TY - GEN
T1 - Experimental and Numerical Investigation of Energy Harvester Based on Magnetic Rolling Pendulum
AU - Borowiec, Marek
AU - Bochenski, Marcin
AU - Haniszewski, Tomasz
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - In the paper, an innovative system for energy harvesting is presented, based on a magnetic pendulum. The proposed system is characterized by nonlinear behaviour that depends on the initial conditions of vibration. The appearance of nonlinearities can provide a broadened bandwidth at resonance zones for energy harvesting. Usually the second resonance manifests a low output harvested electric energy in mechanical systems compared to a main resonance zone. In this work, the system is proposed, which provides high output parameters for energy harvesting in both primary and secondary resonance zones. The magnetic pendulum focuses on converting mechanical energy into electrical energy by utilizing a subsystem based on coils. The main concept of this solution involves the use of a permanent rolling magnet between two magnetic bumpers. The system provides behaviour corresponding to double solutions by sweeping up and sweeping down the excitation frequency within the first and the second resonances, and it is associated with initial conditions such as the angle of deflection and initial force of excitations. Introducing a variable distance between the bumpers of magnets, the energy harvesting efficiency is modified. Applying such a magnetic pendulum system with variable mechanical input parameters opens perspectives for effective energy harvesting in a way that can be adapted to variable environmental conditions.
AB - In the paper, an innovative system for energy harvesting is presented, based on a magnetic pendulum. The proposed system is characterized by nonlinear behaviour that depends on the initial conditions of vibration. The appearance of nonlinearities can provide a broadened bandwidth at resonance zones for energy harvesting. Usually the second resonance manifests a low output harvested electric energy in mechanical systems compared to a main resonance zone. In this work, the system is proposed, which provides high output parameters for energy harvesting in both primary and secondary resonance zones. The magnetic pendulum focuses on converting mechanical energy into electrical energy by utilizing a subsystem based on coils. The main concept of this solution involves the use of a permanent rolling magnet between two magnetic bumpers. The system provides behaviour corresponding to double solutions by sweeping up and sweeping down the excitation frequency within the first and the second resonances, and it is associated with initial conditions such as the angle of deflection and initial force of excitations. Introducing a variable distance between the bumpers of magnets, the energy harvesting efficiency is modified. Applying such a magnetic pendulum system with variable mechanical input parameters opens perspectives for effective energy harvesting in a way that can be adapted to variable environmental conditions.
KW - energy harvesting
KW - mechanical vibration
KW - nonlinear behaviour
UR - https://www.scopus.com/pages/publications/85200605080
U2 - 10.1109/MetroAeroSpace61015.2024.10591599
DO - 10.1109/MetroAeroSpace61015.2024.10591599
M3 - Conference contribution
AN - SCOPUS:85200605080
T3 - 2024 IEEE International Workshop on Metrology for AeroSpace, MetroAeroSpace 2024 - Proceeding
SP - 356
EP - 360
BT - 2024 IEEE International Workshop on Metrology for AeroSpace, MetroAeroSpace 2024 - Proceeding
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 11th IEEE International Workshop on Metrology for AeroSpace, MetroAeroSpace 2024
Y2 - 3 June 2024 through 5 June 2024
ER -