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Inductive Power Transfer Coil Misalignment Perception and Correction for Wirelessly Recharging Underground Sensors
John Sanchez1, Juan Arteaga2, Cody Zesiger3
1Department of Mechanical Engineering, University of Utah, Salt Lake City, UT 84112, USA.
This study introduces an automated system for aligning wireless power transfer coils, crucial for underground sensor networks. The method uses robotic actuators and particle filters to ensure efficient power delivery, overcoming common misalignment challenges.
Area of Science:
- Robotics and Automation
- Wireless Power Transfer
- Sensor Networks
Background:
- Underground sensor networks face power management challenges, requiring frequent battery maintenance or complex infrastructure.
- Wireless inductive power transfer (IPT) is a potential solution, but coil misalignment hinders its effectiveness, especially in obscured environments.
Purpose of the Study:
- To develop an automated methodology for sensing and correcting misalignment in IPT coils for underground sensor networks.
- To integrate a self-aligning wireless power delivery system with agricultural sensor platforms.
Main Methods:
- Modeling IPT coil misalignment using changes in lateral and distal positions.
- Employing sequential Monte Carlo methods (particle filters) to estimate hidden coil location from sensor measurements.
- Utilizing robotic actuators for automated coil alignment.
Main Results:
- Achieved alignment within 1 cm of peak lateral position in laboratory tests.
- Required an average of fewer than four sensor measurements for coil localization.
- Successfully demonstrated charging of a buried agricultural sensor platform using a vehicle-mounted transmitter.
Conclusions:
- The presented automated alignment strategy effectively corrects IPT coil misalignment without complex sensor or coil designs.
- This work enables practical implementation of robust wireless power solutions for underground sensor networks, particularly in agriculture.
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