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<ArticleSet>
  <Article>
    <Journal>
      <PublisherName>Felix Academic Publications</PublisherName>
      <JournalTitle>International Journal of Innovative Trends in Engineering Science and Technology</JournalTitle>
      <Issn>3139-6887</Issn>
      <Volume>1</Volume>
      <Issue>1</Issue>
      <PubDate PubStatus="epublish">
        <Year>2026</Year>
        <Month>08</Month>
        <Day>01</Day>
      </PubDate>
    </Journal>
    <ArticleTitle>Quantum Communication for 5G-6G Qubit-Driven Massive MIMO-OFDM Performance Analysis</ArticleTitle>
    <FirstPage>33</FirstPage>
    <LastPage>37</LastPage>
    <Language>eng</Language>
    <AuthorList>
      <Author>
        <FirstName>T. Ravi</FirstName>
        <LastName>babu</LastName>
        <AffiliationInfo>
          <Affiliation>Associate Professor,Department of ECE, Miracle Educational Society Group of Institutions(A), Vizianagaram, India</Affiliation>
        </AffiliationInfo>
      </Author>
      <Author>
        <FirstName>A. Venkateswara</FirstName>
        <LastName>Rao</LastName>
        <AffiliationInfo>
          <Affiliation>Associate Professor, Department of ECE, Miracle Educational Society Group of Institutions(A), Vizianagaram, India</Affiliation>
        </AffiliationInfo>
      </Author>
      <Author>
        <FirstName>CH. Subba</FirstName>
        <LastName>Rao</LastName>
        <AffiliationInfo>
          <Affiliation>Assistant Professor, Department of ECE, Miracle Educational Society Group of Institutions(A), Vizianagaram, India</Affiliation>
        </AffiliationInfo>
      </Author>
    </AuthorList>
    <ArticleIdList>
      <ArticleId IdType="pii">IJITEST-2026-006</ArticleId>
    </ArticleIdList>
    <History>
      <PubDate PubStatus="received">
        <Year>2026</Year>
        <Month>03</Month>
        <Day>31</Day>
      </PubDate>
      <PubDate PubStatus="accepted">
        <Year>2026</Year>
        <Month>08</Month>
        <Day>01</Day>
      </PubDate>
    </History>
    <Abstract>Communication frameworks that are extremely effective, intelligent, and secure are required due to the rapid shift from 5G to 6G networks. Through a performance analysis of qubit-driven Massive MIMO-OFDM, this paper investigates the integration of quantum communication concepts into conventional wireless systems. It provides a detailed comparison of quantum bit (qubit) representations and traditional binary bit processing. The study evaluates key performance measures across different channel models, such as Rayleigh and Nakagami-m fading, including Bit Error Rate (BER), spectral efficiency, Peak-to-Average Power Ratio (PAPR), and computational complexity. We demonstrate the potential for better robustness, reduced BER, and increased reliability in difficult wireless situations by incorporating qubit-based modulation, quantum channel estimation, and quantum error correction techniques into the OFDM and Massive MIMO framework. MATLAB simulation results show that qubit-based systems outperform classical binary systems, particularly in scenarios with high user density and mobility, making them a viable choice for upcoming 6G applications. Important information about the benefits and trade-offs of switching from classical to quantum-enhanced wireless communication systems is provided by the comparative study</Abstract>
    <ObjectList>
      <Object Type="keyword">
        <Param Name="value">Quantum Communication</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Qubits and Binary Bits</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Massive MIMO-OFDM</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">5G and 6G Networks</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Bit Error Rate</Param>
      </Object>
      <Object Type="keyword">
        <Param Name="value">Channel Estimation</Param>
      </Object>
    </ObjectList>
  </Article>
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