Modulation, ISI, and Detection for Langmuir Adsorption-Based Microfluidic Molecular Communication
Abstract
This paper studies microfluidic molecular communication receivers with finite-capacity Langmuir adsorption driven by an effective surface concentration. In the reaction-limited regime, we derive a closed-form single-pulse response kernel and a symbol-rate recursion for on-off keying that explicitly exposes channel memory and inter-symbol interference. We further develop short-pulse and long-pulse approximations, revealing an interference asymmetry in the long-pulse regime due to saturation. To account for stochasticity, we adopt a finite-receptor binomial counting model, employ pulse-end sampling, and propose a low-complexity midpoint-threshold detector that reduces to a fixed threshold when interference is negligible. Numerical results corroborate the proposed characterization and quantify detection performance versus pulse and symbol durations.
Keywords
Cite
@article{arxiv.2601.11351,
title = {Modulation, ISI, and Detection for Langmuir Adsorption-Based Microfluidic Molecular Communication},
author = {Ruifeng Zheng and Pengjie Zhou and Pit Hofmann and Martín Schottlender and Fatima Rani and Juan A. Cabrera and Frank H. P. Fitzek},
journal= {arXiv preprint arXiv:2601.11351},
year = {2026}
}
Comments
5 pages