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  <full_title>International Journal of Recent Technology and Engineering (IJRTE)</full_title>
  <abbrev_title>IJRTE</abbrev_title>
  <issn media_type='electronic'>22773878</issn>
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    <month>01</month>
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    <year>2025</year>
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    <volume>13</volume>
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  <issue>5</issue>
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        <!-- ============== -->
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  <titles>
  <title>Modelling, Design &amp; Analysis of Bidirectional Interleaved DC to DC Converter</title>
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  <contributors>
    <organization sequence='first' contributor_role='author'>Department of Electrical Engineering, SGSITS, Indore (Madhya Pradesh), India.</organization>
    <person_name sequence='first' contributor_role='author'>
     <given_name>Jaya</given_name>
      <surname>Parmar</surname>
      <ORCID>https://orcid.org/0009-0005-3952-2556</ORCID>
    </person_name>
    <person_name sequence='additional' contributor_role='author'>
      <given_name>Prof. M. P. S.</given_name>
      <surname>Chawla</surname>
    </person_name>
   <organization sequence='additional' contributor_role='author'>Department of Electrical Engineering, SGSITS, Indore (Madhya Pradesh), India.</organization>
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    <jats:p>In today’s scenario, global warming is a major issue for the environment. To fight this issue, the shift from nonrenewable sources to renewable sources and the use of electric vehicles are increasing day by day. The bidirectional converters are the crucial device to run such renewable plants and electrical cars, where bidirectional power exchange is needed. To make a more efficient and reliable system, advanced or interleaved multiphasing technologies are required. A new interleaving bidirectional DC-to-DC converter is proposed in this paper to minimize the input current ripples and increase power handling capacity. This paper mainly describes the analysis of interleaved bidirectional converters in steady-state and two- and three-phase interleaved converter closed-loop simulations in both modes. The results show the interleaving of inductor-currents and stiff output voltage along with the bidirectional power flow capability, and the waveforms of interleaved inductor current, input current ripples, and output voltage are presented.</jats:p>
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    <month>01</month>
    <day>30</day>
    <year>2025</year>
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  <publication_date media_type='online'>
    <month>01</month>
    <day>30</day>
    <year>2025</year>
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  <pages>
  <first_page>1</first_page>
  <last_page>7</last_page>
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      <assertion explanation='Declaration' group_label='Declaration' group_name='Declaration' label='Conflicts of Interest' name='Declaration' order='2'>Based on my understanding, this article has no conflicts of interest.</assertion>
      <assertion explanation='Declaration' group_label='Declaration' group_name='Declaration' label='Funding Support' name='Declaration' order='3'>This article has not been sponsored or funded by any organization or agency. The independence of this research is a crucial factor in affirming its impartiality, as it has been conducted without any external sway.</assertion>
      <assertion explanation='Declaration' group_label='Declaration' group_name='Declaration' label='Ethical Approval and Consent to Participate' name='Declaration' order='4'>The data provided in this article is exempt from the requirement for ethical approval or participant consent.</assertion>
      <assertion explanation='Declaration' group_label='Declaration' group_name='Declaration' label='Data Access Statement and Material Availability' name='Declaration' order='5'>The adequate resources of this article are publicly accessible.</assertion>
      <assertion explanation='Declaration' group_label='Declaration' group_name='Declaration' label='Authors Contributions' name='Declaration' order='6'>The authorship of this article is contributed equally to all participating individuals.</assertion>
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  <doi>10.35940/ijrte.D8173.13050125</doi>
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