FROM HIGH- RESOLUTION OPTICS TO HIGH- BANDWIDTH TELEMETRY: THE EVOLUTION OF DEEP SPACE IMAGING SATELLITES
The development of deep space imaging satellites has significantly enhanced satellite communication and space exploration capabilities.

Trends in Opto-electro & Optical Communication
Trends in Opto Electro & Optical Communication [2231-0401(e)] is a peer-reviewed hybrid open-access journal launched in 2011 focused on the rapid publication of fundamental research papers on all areas of Opto Electro & Optical Communication.
Trends in Opto-electro & Optical Communication (TOEOC): 2231-0401(e) is a peer-reviewed hybrid open-access journal launched in 2011 focused on the rapid publication of
toeoc maintains an Editorial Board of practicing researchers from around the world, to ensure manuscripts are handled by editors who are experts in the field of study.

Institutional Profile Link: https://www.amity.edu/faculty-detail.aspx?facultyID=1919
The development of deep space imaging satellites has significantly enhanced satellite communication and space exploration capabilities.
For uses like ocean exploration, environmental monitoring, and underwater data transfer, wireless communication under water is crucial.
This paper proposes a novel self-adaptive neuromorphic opto-electronic transceiver architecture designed to enhance the intelligence, adaptability, and efficiency of next-generation optical communication networks.
Optical communication has become the backbone of modern digital infrastructure, allowing huge volumes of data to be sent quickly and reliably around the world.
This study investigates the use of the linear Finite Element Method (FEM) for the analysis of the field distribution in optical fibres.
The digitization of clinical care has led to significant advancements in medical devices and telemetry, fundamentally transforming the healthcare landscape.
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December 2025
March 15-17, 2025
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