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20162023
most citedPractical Approaches Towards Deep-Learning Based Cross-Device Power Side Channel Attack

78 citations · 116 across the 18 of their papers we have counts for

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12 papers · 1 filter

eess.SP20222 cited

Sub-1ms Instinctual Interference Adaptive GaN LNA Front-End with Power and Linearity Tuning

Jie Yang, Baibhab Chatterjee, Mohammad Abu Khater +4

One of the major challenges in communication, radar, and electronic warfare receivers arises from nearby device interference. The paper presents a 2-6 GHz GaN LNA front-end with on…

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.SP20213 cited

A mmWave Oscillator Design Utilizing High-Q Active-Mode On-Chip MEMS Resonators for Improved Fundamental Limits of Phase Noise

Abhishek Srivastava, Baibhab Chatterjee, Udit Rawat +3

(RFT) allows very high-Q active mode resonators, promising crystal-less monolithic clock generation for mmWave systems. However, there is a strong need for design of mmWave oscilla…

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.SP20201 cited

Analysis and Design Considerations for Achieving the Fundamental Limits of Phase Noise in mmWave Oscillators with On-Chip MEMS Resonator

Abhishek Srivastava, Baibhab Chatterjee, Udit Rawat +3

Very small electromechanical coupling coefficient in micro-electromechanical systems (MEMS) or acoustic resonators is quite of a concern for oscillator performance, specially at mm…