Abstract
Part-II of this paper focuses on the mathematical analysis of the 3-D omnidirectional wireless power transfer (WPT) and also addresses the general principle of load detection. It provides the mathematical forms of distributions of the input power vector and output power vector, and demonstrates that the geometry of such 3-D distributed space follows the revolution of the Lemniscate of Bernoulli along its longitudinal axis. It provides the mathematical proof that the direction of energy transfer for the maximum energy efficiency is always in line with that of the maximum load power path in the 3-D space. Experimental verification is included to confirm the 3-D omnidirectional WPT theory. © 2016 IEEE.
| Original language | English |
|---|---|
| Article number | 7395384 |
| Pages (from-to) | 613-624 |
| Journal | IEEE Transactions on Power Electronics |
| Volume | 32 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 1 Jan 2017 |
| Externally published | Yes |
Bibliographical note
Publication details (e.g. title, author(s), publication statuses and dates) are captured on an “AS IS” and “AS AVAILABLE” basis at the time of record harvesting from the data source. Suggestions for further amendments or supplementary information can be sent to [email protected].Funding
This work was supported by the General Research Fund of the Hong Kong Research Grant Council under Project HKU 17206715.
Research Keywords
- Magnetic resonance
- omnidirectional wireless power
- wireless power transfer
RGC Funding Information
- RGC-funded
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