Abstract
This paper investigates the feasibility of using the three-dimensional omnidirectional inductive channel for power transfer and as a power line communication (PLC) for ground-based vehicle, electric air vehicle, or space applications. The simulation results were performed by the advanced design system software using lumped equivalent circuit model. The power transfer efficiency was determined based on multiport scattering (S)-parameters numerical simulation results while the theoretical channel capacity was calculated based on Matlab software as a function of the coupling coefficient considering an additive white Gaussian noise. Furthermore, the magnetic field distribution was evaluated as function of the misalignment angle θ between the receiver and the three orthogonal transmitters coils.
Author supplied keywords
- 3D inductive channel
- Advanced design system (ADS) simulation
- Channel bandwidth
- Channel capacity
- Coupling coefficients
- Data communication
- Electric air vehicle
- Energy efficiency
- Finite elements
- Ground-based vehicle
- Misalignment angle
- Power line communication
- Resonance data rate simulation
- Space applications
- Wireless power transfer
Cite
CITATION STYLE
Zouaoui, S., Dghais, W., Melicio, R., & Belgacem, H. (2020). Omnidirectional wpt and data communication for electric air vehicles: Feasibility study. Energies, 13(24). https://doi.org/10.3390/en13246480
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