Desain novel adaptive reconfigurable active class E rectifier untuk aplikasi wireless power transfer = Novel adaptive reconfigurable active class E rectifier design for wireless power transfer applications

Main Authors: Dandy Bagus Fauzan, author, Add author: Taufiq Alif Kurniawan, supervisor, Add author: Harry Sudibyo S., examiner, Add author: Faiz Husnayain, examiner
Format: Bachelors
Terbitan: , 2020
Subjects:
Online Access: http://lontar.ui.ac.id/detail?id=20505220
ctrlnum 20505220
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><type>Thesis:Bachelors</type><title>Desain novel adaptive reconfigurable active class E rectifier untuk aplikasi wireless power transfer = Novel adaptive reconfigurable active class E rectifier design for wireless power transfer applications</title><creator>Dandy Bagus Fauzan, author</creator><creator>Add author: Taufiq Alif Kurniawan, supervisor</creator><creator>Add author: Harry Sudibyo S., examiner</creator><creator>Add author: Faiz Husnayain, examiner</creator><publisher/><date>2020</date><subject>Wireless power transmission</subject><description>&lt;b&gt;ABSTRAK&lt;/b&gt;&lt;br. Pada skripsi ini telah dipresentasikan desain rectifier untuk aplikasi wireless power transfer dengan topologi novel sebagai studi tahap awal. Topologi ini menggabungkan dan memodifikasi adaptive reconfigurable rectifierdengan active class E rectifier. Modifikasi yang dilakukan adalah mengganti switch NMOS pada active class E rectifiermenjadi PMOS pada topologi active class E rectifier dan mengubah jumlah dioda dan transistor yang digunakanpada topologi adaptive reconfigurable rectifier. Penggantian switch menjadi PMOS meningkatkan efisiensi dan menghasilkan output Wave form yang lebih baik. Penambahan jumlah diodadan jumlah transistor mencegah dioda mencapai breakdown voltage sehingga meningkatkan efisiensidan menjadikan rangkaian dapat mempertahankan dan meningkatkan efisiensi pada nilai inputyang lebih tinggi. Rangkaian usulan terdiri dari switch PMOS IRF9Z24 pada bagian active class E rectifier dan 3 dioda -3 transistor pada bagian adaptive reconfigurable rectifier memiliki efisiensi 76% pada input5 V dan 66% pada input10 V. &lt;hr&gt; &lt;b&gt;ABSTRACT&lt;/b&gt;&lt;br&gt; This thesis has presented a rectifier design for wireless power transfer applications with novel topology as an initial study. This topology combines and modifies the adaptive reconfigurable rectifier with the active class E rectifier. Modifications made were to replace the NMOS switch in the active class E rectifier to PMOS in the active class E rectifier topology and change the number of diodes and transistors used in the adaptive reconfigurable rectifier topology. Switching switches to PMOS increases efficiency and produces better Waveform output. Increasing the number of diodes and the number of transistors prevents the diodes from reaching the breakdown voltage, thereby increasing efficiency and allowing the circuit to maintain and increase efficiency at higher input values. The proposed circuit consists of the PMOS IRF9Z24 switch on the active class E rectifier and 3 diodes -3 transistors on the adaptive reconfigurable rectifier, which has an efficiency of 76% at 5 V.</description><identifier>http://lontar.ui.ac.id/detail?id=20505220</identifier><recordID>20505220</recordID></dc>
format Thesis:Bachelors
Thesis
author Dandy Bagus Fauzan, author
Add author: Taufiq Alif Kurniawan, supervisor
Add author: Harry Sudibyo S., examiner
Add author: Faiz Husnayain, examiner
title Desain novel adaptive reconfigurable active class E rectifier untuk aplikasi wireless power transfer = Novel adaptive reconfigurable active class E rectifier design for wireless power transfer applications
publishDate 2020
topic Wireless power transmission
url http://lontar.ui.ac.id/detail?id=20505220
contents <b>ABSTRAK</b><br. Pada skripsi ini telah dipresentasikan desain rectifier untuk aplikasi wireless power transfer dengan topologi novel sebagai studi tahap awal. Topologi ini menggabungkan dan memodifikasi adaptive reconfigurable rectifierdengan active class E rectifier. Modifikasi yang dilakukan adalah mengganti switch NMOS pada active class E rectifiermenjadi PMOS pada topologi active class E rectifier dan mengubah jumlah dioda dan transistor yang digunakanpada topologi adaptive reconfigurable rectifier. Penggantian switch menjadi PMOS meningkatkan efisiensi dan menghasilkan output Wave form yang lebih baik. Penambahan jumlah diodadan jumlah transistor mencegah dioda mencapai breakdown voltage sehingga meningkatkan efisiensidan menjadikan rangkaian dapat mempertahankan dan meningkatkan efisiensi pada nilai inputyang lebih tinggi. Rangkaian usulan terdiri dari switch PMOS IRF9Z24 pada bagian active class E rectifier dan 3 dioda -3 transistor pada bagian adaptive reconfigurable rectifier memiliki efisiensi 76% pada input5 V dan 66% pada input10 V. <hr> <b>ABSTRACT</b><br> This thesis has presented a rectifier design for wireless power transfer applications with novel topology as an initial study. This topology combines and modifies the adaptive reconfigurable rectifier with the active class E rectifier. Modifications made were to replace the NMOS switch in the active class E rectifier to PMOS in the active class E rectifier topology and change the number of diodes and transistors used in the adaptive reconfigurable rectifier topology. Switching switches to PMOS increases efficiency and produces better Waveform output. Increasing the number of diodes and the number of transistors prevents the diodes from reaching the breakdown voltage, thereby increasing efficiency and allowing the circuit to maintain and increase efficiency at higher input values. The proposed circuit consists of the PMOS IRF9Z24 switch on the active class E rectifier and 3 diodes -3 transistors on the adaptive reconfigurable rectifier, which has an efficiency of 76% at 5 V.
id IOS18064.20505220
institution Universitas Indonesia
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collection Repository Skripsi (open) Universitas Indonesia
repository_id 18064
city KOTA DEPOK
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