Article detail · 2014
Three-Dimensional Channel Characteristics for Molecular Communications With an Absorbing Receiver
- Year
- 2014
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue IEEE Communications Letters
- Catalog match (ISSN) IEEE Communications Letters
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Within the domain of molecular communications, researchers mimic the techniques in nature to come up with alternative communication methods for collaborating nanomachines. This letter investigates the channel transfer function for molecular communications via diffusion. In nature, information-carrying molecules are generally absorbed by the target node via receptors. Using the concentration function, without considering the absorption process, as the channel transfer function implicitly assumes that the receiver node does not affect the system. In this letter, we propose a solid analytical formulation and analyze the signal metrics (attenuation and propagation delay) for molecular communication via diffusion channel with an absorbing receiver in a 3-D environment. The proposed model and the formulation match well with the simulations without any normalization.
Topics
Citations
OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.
367 citations
OpenAlex cited_by_count (cache / database)
94 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- A Comprehensive Survey of Recent Advancements in Molecular Communication 2016
- Molecular MIMO: From Theory to Prototype 2016
- Transmitter and Receiver Architectures for Molecular Communications: A Survey on Physical Design With Modulation, Coding, and Detection Techniques 2019
- Molecular communications: channel model and physical layer techniques 2016
- Simulation study of molecular communication systems with an absorbing receiver: Modulation and ISI mitigation techniques 2014
- Effect of Receptor Density and Size on Signal Reception in Molecular Communication via Diffusion With an Absorbing Receiver 2015
- Effect of Degradation in Molecular Communication: Impairment or Enhancement? 2015
- Arrival modelling for molecular communication via diffusion 2014
- Index Modulation for Molecular Communication via Diffusion Systems 2019
- Enhanced challenge response set and secure usage scenarios for ordering based ring oscillator physical unclonable functions 2015