Information delivery using chemical molecules is an integral part of biology at multiple distance scales and has attracted recent interest in bioengineering and communication. The collective signal strength at the receiver (i.e., the expected number of observed molecules inside the receiver), resulting from a large number of transmitters at random distances (e.g., due to mobility), can have a major impact on the reliability and efficiency of the molecular communication system. Modeling the collective signal from multiple diffusion sources can be computationally and analytically challenging. In this paper, we present the first tractable analytical model for the collective signal strength due to randomly-placed transmitters, whose positions a...
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...
Information delivery using chemical molecules is an integral part of biology at multiple distance sc...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
This paper analyzes distributed molecular communications with multiple transmitters and multiple rec...
This paper analyzes distributed molecular communications with multiple transmitters and multiple rec...
none1noUnlike electromagnetic communications, where the noise is typically represented by a (Gaussia...
This letter studies large-scale molecular communication systems by using point processes theory. A s...
This letter studies large-scale molecular communication systems by using point processes theory. A s...
none1noThis letter studies large-scale molecular communication systems by using point processes theo...
Molecular communication (MC) can enable the transfer of information between nanomachines using molec...
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...
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...
Information delivery using chemical molecules is an integral part of biology at multiple distance sc...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
This paper analyzes distributed molecular communications with multiple transmitters and multiple rec...
This paper analyzes distributed molecular communications with multiple transmitters and multiple rec...
none1noUnlike electromagnetic communications, where the noise is typically represented by a (Gaussia...
This letter studies large-scale molecular communication systems by using point processes theory. A s...
This letter studies large-scale molecular communication systems by using point processes theory. A s...
none1noThis letter studies large-scale molecular communication systems by using point processes theo...
Molecular communication (MC) can enable the transfer of information between nanomachines using molec...
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...
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...