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Human Body Communication (HBC) has recently emerged as an alternative to radio frequency transmission for connecting devices on and in the human body with order(s) of magnitude lower energy. The communication between these devices can give…

Human-Computer Interaction · Computer Science 2018-06-26 Shovan Maity , Debayan Das , Baibhab Chatterjee , Shreyas Sen

Human Body Communication (HBC) has come up as a promising alternative to traditional radio frequency (RF) Wireless Body Area Network (WBAN) technologies. This is essentially due to HBC providing a broadband communication channel with…

Signal Processing · Electrical Eng. & Systems 2022-04-29 Arunashish Datta , Mayukh Nath , David Yang , Shreyas Sen

Seamless interaction between Humans and AI-empowered battery-operated miniaturized electronic devices, exponentially transforming the wearable technology industry while forming an anthropomorphic artificial nervous system for distributed…

Signal Processing · Electrical Eng. & Systems 2024-11-19 Samyadip Sarkar , Qi Huang , Sarthak Antal , Mayukh Nath , Shreyas Sen

The emergence of Human Body Communication (HBC) as an alternative to wireless body area networks (WBAN) has led to the development of small sized, energy efficient and more secure wearable and implantable devices forming a network in and…

Systems and Control · Electrical Eng. & Systems 2024-10-30 Parikha Mehrotra , David Yang , Scott Weigand , Shreyas Sen

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 Body Area Network (WBAN). Whereas the most investigated nodes…

Signal Processing · Electrical Eng. & Systems 2020-11-03 Mayukh Nath , Alfred Krister Ulvog , Scott Weigand , Shreyas Sen

Wearable, wirelessly connected sensors have become a common part of daily life and have the potential to play a pivotal role in shaping the future of personalized healthcare. A key challenge in this evolution is designing long-lasting and…

Signal Processing · Electrical Eng. & Systems 2025-03-19 Lukas Schulthess , Philipp Mayer , Christian Vogt , Luca Benini , Michele Magno

Rapid miniaturization and cost reduction of computing, along with the availability of wearable and implantable physiological sensors have led to the growth of human Body Area Network (BAN) formed by a network of such sensors and computing…

Networking and Internet Architecture · Computer Science 2017-05-19 Shovan Maity , Debayan Das , Shreyas Sen

Intrabody communication (IBC), is a promising technology that can be utilized for data transmission across the human body. In this study, a galvanic coupled (GC)-based IBC channel has been investigated for implantable configuration both…

Signal Processing · Electrical Eng. & Systems 2025-01-31 Kayhan Ate , Anna Marcucci , Pietro Savazzi , Şükrü Özen , Fabio Dell'Acqua , Anna Vizziello

Human Body Communication (HBC) provides a low power communication medium for energy constrained wearable/ implantable devices in and around the human body. This paper presents a broadband HBC transceiver implemented in 65nm CMOS that…

Signal Processing · Electrical Eng. & Systems 2018-04-19 Shovan Maity , Baibhab Chatterjee , Gregory Chang , Shreyas Sen

Radiative communication using electromagnetic fields is the backbone of today's wirelessly connected world, which implies that the physical signals are available for malicious interceptors to snoop within a 5-10 m distance, also increasing…

Signal Processing · Electrical Eng. & Systems 2021-02-26 Mayukh Nath , Shovan Maity , Shitij Avlani , Scott Weigand , Shreyas Sen

Security vulnerabilities demonstrated in implantable medical devices have opened the door for research into physically secure and low power communication methodologies. In this study, we perform a comparative analysis of commonly used ISM…

Signal Processing · Electrical Eng. & Systems 2022-04-29 Arunashish Datta , Mayukh Nath , Baibhab Chatterjee , Shovan Maity , Shreyas Sen

Wireless communication using electro-magnetic (EM) fields acts as the backbone for information exchange among wearable devices around the human body. However, for Implanted devices, EM fields incur high amount of absorption in the tissue,…

Neurons and Cognition · Quantitative Biology 2023-07-06 Baibhab Chatterjee , Mayukh Nath , Gaurav Kumar K , Shulan Xiao , Krishna Jayant , Shreyas Sen

Data transfer using human-body communication (HBC) represents an actively explored alternative solution to address the challenges related to energy-efficiency, tissue absorption, and security of conventional wireless. Although the use of…

Tissues and Organs · Quantitative Biology 2024-06-21 Anyu Jiang , Cassandra Acebal , Brook Heyd , Trustin White , Gurleen Kainth , Arunashish Datta , Shreyas Sen , Adam Khalifa , Baibhab Chatterjee

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 model for implantable devices communicating outside the…

Signal Processing · Electrical Eng. & Systems 2022-04-29 Arunashish Datta , Mayukh Nath , Baibhab Chatterjee , Nirmoy Modak , Shreyas Sen

Passive body-area electrostatic field sensing, also referred to as human body capacitance (HBC), is an energy-efficient and non-intrusive sensing modality that exploits the human body's inherent electrostatic properties to perceive human…

Signal Processing · Electrical Eng. & Systems 2025-07-21 Sizhen Bian , Mengxi Liu , Paul Lukowicz

Intra-body communication (IBC) is a type of Body Area Network (BAN)that utilizes human body as the medium for data transmission. Thelow power requirements of intra-body communication (IBC) as compared to near field electromagnetic waves…

Emerging Technologies · Computer Science 2012-04-09 Abdullah Alshehab , Chiu Tung Wu , Nao Kobayashi , Sikieng Sok , Shigeru Shimamoto

Continuous multi-channel monitoring of biopotential signals is vital in understanding the body as a whole, facilitating accurate models and predictions in neural research. The current state of the art in wireless technologies for untethered…

Signal Processing · Electrical Eng. & Systems 2020-05-13 Shreeya Sriram , Shitij Avlani , Matthew P Ward , Shreyas Sen

The current dominated wearable body motion sensor is IMU. This work presented an alternative wearable motion-sensing approach: human body capacitance (HBC, also commonly defined as body-area electric field). While being less robust in…

Signal Processing · Electrical Eng. & Systems 2022-10-27 Sizhen Bian , Vitor Fortes Rey , Siyu Yuan , Paul Lukowicz

In recent decades Human Body Communication has emerged as a promising alternative to traditional radio wave communication, utilizing the body's conductive properties for low-power connectivity among wearables. This method harnesses the…

Signal Processing · Electrical Eng. & Systems 2025-10-07 Samyadip Sarkar , Arunashish Datta , David Yang , Mayukh Nath , Shovan Maity , Shreyas Sen

The use of miniaturized biomedical devices implanted in the human body and wirelessly internetworked is promising a significant leap forward in medical treatment of many pervasive diseases. Recognizing the well-understood limitations of…

Networking and Internet Architecture · Computer Science 2013-02-07 G. Enrico Santagati , Tommaso Melodia , Laura Galluccio , Sergio Palazzo
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