The Internet of Everything (IoE) is a recently introduced information and communication technology (ICT) framework promising for extending the human connectivity to the entire universe, which itself can be regarded as a natural IoE, an interconnected network of everything we perceive. The countless number of opportunities that can be enabled by IoE through a blend of heterogeneous ICT technologies across different scales and environments and a seamless interface with the natural IoE impose several fundamental challenges, such as interoperability, ubiquitous connectivity, energy efficiency, and miniaturization. The key to address these challenges is to advance our communication technology to match the multi-scale, multi-modal, and dynamic features of the natural IoE. To this end, we introduce a new communication device concept, namely the universal IoE transceiver, that encompasses transceiver architectures that are characterized by multi-modality in communication (with modalities such as molecular, RF/THz, optical and acoustic) and in energy harvesting (with modalities such as mechanical, solar, biochemical), modularity, tunability, and scalability. Focusing on these fundamental traits, we provide an overview of the opportunities that can be opened up by micro/nanoscale universal transceiver architectures towards realizing the IoE applications. We also discuss the most pressing challenges in implementing such transceivers and briefly review the open research directions. Our discussion is particularly focused on the opportunities and challenges pertaining to the IoE physical layer, which can enable the efficient and effective design of higher-level techniques. We believe that such universal transceivers can pave the way for seamless connection and communication with the universe at a deeper level and pioneer the construction of the forthcoming IoE landscape.
翻译:互联网(IoE)是一个最近推出的信息和通信技术框架(ICT)框架,它有望将人类连接扩展到整个宇宙,而宇宙本身可被视为一个自然的IoE,一个我们所感知的一切相互连接的网络。IoE能够提供无数的机会,它通过将不同规模和环境的多种信通技术混合起来以及与自然的IoE无缝的连接而使IoE能够提供无数的机会,这带来了一些根本性的挑战,例如互操作性、无处不在的连通性、能源效率和小型化。应对这些挑战的关键是推进我们的通信技术,以适应自然的IoE的多规模、多模式和动态特征。为此,我们引入了一个新的通信设备概念,即通用的IoE传输器,它包括以多种通信模式(如分子、RF/THz、光学和声学)和能源回收(如机械、太阳能、生物化学、模块化、碳调和可调制等模式)以及可调和可变化性化性能。我们更集中地关注这些基础性、可变化的技术。