Channel modeling for physically secure electro-quasistatic in-body to out-of-body communication with galvanic Tx and multimodal Rx

A Datta, M Nath, B Chatterjee… - 2021 IEEE MTT-S …, 2021 - ieeexplore.ieee.org
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 …

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

A Datta, M Nath, B Chatterjee, N Modak, S Sen - engineering.purdue.edu
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 …

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

A Datta, M Nath, B Chatterjee, N Modak, S Sen - academia.edu
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 Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

A Datta, M Nath, B Chatterjee, N Modak… - arXiv preprint arXiv …, 2022 - arxiv.org
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 Modeling for Physically Secure Electro-Quasistatic In-Body to Out-of-Body Communication with Galvanic Tx and Multimodal Rx

A Datta, M Nath, B Chatterjee, N Modak… - arXiv e-prints, 2022 - ui.adsabs.harvard.edu
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 …