English

Controlled Signaling and Transmitter Replenishment for MC with Functionalized Nanoparticles

Emerging Technologies 2022-06-06 v1

Abstract

In this paper, we propose novel Transmitter (Tx) models for Molecular Communication (MC) systems based on functionalized Nanoparticles (NPs). Current Tx models often rely on simplifying assumptions for the molecule release and replenishment mechanisms. In contrast, we propose a Tx model where the signaling molecule release is controlled by a switchable membrane driven by an external trigger. Moreover, we propose a reloading mechanism, where signaling molecules are harvested based on an enzymatic reaction. Hence, no repeated injection of signaling molecules is required. For the proposed Tx model, we develop a general mathematical description in terms of a discrete-time transfer function model. Furthermore, we investigate two realizations of the proposed Tx model, i.e., an idealized Tx relying on simplifying assumptions, and a realistic Tx employing practical components for the reloading and release mechanisms. Finally, we numerically evaluate the proposed model and compare our results to stochastic Particle Based Simulations (PBSs).

Keywords

Cite

@article{arxiv.2206.01471,
  title  = {Controlled Signaling and Transmitter Replenishment for MC with Functionalized Nanoparticles},
  author = {Maximilian Schäfer and Lukas Brand and Sebastian Lotter and Atakan Büyükoglu and Franz Enzenhofer and Werner Haselmayr and Kathrin Castiglione and Dietmar Appelhans and Robert Schober},
  journal= {arXiv preprint arXiv:2206.01471},
  year   = {2022}
}

Comments

7 pages, 7 figures. submitted to 9th ACM International Conference on Nanoscale Computing and Communication, Barcelona, Catalunya, Spain

R2 v1 2026-06-24T11:38:04.533Z