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<doi_batch_id>ba60f6118992d8a5a224a7</doi_batch_id>
<timestamp>20231122023602240</timestamp>
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  <depositor_name>beie:beie</depositor_name> 
  <email_address>director@blueeyesintelligence.org</email_address>
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<journal>
<journal_metadata>   <full_title>International Journal of Recent Technology and Engineering (IJRTE)</full_title>   <abbrev_title>IJRTE</abbrev_title>   <issn media_type='electronic'>22773878</issn>   <doi_data>     <doi>10.35940/ijrte.2277-3878</doi>     <resource>https://www.ijrte.org/</resource>   </doi_data> </journal_metadata> <journal_issue>  <publication_date media_type='online'>     <month>11</month>     <day>30</day>     <year>2023</year>   </publication_date>   <journal_volume>     <volume>12</volume>   </journal_volume>   <issue>4</issue> </journal_issue><!-- ============== --> <journal_article publication_type='full_text'>   <titles>     <title>Reliability Evaluation of a Radial Feeder Configurations by Replacing the Distribution Transformer with the Solid-State Transformer</title>   </titles>   <contributors>      <organization sequence='first' contributor_role='author'>Department of Electrical Engineering, University College of Engineering, Osmania University, Hyderabad, (Telangana), India.</organization>    <person_name sequence='first' contributor_role='author'>      <given_name>G. Kiran</given_name>      <surname>Kumar</surname>      <ORCID>https://orcid.org/0000-0003-2796-5382</ORCID>    </person_name>    <person_name sequence='additional' contributor_role='author'>       <given_name>Dr. E. Vidya</given_name>       <surname>Sagar</surname>       <ORCID>https://orcid.org/0009-0006-5280-7895</ORCID>     </person_name>     <organization sequence='additional' contributor_role='author'>Department of Electrical Engineering, University College of Engineering, Osmania University, Hyderabad, (Telangana), India.</organization>   </contributors>    <jats:abstract xml:lang='en'>         <jats:p>The radial feeder is the most typical power distribution system configuration for distributing power to the consumer through the distribution transformer. Distribution transformers are a key component of power distribution systems, they enable voltage transformation, improve safety, reduce energy losses, enhance network reliability, and facilitate the efficient distribution of electricity to consumers. Due to the lack of their role in balancing loads and integrating renewable energy sources, they must be replaced with an alternate solution for modernizing and optimizing distribution grids. A solid-state transformer (SST) is a power electronic device that, in many ways, may replace a typical distribution transformer (DTR). It also improves controllability and provides a direct current link, making it simple to integrate distributed energy sources on either sides of medium and low voltage. However, reliability is the most important parameter in restricting its applications. Modularity is one of the ways to improve reliability and availability by directly re-routing the power within the modular system. This work investigates the failure rate of a modular SST by determining the number of module units required in SST design based on the available IGBT ratings. Further, the reliability of a radial feeder is evaluated by considering the configuration of a) without AS and with DTRs, b) Without AS and replacement of DTRs with SST, c) With AS and DTRs, and d) With AS and replacement of DTRs with SST.</jats:p>     </jats:abstract>  <publication_date media_type='online'>     <month>11</month>     <day>30</day>     <year>2023</year>   </publication_date>   <pages>     <first_page>1</first_page>     <last_page>5</last_page>   </pages>   <crossmark>     <crossmark_version>CC BY-NC-ND 4.0</crossmark_version>     <crossmark_policy>10.35940/BEIESP.CrossMarkPolicy</crossmark_policy>     <crossmark_domains>       <crossmark_domain>          <domain>www.ijrte.org</domain>       </crossmark_domain>     </crossmark_domains>     <crossmark_domain_exclusive>true</crossmark_domain_exclusive>     <custom_metadata>       <assertion explanation='Journal Name' group_label='Journal Name' group_name='Journal' name='Declaration' order='0'>International Journal of Recent Technology and Engineering (IJRTE)</assertion>       <assertion explanation='Funding' group_label='Funding' group_name='Funding' name='Declaration' order='1'>No, I did not receive.</assertion>       <assertion explanation='Conflicts of Interest' group_label='Conflicts of Interest' group_name='Conflicts-of-Interest' name='Declaration' order='2'>No conflicts of interest to the best of our knowledge.</assertion>       <assertion explanation='Ethical Approval and Consent to Participate' group_label='Ethical Approval and Consent to Participate' group_name='Ethical-Approval-and-Consent-to-Participate' name='Declaration' order='3'>No, the article does not require ethical approval and consent to participate with evidence.</assertion>       <assertion explanation='Availability of Data and Material' group_label='Availability of Data and Material' group_name='Availability-of-Data-and-Material' name='Declaration' order='4'>Not relevant.</assertion>       <assertion explanation='Authors Contributions' group_label='Authors Contributions' group_name='Authors-Contributions' name='Declaration' order='5'>All authors have equal participation in this article.</assertion>     </custom_metadata>   </crossmark>   <doi_data>     <doi>10.35940/ijrte.D7952.1112423</doi>     <resource>https://www.ijrte.org/portfolio-item/D79521112423/</resource>   </doi_data> </journal_article>
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