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  <doi_batch_id>aspg-2-2377-1791417181</doi_batch_id>
  <timestamp>20261007235301</timestamp>
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  <journal>
   <journal_metadata language="en">
    <full_title>Journal of Cybersecurity and Information Management</full_title>
    <abbrev_title>JCIM</abbrev_title>
    <issn media_type="print">2769-7851</issn>
    <issn media_type="electronic">2690-6775</issn>
   </journal_metadata>
   <journal_issue>
    <publication_date media_type="online">
     <year>2024</year>
    </publication_date>
    <journal_volume>
     <volume>13</volume>
    </journal_volume>
    <issue>1</issue>
   </journal_issue>
   <journal_article publication_type="full_text">
    <titles>
     <title>Utilizing Asymmetric Cryptography and Advanced Hashing Algorithms for Securing Communication Channels in IoT Networks Against Cyber Espionage</title>
    </titles>
    <contributors>
     <person_name sequence="first" contributor_role="author">
      <given_name>Anil Audumbar</given_name>
      <surname>Pise</surname>
      <affiliations>
       <institution>
        <institution_name>University of the Witwatersrand Johannesburg, South Africa</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Saurabh</given_name>
      <surname>Singh</surname>
      <affiliations>
       <institution>
        <institution_name>Department of AI and Big data, Woosong University, Daejeon, South Korea</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Hemachandran</given_name>
      <surname>K.</surname>
      <affiliations>
       <institution>
        <institution_name>School of Business, Woxsen University, Hyderabad, India</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Shraddhesh</given_name>
      <surname>Gadilkar</surname>
      <affiliations>
       <institution>
        <institution_name>Associate Engineer, TSYS Global Payments, Pune, India</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Zakka Benisemeni</given_name>
      <surname>Esther</surname>
      <affiliations>
       <institution>
        <institution_name>Senior Lecturer, Federal Polytechnic Bauchi, Nigeria</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Ganesh Shivaji</given_name>
      <surname>Pise</surname>
      <affiliations>
       <institution>
        <institution_name>Pune Institute of Computer Technology Pune, India</institution_name>
       </institution>
      </affiliations>
     </person_name>
     <person_name sequence="additional" contributor_role="author">
      <given_name>Jude</given_name>
      <surname>Imuede</surname>
      <affiliations>
       <institution>
        <institution_name>University of Prince Edward Island, Canada</institution_name>
       </institution>
      </affiliations>
     </person_name>
    </contributors>
    <jats:abstract>
     <jats:p>This article describes a massive cryptographic scheme that can safeguard IoT communication paths. A combination of algorithms makes the technique operate. Communication security is handled differently by each algorithm. Elliptic Curve Cryptography (ECC), SHA-256 Secure Data Hashing, HMAC Message Authentication, and Merkle Tree Structures Decryption and Verification are used. Ablation is used to determine how each strategy increases security. The paper emphasizes that the algorithms function effectively together, demonstrating their importance for cyberdefense and surveillance. The recommended strategy is evaluated and found to operate better across key parameters.Top of Form</jats:p>
    </jats:abstract>
    <publication_date media_type="online">
     <year>2024</year>
    </publication_date>
    <pages>
     <first_page>46</first_page>
     <last_page>59</last_page>
    </pages>
    <publisher_item>
     <item_number item_number_type="article-number">2377</item_number>
    </publisher_item>
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     <ai:license_ref applies_to="vor">https://creativecommons.org/licenses/by/4.0/</ai:license_ref>
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     <doi>10.54216/JCIM.130105</doi>
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