activity
20182022
most citedMembrane Fusion-Based Transmitter Design for Molecular Communication Systems

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

collaborators

9 papers

cs.ET2022

Analysis of MC Systems Employing Receivers Covered by Heterogeneous Receptors

Xinyu Huang, Yuting Fang, Stuart T. Johnston +3

This paper investigates the channel impulse response (CIR), i.e., the molecule hitting rate, of a molecular communication (MC) system employing an absorbing receiver (RX) covered b…

cs.IT2021

Membrane Fusion-Based Transmitter Design for Static and Diffusive Mobile Molecular Communication Systems

Xinyu Huang, Yuting Fang, Adam Noel +1

This paper proposes a novel imperfect transmitter (TX) model, namely the membrane fusion (MF)-based TX, that adopts MF between a vesicle and the TX membrane to release molecules en…

cs.IT2021

A Survey on Estimation Schemes in Molecular Communications

Xinyu Huang, Yuting Fang, Nan Yang

This survey paper focuses on the estimation schemes in molecular communication (MC) systems. The existing studies in estimation schemes can be divided into parameter estimation (e.…

cs.ET20202 cited

Membrane Fusion-Based Transmitter Design for Molecular Communication Systems

Xinyu Huang, Yuting Fang, Adam Noel +1

This paper proposes a novel imperfect spherical transmitter (TX) model, namely the membrane fusion (MF)-based TX, that adopts MF between a vesicle and the TX membrane to release mo…

cs.IT20201 cited

Characterization of Cooperators in Quorum Sensing with 2D Molecular Signal Analysis

Yuting Fang, Adam Noel, Andrew W. Eckford +2

In quorum sensing (QS), bacteria exchange molecular signals to work together. An analytically-tractable model is presented for characterizing QS signal propagation within a populat…

cs.ET2020

Parameter Estimation in a Noisy 1D Environment via Two Absorbing Receivers

Xinyu Huang, Yuting Fang, Adam Noel +1

This paper investigates the estimation of different parameters, e.g., propagation distance and flow velocity, by utilizing two fully-absorbing receivers (RXs) in a one-dimensional…