Levenberg-Marquardt Method Based Cooperative Source Localization in SIMO Molecular Communication via Diffusion Systems

03/16/2022
by   Yuqi Miao, et al.
0

Molecular communication underpins nano-scale communications in nanotechnology. The combination of multinanomachines to form nano-networks is one of the main enabling methods. Due to the importance of source localization in establishing nano-networks, this paper proposes a cooperative source localization method for Molecular Communication via Diffusion (MCvD) systems using multiple spherical absorption receivers. Since there is no exact mathematical expression of the channel impulse response for multiple absorbing receivers, we adopt an empirical expression and use Levenberg-Marquardt method to estimate the distance of the transmitter to each receiver, based on which the location of the transmitter is obtained using an iterative scheme where the initial point is obtained using a multi-point localization method. Particle based simulation is carried out to evaluate the performance of the proposed method. Simulation results show that the proposed method can accurately estimate the location of transmitter in short to medium communication ranges.

READ FULL TEXT

page 1

page 2

page 3

page 9

page 10

page 13

page 17

page 20

research
08/19/2020

Detection Probability in a Molecular Communication via Diffusion System with Multiple Fully-absorbing Receivers

In this letter, we consider a 3D molecular communication via diffusion s...
research
07/08/2019

Channel Impulse Response-based Source Localization in a Diffusion-based Molecular Communication System

This work localizes a molecular source in a diffusion based molecular co...
research
05/11/2020

3-D Diffusive Molecular Communication with Two Fully-Absorbing Receivers: Hitting Probability and Performance Analysis

Exact analytical channel models for molecular communication via diffusio...
research
05/21/2022

Impact of Multiple Fully-Absorbing Receivers in Molecular Communications

Molecular communication is a promising solution to enable intra-body com...
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
10/26/2017

Learning Wireless Networks' Topologies Using Asymmetric Granger Causality

Sharing spectrum with a communicating incumbent user (IU) network requir...
research
07/18/2019

Channel Impulse Response-based Physical Layer Authentication in a Diffusion-based Molecular Communication System

Consider impersonation attack by an active malicious nano node (Eve) on ...

Please sign up or login with your details

Forgot password? Click here to reset