Media Modulation based Molecular Communication
Lukas Brand, Moritz Garkisch, Sebastian Lotter, Maximilian Sch\"afer,, Andreas Burkovski, Heinrich Sticht, Kathrin Castiglione, and Robert Schober

TL;DR
This paper introduces media modulation in molecular communication, using external stimuli to control signaling molecules' states, enabling reliable information transfer without the need for molecule replenishment or invasive transmitters.
Contribution
It proposes a novel media modulation approach utilizing photochromic molecules and develops a comprehensive statistical model for system performance analysis.
Findings
Media modulation achieves reliable communication in molecular systems.
Analytical expressions for optimal detection thresholds and BER are derived.
The approach offers a practical alternative to traditional molecule-emitting transmitters.
Abstract
In conventional molecular communication (MC) systems, the signaling molecules used for information transmission are stored, released, and then replenished by a transmitter (TX). However, the replenishment of signaling molecules at the TX is challenging in practice. Furthermore, in most envisioned MC applications, e.g., in the medical field, it is not desirable to insert the TX into the MC system, as this might impair natural biological processes. In this paper, we propose the concept of media modulation based MC where the TX is placed outside the channel and utilizes signaling molecules already present inside the system. The signaling molecules can assume different states which can be switched by external stimuli. Hence, in media modulation based MC, the TX modulates information into the state of the signaling molecules. In particular, we exploit the group of photochromic molecules,…
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Taxonomy
TopicsMolecular Communication and Nanonetworks
