Keyphrases
Ultra-low Power
100%
Functional Node
100%
Multi-modal Vibration
100%
Four-leaf Clover
100%
MEMS Energy Harvester
100%
Vibration-based Method
100%
Low-power Wireless Networks
100%
Energy Harvester
50%
Piezoelectric Conversion
50%
Multiple Resonant Modes
50%
Closed-loop
25%
High Performance
25%
Technology-based
25%
ANSYS Workbench
25%
Mass-spring System
25%
Vibration Frequency
25%
Novel Design
25%
Design Concept
25%
Power Level
25%
Further Development
25%
Netherlands
25%
Design Optimization
25%
Electrical Energy
25%
Ongoing Activity
25%
Resonant Structure
25%
Good Accuracy
25%
Surrounding Environment
25%
MEMS Technology
25%
Energy Concept
25%
Microsystems
25%
Mechanical Energy
25%
Multi-physical
25%
Vibration Energy
25%
Delft University of Technology
25%
Predictive Methods
25%
Physical Sample
25%
Workbench
25%
Loop Conditions
25%
Scattering Power
25%
Energy Available
25%
MEMS Devices
25%
Straight Beam
25%
Fundamental Vibration
25%
Environmental Vibration
25%
Extracted Power
25%
Petal-like
25%
Conversion Principle
25%
Vibration Form
25%
Mechanical Resonator
25%
Cantilever Type
25%
Engineering
Nodes
100%
Microelectromechanical System
100%
Harvester
100%
Resonant Mode
50%
Piezoelectric
50%
Closed Loop
25%
Resonator
25%
Frequency Vibration
25%
Power Level
25%
Design Concept
25%
Simulated Data
25%
Measured Data
25%
Resonant Structure
25%
Good Accuracy
25%
Electrical Energy
25%
Surrounding Environment
25%
Microsystem
25%
Mechanical Energy
25%
Optimised Design
25%
Mass-Spring System
25%
Material Science
Microelectromechanical System
100%
Piezoelectricity
50%
Resonator
25%
Silicon
25%
Chemical Engineering
Microelectromechanical System
100%