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Visible light communication systems with channel randomness : channel statistics and performance analysis / K. Nagaraja ; supervised by Soumya Prakash Dash.

By: Contributor(s): Material type: TextLanguage: English Publication details: Bhubaneswar : IIT Bhubaneswar, 2026.Description: xxiv, 176 pages ; 30 cmSubject(s): DDC classification:
  • 621.3827Β NAG/V
Summary: Visible Light Communication Systems with Channel Randomness: Channel Statistics and Performance Analysis: This thesis investigates visible light communication (VLC) systems under the practical condition of randomness in receiver position and orientation. It focuses on developing statistical models of VLC channels and analysing their impact on communication performance, including channel gain, field-of-view limitations, receiver orientation, channel estimation, and error behaviour. The research provides analytical approaches for understanding the reliability and performance of VLC links when the receiver is not fixed in a predetermined position or direction. By characterising channel randomness and its effects on signal reception, the study contributes to the design and performance evaluation of robust visible-light wireless communication systems for next-generation communication applications.
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PhD Thesis Central Library, IIT Bhubaneswar Central Library, IIT Bhubaneswar SECS 621.3827 NAG/V (Browse shelf(Opens below)) Not for loan PHD427
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Includes bibliographical references and index.

Visible Light Communication Systems with Channel Randomness: Channel Statistics and Performance Analysis: This thesis investigates visible light communication (VLC) systems under the practical condition of randomness in receiver position and orientation. It focuses on developing statistical models of VLC channels and analysing their impact on communication performance, including channel gain, field-of-view limitations, receiver orientation, channel estimation, and error behaviour. The research provides analytical approaches for understanding the reliability and performance of VLC links when the receiver is not fixed in a predetermined position or direction. By characterising channel randomness and its effects on signal reception, the study contributes to the design and performance evaluation of robust visible-light wireless communication systems for next-generation communication applications.

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