© 2018 IEEE. Molecular communication is an emerging technology for communication between bio-nanomachines in an aqueous environment. In this paper, we examine the effect of a reactive obstacle, which is placed in the diffusive molecular communication channel, on the expected number of the received molecules at the receiver. We develop a particle-based simulator that can predict the number of the received molecules for both passive and absorptive receivers by considering the impact of the reactive obstacle within the communication channel. The impacts of the reaction probability and radius of the obstacle on the received signal are examined and compared with the case of absence of the obstacle. The results show significant impact for the obs...
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...
Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred n...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
© 2017 IEEE. Molecular communication is an emerging paradigm that enables both the biological and sy...
Molecular communication is a novel paradigm that uses molecules as an information carrier to enable ...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
Nanotechnology represents a new solution for variety of applications in the biomedical, industrial a...
In the nanonetworking literature, many solutions have been suggested to enable the nanomachine-to-na...
Diffusion-based molecular communication is a promising bio-inspired paradigm to implement nanonetwor...
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...
Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred n...
© 2018 IEEE. Molecular communication paradigm enables nanomachines or biological cells at nano/micro...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
In this paper an analytical model is introduced to describe the impulse response of the diffusive ch...
© 2017 IEEE. Molecular communication is an emerging paradigm that enables both the biological and sy...
Molecular communication is a novel paradigm that uses molecules as an information carrier to enable ...
arXiv admin note: text overlap with arXiv:1605.08311arXiv admin note: text overlap with arXiv:1605.0...
Nanotechnology represents a new solution for variety of applications in the biomedical, industrial a...
In the nanonetworking literature, many solutions have been suggested to enable the nanomachine-to-na...
Diffusion-based molecular communication is a promising bio-inspired paradigm to implement nanonetwor...
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...
Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred n...