Heuristic Barycenter Modeling of Fully Absorbing Receivers in Diffusive Molecular Communication Channels

04/26/2023
by   Fardad Vakilipoor, et al.
0

In a recent paper it has been shown that to model a diffusive molecular communication (MC) channel with multiple fully absorbing (FA) receivers, these can be interpreted as sources of negative particles from the other receivers' perspective. The barycenter point is introduced as the best position where to place the negative sources. The barycenter is obtained from the spatial mean of the molecules impinging on the surface of each FA receiver. This paper derives an expression that captures the position of the barycenter in a diffusive MC channel with multiple FA receivers. In this work, an analytical model inspired by Newton's law of gravitation is found to describe the barycenter, and the result is compared with particle-based simulation (PBS) data. Since the barycenter depends on the distance between the transmitter and receiver and the observation time, the condition that the barycenter can be assumed to be at the center of the receiver is discussed. This assumption simplifies further modeling of any diffusive MC system containing multiple FA receivers. The resulting position of the barycenter is used in channel models to calculate the cumulative number of absorbed molecules and it has been verified with PBS data in a variety of scenarios.

READ FULL TEXT
research
11/23/2021

Channel Characterization of Diffusion-based Molecular Communication with Multiple Fully-absorbing Receivers

In this paper an analytical model is introduced to describe the impulse ...
research
12/07/2021

Asymptotic MIMO Channel Model for Diffusive MC with Fully-absorbing Receivers

This letter introduces an analytical model that gives the asymptotic cum...
research
02/27/2019

Diffusive Molecular Communications with Reactive Molecules: Channel Modeling and Signal Design

This paper focuses on molecular communication (MC) systems using two typ...
research
03/09/2021

Saturating Receiver and Receptor Competition in Synaptic DMC: Deterministic and Statistical Signal Models

Synaptic communication is based on a biological Molecular Communication ...
research
04/28/2020

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

This paper investigates the estimation of different parameters, e.g., pr...
research
02/12/2020

Performance Analysis of Reversible Binding Receptor Based Decode-and-Forward Relay in Molecular Communication Systems

Molecular communication (MC) allows nanomachines to communicate and coop...
research
03/08/2022

Olfaction-inspired MCs: Molecule Mixture Shift Keying and Cross-Reactive Receptor Arrays

In this paper, we propose a novel concept for engineered molecular commu...

Please sign up or login with your details

Forgot password? Click here to reset