Article detail · 2018
Maximum Likelihood Detection With Ligand Receptors for Diffusion-Based Molecular Communications in Internet of Bio-Nano Things
- Year
- 2018
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue IEEE Transactions on NanoBioscience
- Catalog match (ISSN) IEEE Transactions on Nanobioscience
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Molecular Communication (MC) is a bio-inspired communication technique that uses molecules as a method of information transfer among nanoscale devices. MC receiver is an essential component having profound impact on the communication system performance. However, the interaction of the receiver with information bearing molecules has been usually oversimplified in modeling the reception process and developing signal detection techniques. In this paper, we focus on the signal detection problem of MC receivers employing receptor molecules to infer the transmitted messages encoded into the concentration of molecules, i.e., ligands. Exploiting the observable characteristics of ligand-receptor binding reaction, we first introduce a Maximum Likelihood (ML) detection method based on instantaneous receptor occupation ratio, as aligned with the current MC literature. Then, we propose a novel ML detection technique, which exploits the amount of time the receptors stay unbound in an observation time window. A comprehensive analysis is carried out to compare the performance of the detectors in terms of bit error probability. In evaluating the detection performance, emphasis is given to the receptor saturation problem resulting from the accumulation of messenger molecules at the receiver as a consequence of intersymbol interference. The results reveal that detection based on receptor unbound time is quite reliable even in saturation, whereas the reliability of detection based on receptor occupation ratio substantially decreases as the receiver gets saturated. Finally, we also discuss the potential methods of implementing the detectors.
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Citations
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48 citations
OpenAlex cited_by_count (cache / database)
12 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Transmitter and Receiver Architectures for Molecular Communications: A Survey on Physical Design With Modulation, Coding, and Detection Techniques 2019
- Fabrication and microfluidic analysis of graphene-based molecular communication receiver for Internet of Nano Things (IoNT) 2021
- Channel Sensing in Molecular Communications With Single Type of Ligand Receptors 2019
- Information and Communication Theoretical Understanding and Treatment of Spinal Cord Injuries: State-of-The-Art and Research Challenges 2021
- Odor-Based Molecular Communications: State-of-the-Art, Vision, Challenges, and Frontier Directions 2024
- Selective Signal Detection with Ligand Receptors Under Interference in Molecular Communications 2018
- Narrow escape problem in synaptic molecular communications 2022
- Channel Clearance by Perfectly Absorbing Boundaries in Synaptic Molecular Communications 2022
- Graphene-based Nanoscale Molecular Communication Receiver: Fabrication and Microfluidic Analysis 2020
- Detection in molecular communications with ligand receptors under molecular interference 2022