2022
DOI: 10.1016/j.biosx.2022.100180
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Compensation topologies for wireless power transmission system in medical implant applications: A review

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Cited by 20 publications
(18 citation statements)
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“…In biomedical micro-systems, this technology has been used in endoscopic capsules [102], pacemakers [103], biomedical implants [104] and brain-machine interfaces, among others [105][106][107]. WPT allows the traditional use of percutaneous cables and implantable batteries to be replaced by rechargeable batteries, reducing the need for surgery and improving system features [105].…”
Section: Inductive Wireless Power Transfermentioning
confidence: 99%
“…In biomedical micro-systems, this technology has been used in endoscopic capsules [102], pacemakers [103], biomedical implants [104] and brain-machine interfaces, among others [105][106][107]. WPT allows the traditional use of percutaneous cables and implantable batteries to be replaced by rechargeable batteries, reducing the need for surgery and improving system features [105].…”
Section: Inductive Wireless Power Transfermentioning
confidence: 99%
“…Looking at (24) shows that the expression represents a simple relationship, but design challenge is represented by the load vale dependency. Because of this relationship, the analyzed solution of WPT system would be well suited for the systems with constant power requirement.…”
Section: B Analytical Expresion For Optimal Design Of Current-doubler...mentioning
confidence: 99%
“…The compensation circuit must be placed between the inverter and the primary coil to operate in resonance conditions. In the literature, different types of compensation, such as SS, SP, PP, PS, and others, are also considered [12]. The functional diagram of the BWPT system is shown in Figure 1.…”
Section: General Description Of Bwptmentioning
confidence: 99%
“…At the same time, the hybrid topology is classified based on the combination of inductor and capacitor connections [6,7]. It can be a primary or secondary side coil, double-sided, or multi-coil structure [12]. The classifications of all the types of compensation topologies are illustrated in Figure 2.…”
Section: Classifications Of the Compensation Topologiesmentioning
confidence: 99%