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 Likelih...
In molecular communications, the direct detection of signaling molecules may be challenging due to t...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
In this paper, we propose a novel DNA-based molecular communication (MC) protocol towards high capac...
Molecular Communication (MC) is a bio-inspired communication technique that uses molecules as a meth...
Molecular Communications (MC) is a bio-inspired communication technique that uses molecules to trans...
Molecular Communications (MC) is a bio-inspired wireless communication technique that uses molecules...
Molecular Communications (MC) uses molecules as information carriers between nanomachines. MC channe...
Internet of Nano Things (IoNT) is an emerging technology, which aims at extending the connectivity i...
Summary Diffusion-based communication is one of the most dominating forms in the micrometer and nano...
Molecular communication (MC) will enable the exchange of information among nanoscale devices. In thi...
This paper proposes a feedback-controlled adaptive method for detecting signals in diffusion-based m...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Molecular communication (MC) is a new bio-inspired communication paradigm towards realizing the comm...
The complexity of molecular communications system, involving a massive number of interacting entitie...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In molecular communications, the direct detection of signaling molecules may be challenging due to t...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
In this paper, we propose a novel DNA-based molecular communication (MC) protocol towards high capac...
Molecular Communication (MC) is a bio-inspired communication technique that uses molecules as a meth...
Molecular Communications (MC) is a bio-inspired communication technique that uses molecules to trans...
Molecular Communications (MC) is a bio-inspired wireless communication technique that uses molecules...
Molecular Communications (MC) uses molecules as information carriers between nanomachines. MC channe...
Internet of Nano Things (IoNT) is an emerging technology, which aims at extending the connectivity i...
Summary Diffusion-based communication is one of the most dominating forms in the micrometer and nano...
Molecular communication (MC) will enable the exchange of information among nanoscale devices. In thi...
This paper proposes a feedback-controlled adaptive method for detecting signals in diffusion-based m...
Multi-scale molecular communication (MC) employs the characteristics of information molecules for in...
Molecular communication (MC) is a new bio-inspired communication paradigm towards realizing the comm...
The complexity of molecular communications system, involving a massive number of interacting entitie...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In molecular communications, the direct detection of signaling molecules may be challenging due to t...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
In this paper, we propose a novel DNA-based molecular communication (MC) protocol towards high capac...