![]() ![]() figure-of-merits), which assist in finding the optimum Air-Cored Coil (ACC) geometry. Conventional methods for maximising PTE require defining various design parameters (i.e. The research work undertaken focuses on the geometrical optimisation of Tx/Rx coils to help maximise PTE in RIPT systems for operation over low- and mid-frequency bands (i.e. In considering these impacting factors, different techniques to improve PTE have been extensively presented in the literature and are comprehensively reviewed in this thesis. In a RIPT link the PTE is influenced by three factors: (i) inductive linkage between the Tx and Rx, (ii) terminating circuitry of Tx and Rx sides and (iii) the Tx/Rx coil's geometrical size. Maximising the PTE is a key driver for improving the performance of RIPT systems. RIPT systems operate on the principle of magnetic resonance coupling between a Transmitter (Tx) and a Receiver (Rx) coil. ![]() ![]() The primary reason is the relatively higher Power Transfer Efficiency (PTE) that RIPT can provide. Among the different available WPT techniques, Resonant Inductive Power Transfer (RIPT) has been adapted for use in a wide range of applications. Wireless power transfer (WPT) is a well-established method of energising electrically-powered devices. ![]()
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