paper-with-me

홈 › Papers

Frequency-Domain Detection for Molecular Communication with Cross-Reactive Receptors

2023-09-17 · Meltem Civas, Murat Kuscu, Ozgur B. Akan

Molecular Communications (MC) is a bio-inspired communication paradigm that uses molecules as information carriers, requiring unconventional transceivers and modulation/detection techniques. Practical MC receivers (MC-Rxs) can be implemented using field-effect transistor biosensor (bioFET) architectures, where surface receptors reversibly react with ligands. The time-varying concentration of ligand-bound receptors is translated into electrical signals via field effect, which is used to decode the transmitted information. However, ligand-receptor interactions do not provide an ideal molecular selectivity, as similar ligand types, i.e., interferers, co-existing in the MC channel, can interact with the same type of receptors. Overcoming this molecular cross-talk in the time domain can be challenging, especially when Rx has no knowledge of the interferer statistics or operates near saturation. Therefore, we propose a frequency-domain detection (FDD) technique for bioFET-based MC-Rxs that exploits the difference in binding reaction rates of different ligand types reflected in the power spectrum of the ligand-receptor binding noise. We derive the bit error probability (BEP) of the FDD technique and demonstrate its effectiveness in decoding transmitted concentration signals under stochastic molecular interference compared to a widely used time-domain detection (TDD) technique. We then verified the analytical performance bounds of the FDD through a particle-based spatial stochastic simulator simulating reactions on the MC-Rx in microfluidic channels.

📄 PDF Abstract BibTeX arXiv:2309.09377

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Frequency-Domain Detection for Molecular Communications

2023-01-03 · Meltem Civas, Ali Abdali, Murat Kuscu, Ozgur B. Akan

Molecular Communications (MC) is a bio-inspired communication paradigm which uses molecules as information carriers, thereby requiring unconventional transmitter/receiver architectures and modulation/detection techniques…

Frequency response of diffusion-based molecular communication channels in bounded environment

2022-03-25 · Taishi Kotsuka, Yutaka Hori

Recently, molecular communication (MC) has been studied as a micro-scale communication between cells or molecular robots. In previous works, the MC channels in unbounded environment was analyzed. However, many of the exp…

A Control-theoretic Model for Bidirectional Molecular Communication Systems

2022-10-26 · Taishi Kotsuka, Yutaka Hori

Molecular communication (MC) enables cooperation of spatially dispersed molecular robots through the feedback control mediated by diffusing signal molecules. However, conventional analysis frameworks for the MC channels …

Analysis of Signal Distortion in Molecular Communication Channels Using Frequency Response

2024-03-29 · Shoichiro Kitada, Taishi Kotsuka, Yutaka Hori

Molecular communication (MC) is a concept in communication engineering, where diffusive molecules are used to transmit information between nano or micro-scale chemical reaction systems. Engineering MC to control the reac…

FrequencyFormer: A Co-Designed Sensor-to-Processor Pipeline for Frequency-Domain Vision Transformer Inference

2026-06-17 · Chengwei Zhou, Ovishake Sen, Xuming Chen, Rishith Paramasivam 외 arxiv

Deploying vision transformers (ViTs) on sensor-edge systems is limited not only by on-device compute, but also by the energy and bandwidth required to transmit high-dimensional image data from the sensor to the processor…