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The transcutaneous energy transmission system (TETS) through intact skin to power a totally artificial heart (TAH) has been designed and built. Due to large air gap, the coupling ability of transformer is low. This paper selects core material, geometrical parameters, and coils axial displacement to study their effects on coupling coefficient (k). By simulating with various values, transformer is optimized...
The transcutaneous energy transmission system (TETS) uses a contactless transformer to power an implanted artificial heart. This system does not require penetrating wires through the skin, preventing patients from infection-associated complications. We investigate the structures of TETS computationally and analyze the effects of core shapes on coupling characteristics. A coil design with a high coupling...
Contact-less electrical energy transmission system (CEET) becomes more and more attractive for various applications. A coreless detachable transformer used for CEET is investigated in this paper. Equivalent circuit model of detachable transformer was established and analyzed. And the flux distribution of the proposed detachable transformer was attained using finite element method (FEM). The flux simulation...
These instructions give you guidelines for preparing papers for IEEE conferences. Use this document as a template if you are using Microsoft Word 6.0 or later. Otherwise, use this document as an instruction set. Instructions about final paper and figure submissions in this document are for IEEE journals; please use this document as a ldquotemplaterdquo to prepare your manuscript. For submission guidelines,...
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