Diffusion-based molecular nanonetworks exploit the diffusion of molecules, eg, in free space or in blood vessels, for the purpose of communication. This article comprehensively surveys …
The current progress in the field of nanotechnology with respect to biomedical and biotechnology is aimed at designing novel materials that have exclusive properties of …
An air-based macroscopic molecular communication testbed exploiting fluorescence properties of water-based solutions of Uranine and Rhodamine 6G dyes is presented in this …
The deterministic identification (DI) capacity is developed in multiple settings of channels with power constraints. A full characterization is established for the DI capacity of the …
Mobile communications have been undergoing a generational change every ten years or so. However, the time difference between the so-called" G's" is also decreasing. While fifth …
Deterministic identification (DI) is addressed for Gaussian channels with fast and slow fading, where channel side information is available at the decoder. In particular, it is …
Utilizing the 0.1 to 10 THz spectrum in the next-generation wireless communication networks holds potential for futuristic applications. However, managing resources to accommodate …
Molecular communication (MC) is gaining increasing popularity for data communication between nano systems. First applications both in the biomedical and the industrial domain …
Various applications of molecular communications (MC) are event-triggered, and, as a consequence, the prevalent Shannon capacity may not be the right measure for …