论文标题
通过扩散的分子通信调制技术的调查
A Survey on Modulation Techniques in Molecular Communication via Diffusion
论文作者
论文摘要
该调查文件重点介绍了分子通信的调制方面,这是一个新兴领域,旨在构建以化学信号嵌入数据的生物学启发的系统。设计这些系统的主要挑战是如何将信息编码和调节到化学信号上,以及如何设计可以从目的地观察到的损坏的化学信号中检测和解码信息的接收器。在本文中,我们专注于通过扩散系统进行分子通信的调制设计。在这些系统中,化学信号是使用从发射器到接收器的扩散(可能在流量辅助的)传输的。该教程介绍了通过扩散进行的调制和解调方案的最新进步。我们比较了五种不同的调制类型:基于浓度,基于类型的基于计时,基于时机,空间和高阶调制技术。介绍了每个调制方案的端到端系统设计。此外,还提出了文献中用于评估这些技术性能的关键指标。最后,我们使用分析模型提供了突出调制技术的数值位错误率比较。我们通过讨论关键的开放问题和未来的研究方向,以通过扩散系统设计分子通信的未来研究方向。
This survey paper focuses on modulation aspects of molecular communication, an emerging field focused on building biologically-inspired systems that embed data within chemical signals. The primary challenges in designing these systems are how to encode and modulate information onto chemical signals, and how to design a receiver that can detect and decode the information from the corrupted chemical signal observed at the destination. In this paper, we focus on modulation design for molecular communication via diffusion systems. In these systems, chemical signals are transported using diffusion, possibly assisted by flow, from the transmitter to the receiver. This tutorial presents recent advancements in modulation and demodulation schemes for molecular communication via diffusion. We compare five different modulation types: concentration-based, type-based, timing-based, spatial, and higher-order modulation techniques. The end-to-end system designs for each modulation scheme are presented. In addition, the key metrics used in the literature to evaluate the performance of these techniques are also presented. Finally, we provide a numerical bit error rate comparison of prominent modulation techniques using analytical models. We close the tutorial with a discussion of key open issues and future research directions for design of molecular communication via diffusion systems.