22%
Flux Density
6%
Harvester
100%
Load Resistance
11%
Loading Case
7%
Magnetic Flux Density
14%
Mechanical Damping
15%
Natural Frequency
15%
Numerical Modeling
10%
Optimization Approach
5%
Optimum Load
11%
Piezoelectric
13%
Power Density
11%
Power Output
37%
Rotational Energy
7%
Rotor System
16%
Rotors
15%
Simulation Result
6%
Single Degree
12%
Transducer
7%
Two Degree of Freedom
7%
Wind Power
9%
Wireless Sensor Network
5%
Keyphrases
Active Bearing
5%
Analytical Formula
6%
Analytical Modeling
7%
Bimorph Cantilever Beam
7%
Cantilever Beam
31%
Connection Mode
8%
Damping Ratio
21%
Design Optimization
8%
Dual Cantilever
9%
Electrical Energy
10%
Electromagnetic Coupling
7%
Electromagnetic Damping
14%
Electromagnetic Energy Harvester
13%
Electromagnetic Vibration Energy Harvester
55%
Energy Harvester
9%
Energy Harvesting
5%
Energy Harvesting System
23%
Finite Element Analysis
14%
Flutter
9%
Flux Density
7%
Further Analysis
6%
Harvested Power
5%
Harvester
29%
High Output Power
5%
Load Case
5%
Magnetic Flux Density
11%
Mechanical Damping
18%
Natural Frequency
16%
Numerical Modeling
11%
Operational Bandwidth
7%
Optimization Approach
6%
Optimum Load Resistance
11%
Piezoelectric Cantilever Beam
9%
Power Density
11%
Power Output
38%
Rotor System
16%
Shape Optimization
9%
Single Degree of Freedom
11%
Structural Optimization
10%
Structural Sizing
6%
Two-degree-of-freedom
7%
Vibration Energy Harvester
23%
Vibration Energy Harvesting
14%
Wind Energy Harvesting
9%
Wireless Sensor Networks
6%