activity
20182022
most citedChannel Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

8 citations · 15 across the 3 of their papers we have counts for

collaborators

5 papers

eess.SP20228 cited

Channel Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

Arunashish Datta, Mayukh Nath, Baibhab Chatterjee +2

Increasing number of devices being used in and around the human body has resulted in the exploration of the human body as a communication medium. In this paper, we design a channel…

eess.SP20227 cited

A Quantitative Analysis of Physical Security and Path Loss With Frequency for IBOB Channel

Arunashish Datta, Mayukh Nath, Baibhab Chatterjee +2

Security vulnerabilities demonstrated in implantable medical devices have opened the door for research into physically secure and low power communication methodologies. In this stu…

eess.SP2020

Understanding The Role of Magnetic and Magneto-Quasistatic Fields in Human Body Communication

Mayukh Nath, Alfred Krister Ulvog, Scott Weigand +1

With the advent of wearable technologies, Human Body Communication (HBC) has emerged as a physically secure and power-efficient alternative to the otherwise ubiquitous Wireless Bod…

eess.SP2020

Inter-Body Coupling in Electro-Quasistatic Human Body Communication: Theory and Analysis of Security and Interference Properties

Mayukh Nath, Shovan Maity, Shitij Avlani +2

Radiative communication using electromagnetic fields is the backbone of today's wirelessly connected world, which implies that the physical signals are available for malicious inte…

cs.ET2018

BioPhysical Modeling, Characterization and Optimization of Electro-Quasistatic Human Body Communication

Shovan Maity, Mingxuan He, Mayukh Nath +3

Human Body Communication (HBC) has emerged as an alternative to radio wave communication for connecting low power, miniaturized wearable and implantable devices in, on and around t…