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Pregled bibliografske jedinice broj: 1252576

Wireless Powering Efficiency of Deep-Body Implantable Devices


Soares, Icaro; Gao, Mingxiang; Cil, Erdem; Šipuš, Zvonimir; Skrivervik, Anja; Ho, John; Nikolayev, Denys
Wireless Powering Efficiency of Deep-Body Implantable Devices // Ieee transactions on microwave theory and techniques (2022) doi:10.1109/TMTT.2022.3231492 (znanstveni, prihvaćen)


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Naslov
Wireless Powering Efficiency of Deep-Body Implantable Devices

Autori
Soares, Icaro ; Gao, Mingxiang ; Cil, Erdem ; Šipuš, Zvonimir ; Skrivervik, Anja ; Ho, John ; Nikolayev, Denys

Vrsta, podvrsta
Radovi u časopisima, znanstveni

Izvornik
Ieee transactions on microwave theory and techniques (2022)

Status rada
Prihvaćen

Ključne riječi
biomedical electronics, implantable devices, pacemakers, radiation efficiency, wireless power transfer (WPT)

Sažetak
The wireless power transfer (WPT) efficiency to implanted bioelectronic devices is constrained by several frequency-dependent physical mechanisms. Recent works have developed several mathematical formulations to understand these mechanisms and predict the optimal operating conditions. However, the existing approaches rely on simplified body models, which are unable to capture important aspects of WPT. Therefore, this article proposes the efficiency analysis approach in anatomical models that can provide insightful information on achieving the optimum operation conditions. First, this approach is validated with a theoretical spherical wave expansion (SWE) analysis, and the results for a simplified spherical model and a human pectoral model are compared. The results show that although a magnetic receiver outperforms an electric one for near-field operation and both the sources could be equally use in the far-field range, it is in the mid-field that the maximum efficiency is achieved with an optimum frequency between 1 and 5 GHz depending on the implantation depth. The receiver orientation is another factor that affects the efficiency, with a maximum difference between the best and worst case scenarios around five times for the electric source and over 13 times for the magnetic one. This approach is used to analyze the case of a deep-implanted pacemaker wirelessly powered by an on-body transmitter and subjected to stochastic misalignments. We evaluate the efficiency and exposure, and we demonstrate how a buffered transmitter can be tailored to achieve maximum powering efficiency. Finally, design guidelines that lead to optimal implantable WPT systems are established from the results obtained with the proposed approach.

Izvorni jezik
Engleski

Znanstvena područja
Elektrotehnika



POVEZANOST RADA


Ustanove:
Fakultet elektrotehnike i računarstva, Zagreb

Profili:

Avatar Url Zvonimir Šipuš (autor)

Poveznice na cjeloviti tekst rada:

doi

Citiraj ovu publikaciju:

Soares, Icaro; Gao, Mingxiang; Cil, Erdem; Šipuš, Zvonimir; Skrivervik, Anja; Ho, John; Nikolayev, Denys
Wireless Powering Efficiency of Deep-Body Implantable Devices // Ieee transactions on microwave theory and techniques (2022) doi:10.1109/TMTT.2022.3231492 (znanstveni, prihvaćen)
Soares, I., Gao, M., Cil, E., Šipuš, Z., Skrivervik, A., Ho, J. & Nikolayev, D. (2022) Wireless Powering Efficiency of Deep-Body Implantable Devices. Prihvaćen za objavljivanje u Ieee transactions on microwave theory and techniques. [Preprint] doi:10.1109/TMTT.2022.3231492.
@unknown{unknown, author = {Soares, Icaro and Gao, Mingxiang and Cil, Erdem and \v{S}ipu\v{s}, Zvonimir and Skrivervik, Anja and Ho, John and Nikolayev, Denys}, year = {2022}, DOI = {10.1109/TMTT.2022.3231492}, keywords = {biomedical electronics, implantable devices, pacemakers, radiation efficiency, wireless power transfer (WPT)}, journal = {Ieee transactions on microwave theory and techniques}, doi = {10.1109/TMTT.2022.3231492}, title = {Wireless Powering Efficiency of Deep-Body Implantable Devices}, keyword = {biomedical electronics, implantable devices, pacemakers, radiation efficiency, wireless power transfer (WPT)} }
@unknown{unknown, author = {Soares, Icaro and Gao, Mingxiang and Cil, Erdem and \v{S}ipu\v{s}, Zvonimir and Skrivervik, Anja and Ho, John and Nikolayev, Denys}, year = {2022}, DOI = {10.1109/TMTT.2022.3231492}, keywords = {biomedical electronics, implantable devices, pacemakers, radiation efficiency, wireless power transfer (WPT)}, journal = {Ieee transactions on microwave theory and techniques}, doi = {10.1109/TMTT.2022.3231492}, title = {Wireless Powering Efficiency of Deep-Body Implantable Devices}, keyword = {biomedical electronics, implantable devices, pacemakers, radiation efficiency, wireless power transfer (WPT)} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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