Abstract—In this paper, we consider a two-hop molecular communication network consisting of one nanotransmitter, one nanoreceiver, and one nanotransceiver acting as a relay. We consider two different schemes for relaying to improve the range of diffusion-based molecular communication. In the first scheme, two different types of messenger molecules are utilized at the relay node for transmission and detection. In the second scheme, we assume that there is only one type of molecule available to be used as an information carrier. We identify self-interference as the performance-limiting effect for the second relaying scheme. Self-interference occurs when the relay must detect the same type of molecule that it also emits. Furthermore, we consid...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In this paper, we consider a two-hop molecular communication network consisting of one nanotransmitt...
In this paper, we consider a multi-hop molecular communication network consisting of one nanotransmi...
In this paper, we consider bidirectional relaying between two diffusion-based molecular transceivers...
Diffusion-based molecular communication (MC) systems experience significant reliability losses. To b...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
Molecular communications (MC) is a promising paradigm which enables nano-machines to communicate wit...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
The distance-decay effect of molecular signals makes communication range a major challenge for diffu...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
In this paper, we consider a two-hop molecular communication network consisting of one nanotransmitt...
In this paper, we consider a multi-hop molecular communication network consisting of one nanotransmi...
In this paper, we consider bidirectional relaying between two diffusion-based molecular transceivers...
Diffusion-based molecular communication (MC) systems experience significant reliability losses. To b...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
Molecular communications (MC) is a promising paradigm which enables nano-machines to communicate wit...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
The distance-decay effect of molecular signals makes communication range a major challenge for diffu...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
For nano-scale communications, there must be cooperation and simultaneous communication between nano...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Diffusive molecular communication (MC) is a promising strategy for the transfer of information in sy...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...