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        <identifier>oai:www.ideals.illinois.edu:2142/101220</identifier>
        <datestamp>2023-07-11</datestamp>
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        <thesis xmlns="http://www.ndltd.org/standards/metadata/etdms/1.1/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/" xsi:schemaLocation="http://www.ndltd.org/standards/metadata/etdms/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdms11.xsd http://purl.org/dc/elements/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdmsdc.xsd">
          <dc:contributor>Hanumolu, Pavan K.</dc:contributor>
          <dc:creator>Ko, Hyun Jae</dc:creator>
          <dc:date>2018-09-04T20:36:53Z</dc:date>
          <dc:date>2018-09-04T20:36:53Z</dc:date>
          <dc:date>2020-09-05T09:15:13Z</dc:date>
          <dc:date>2018-04-25</dc:date>
          <dc:date>2018-05</dc:date>
          <dc:description>This thesis discusses a boost converter using continuous conduction mode and discontinuous conduction mode. The first part of the thesis analyzes a boost converter using continuous conduction mode with voltage mode control. A switch network which eases the analysis of the boost converter is modeled. Important transfer functions are analyzed in detail to figure out the trade-off between input variables and specifications of the boost converter. Several types of compensators are discussed to build a stable system when feedback is included. The second part of the thesis addresses a boost converter using discontinuous conduction mode. The advantages, such as fast tracking and high gain bandwidth, of using discontinuous conduction mode over continuous conduction mode are discussed.</dc:description>
          <dc:description>Submission published under a 24 month embargo labeled 'U of I Access', the embargo will last until 2020-05-01</dc:description>
          <dc:description>The student, Hyun Jae Ko, accepted the attached license on 2018-04-24 at 12:42.</dc:description>
          <dc:description>The student, Hyun Jae Ko, submitted this Thesis for approval on 2018-04-24 at 12:48.</dc:description>
          <dc:description>This Thesis was approved for publication on 2018-04-25 at 08:32.</dc:description>
          <dc:description>DSpace SAF Submission Ingestion Package generated from Vireo submission #12449 on 2018-08-31 at 17:21:25</dc:description>
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KO-THESIS-2018.pdf: 819465 bytes, checksum: 5283d22be56e13c73b40453d140f4312 (MD5)
LICENSE.txt: 4208 bytes, checksum: 5ed0cc691022777b93a439afa548a4ec (MD5)
  Previous issue date: 2018-04-25</dc:description>
          <dc:description>Embargo set by: Seth Robbins for item 107304
Lift date: 2020-09-04T20:37:00Z
Reason: Author requested U of Illinois access only (OA after 2yrs) in Vireo ETD system</dc:description>
          <dc:description>Embargo set by: Seth Robbins for item 107304
Lift date: 2020-09-04T20:42:08Z
Reason: Author requested U of Illinois access only (OA after 2yrs) in Vireo ETD system</dc:description>
          <dc:description>U of I Only Restriction Lifted for Item 107304 on 2020-09-05T09:15:13Z.</dc:description>
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          <dc:identifier>http://hdl.handle.net/2142/101220</dc:identifier>
          <dc:language>en</dc:language>
          <dc:rights>Copyright 2018 Hyun Jae Ko</dc:rights>
          <dc:subject>Boost converter analysis</dc:subject>
          <dc:title>Analysis of boost converter in continuous conduction mode and discontinuous conduction mode</dc:title>
          <dc:type>text</dc:type>
          <dc:type>text</dc:type>
          <degree>
            <department>Electrical &amp; Computer Eng</department>
            <discipline>Electrical &amp; Computer Engr</discipline>
            <grantor>University of Illinois at Urbana-Champaign</grantor>
            <level>Thesis</level>
            <name>M.S.</name>
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