Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic waves), in areas where the latter might prove ineffective (e.g., underwater or underground) due to the environment's effect on the transmitted signal. In such environments the use of particle (i.e., chemical) based communication may offer a better solution. One of the unique attributes of MC is its ability to employ chemicals as messengers, and transmitting multiple chemicals concurrently offers the potential to significantly increase the information content of the message. In this work, for the first time, the transmission of multiple chemicals with unique mass-to-charge ratios, was studied experimentally and modeled theoretically. Three modul...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...
In the Molecular Communication (MC), molecules are utilized to encode, transmit, and receive informa...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Molecular communication (MC) involves the transmission of information using particles (i.e., molecul...
Abstract—This demonstration will present the world’s first macroscale molecular communication link t...
The use of electromagnetic (EM) waves to transmit information has allowed our society to collaborate...
This demonstration will present the world's first macroscale molecular communication link to reliabl...
The synthetic generation/coding and transmission of olfactory information over a gas stream or an od...
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...
Molecular communications in macroscale environments is an emerging field of study driven by the intr...
Molecular Communication (MC) is a relatively new interdisciplinary research paradigm that is related...
Molecular Communication (MC) is a relatively new interdisciplinary research paradigm that is related...
In this work, we describe the first modular, and programmable platform capable of transmitting a tex...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...
In the Molecular Communication (MC), molecules are utilized to encode, transmit, and receive informa...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...
Molecular communications (MC) offers an alternative to established methods (i.e., electromagnetic wa...
Molecular communication (MC) involves the transmission of information using particles (i.e., molecul...
Abstract—This demonstration will present the world’s first macroscale molecular communication link t...
The use of electromagnetic (EM) waves to transmit information has allowed our society to collaborate...
This demonstration will present the world's first macroscale molecular communication link to reliabl...
The synthetic generation/coding and transmission of olfactory information over a gas stream or an od...
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...
Molecular communications in macroscale environments is an emerging field of study driven by the intr...
Molecular Communication (MC) is a relatively new interdisciplinary research paradigm that is related...
Molecular Communication (MC) is a relatively new interdisciplinary research paradigm that is related...
In this work, we describe the first modular, and programmable platform capable of transmitting a tex...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...
In the Molecular Communication (MC), molecules are utilized to encode, transmit, and receive informa...
Signal processing over the molecular domain is critical for analysing, modifying, and synthesizing c...