Impact of Electromagnetic Waves on Biological Tissues: Signal Processing Approaches and Wireless Communication Systems Optimization through Maxwell's Equations
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报告开始:2026年10月13日 14:00(Asia/Ho_Chi_Minh)

报告时间:15min

所在会场:[S3] Track 3: Privacy, Security for Networks [S3-3] Track 3: Privacy, Security for Networks

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摘要
With the rapid rise of 5G/6G networks and continuous brain exposure to radiofrequencies, this study proposes a multidisciplinary approach coupling Maxwell's equations with the Morris-Lecar neural model to analyze biophysical impacts, such as the alteration of electrical rhythms. It demonstrates that integrating advanced signal processing algorithms, including MIMO and beamforming, maximizes technological efficiency while rigorously reducing the Specific Absorption Rate (SAR). This unified framework validates the feasibility of designing high-performance wireless communications while minimizing deleterious non-thermal effects.
关键词
Maxwell;s equations;Morris-Lecar model;Signal processing;5G/6G networks;Specific Absorption Rate (SAR);MIMO optimization;Membrane potential;Biophysics
报告人
Anthony Bassesuka Sandoka Nzao
Professor RDC

Anthony Bassesuka Sandoka Nzao Professor, Electronics Engineer, and Researcher in Electrical Engineering and Electromagnetics. Professor Dr. Anthony Bassesuka Sandoka Nzao is a Congolese academic, engineer, and researcher specializing in electronics, electrical engineering, electromagnetics, circuits and systems. He is affiliated with the Institut Supérieur de Techniques Appliquées (ISTA) in Kinshasa and the Institut Supérieur Pédagogique et Technique (ISPT) in the Democratic Republic of the Congo. He holds a Ph.D. from Beihang University, China, where he developed multidisciplinary expertise at the intersection of electronics, electrical power systems, telecommunications, and systems engineering. His main research areas include applied electromagnetics, electromagnetic compatibility (EMC), embedded systems, electromagnetic field modeling, electrical power networks, high-voltage systems, antennas, and telecommunication infrastructure. His scientific work also focuses on interactions between electromagnetic fields and biological systems, as well as the modeling of electromagnetic phenomena associated with modern communication technologies, including 5G systems. His recent research activities have focused particularly on the characterization of electromagnetic radiation from GSM base-station antennas, as well as the modeling and stability analysis of electrical power systems. Through his teaching, research, and engineering education activities, Professor Dr. Anthony Bassesuka Sandoka Nzao contributes to the development of scientific and technological expertise in engineering in the Democratic Republic of the Congo and to international academic and scientific exchange. 

稿件作者
Anthony Bassesuka Sandoka Nzao RDC
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重要日期
  • 会议日期

    10月11日

    2026

    至

    10月14日

    2026

  • 12月30日 2025

    报告提交截止日期

  • 09月28日 2026

    提前注册日期

  • 10月10日 2026

    初稿截稿日期

  • 10月14日 2026

    注册截止日期

主办单位
United Societies of Science
承办单位
Posts and Telecommunications Institute of Technology
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IEEE Section
IEEE Vietnam Section
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