© 2017 IEEE. We consider a diffusion-based nano-network with N spatially distributed transmitters and one receiver. While the transmitters are linked in a unified entity to perform one transmission, the receiver is large enough to be viewed as a plane. Messages are encoded into the number of nano-scale molecules. Based on these assumptions, we analyze the signal-to-interference ratio, which is based on the average numbers of absorbed molecules. Moreover, we present an approach to interference alignment for molecular communications
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Abstract—Nanonetworking is an emerging field of research, where nanotechnology and communication eng...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
Molecular nanonetworks stand at the intersection of nanotechnology, biotechnology, and network engin...
none1noUnlike electromagnetic communications, where the noise is typically represented by a (Gaussia...
Molecular nanonetworks stand at the intersection of nanotechnology, biotechnology, and network engin...
Information delivery using chemical molecules is an integral part of biology at multiple distance sc...
Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred n...
Nano machines can be connected together in a nano network. Molecular communication provides the most...
In this paper, we consider a multi-hop molecular communication network consisting of one nanotransmi...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Abstract—Nanonetworking is an emerging field of research, where nanotechnology and communication eng...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
International audienceWe consider a diffusion-based nano-network with N spatially distributed transm...
Molecular nanonetworks stand at the intersection of nanotechnology, biotechnology, and network engin...
none1noUnlike electromagnetic communications, where the noise is typically represented by a (Gaussia...
Molecular nanonetworks stand at the intersection of nanotechnology, biotechnology, and network engin...
Information delivery using chemical molecules is an integral part of biology at multiple distance sc...
Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred n...
Nano machines can be connected together in a nano network. Molecular communication provides the most...
In this paper, we consider a multi-hop molecular communication network consisting of one nanotransmi...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
Nanotechnology has allowed building nanomachines capable of performing simple tasks, such as sensing...
Abstract—Nanonetworks, the interconnection of nanosystems, are envisaged to greatly expand the appli...
Abstract—Nanonetworking is an emerging field of research, where nanotechnology and communication eng...