Molecule concentration is often used as the information carrier to accomplish diffusion-based molecular communications (DMC) among nano-machines. To achieve the optimal functionality, knowing the distance between the transmitter nano-machine (TN) and the receiver nano-machine (RN) is of high importance. In this paper, two distance estimation schemes are proposed based upon the RN-sensed concentration which changes with regards to the time and distance. The RN estimates the distance by means of measuring either the concentration-peak time or received concentration energy. Simulations are performed to compare the accuracy of each scheme and to discover how the diffusion channel and noise may influence the accuracy. Results show that both sche...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecules are often used as the information carrier to accomplish communications among nano-machines...
Nanotechnology is the engineering of functional systems at the molecular/atomic level. Nanomachines ...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
Molecular Communications (MC) is an increasingly attractive technique to enable the networking of na...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Diffusion based Molecular Communication is the new communication paradigm in nanonetwork. Diffusion-...
Molecular Communications (MC) is a promising paradigm to achieve message exchange between nano-machi...
In diffusion-based molecular communication (MC), the most common modulation technique is based on th...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Diffusion-based molecular communication (DBMC) has emerged as a promising communication option, part...
Abstract—Nanonetworking is an emerging field of research, where nanotechnology and communication eng...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecules are often used as the information carrier to accomplish communications among nano-machines...
Nanotechnology is the engineering of functional systems at the molecular/atomic level. Nanomachines ...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
Molecular Communications (MC) is an increasingly attractive technique to enable the networking of na...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Diffusion based Molecular Communication is the new communication paradigm in nanonetwork. Diffusion-...
Molecular Communications (MC) is a promising paradigm to achieve message exchange between nano-machi...
In diffusion-based molecular communication (MC), the most common modulation technique is based on th...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Diffusion-based molecular communication (DBMC) has emerged as a promising communication option, part...
Abstract—Nanonetworking is an emerging field of research, where nanotechnology and communication eng...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...
Molecular Communication (MC) is a bio-inspired communication paradigm, where chemical signals (molec...