Understanding and embracing the complexities of the molecular communication channel in liquids
Jiaming Wang, Dongyin Hu, Chirag C. Shetty, Haitham Hassanieh
摘要
Molecular communication has recently gained a lot of interest due to its potential to enable micro-implants to communicate by releasing molecules into the bloodstream. In this paper, we aim to explore the molecular communication channel through theoretical and empirical modeling in order to achieve a better understanding of its characteristics, which tend to be more complex in practice than traditional wireless and wired channels. Our study reveals two key new characteristics that have been overlooked by past work. Specifically, the molecular communication channel exhibits non-causal inter-symbol-interference and a long delay spread, that extends beyond the channel coherence time, which limit decoding performance. To address this, we design, μ-Link a molecular communication protocol and decoder that accounts for these new insights. We build a testbed to experimentally validate our findings and show that μ-Link can improve the achievable data rates with significantly lower bit error rates.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper1
问问它们各自怎么用它相关 Paper
- Heartbeat Aware Decoding in Molecular NetworksJiaming Wang, Samin Beheshti Zavareh, Haitham Hassanieh, Bhuvana KrishnaswamyINFOCOM 2025
- CoDe: Communication Delay-Tolerant Multi-Agent Collaboration via Dual Alignment of Intent and TimelinessShoucheng Song, Youfang Lin, Sheng Han, Chang Yao 等AAAI 2025 · 被引用 7 次
- Actions Speak Louder Than Words: Rate-Reward Trade-off in Markov Decision ProcessesHaotian Wu, Gongpu Chen, Deniz GündüzICLR 2025
- Learning to Communicate Through Implicit Communication ChannelsHan Wang, Binbin Chen, Tieying Zhang, Baoxiang WangICLR 2025
- Optimal Resource Allocation for Statistical QoS Provisioning in Supporting mURLLC Over FBC-Driven 6G Terahertz Wireless Nano-NetworksXi Zhang, Jingqing Wang, H. Vincent PoorINFOCOM 2021 · 被引用 5 次
