无源无线传感系统在恶劣环境监测和医疗保健应用中的进展

IF 26.6 1区 材料科学 Q1 Engineering
Wei Yue, Yunjian Guo, Jong‐Chul Lee, Enkhzaya Ganbold, Jia-Kang Wu, Yang Li, Cong Wang, Hyun Soo Kim, Young-Kee Shin, Jun-Ge Liang, Eun-Seong Kim, Nam-Young Kim
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引用次数: 0

摘要

无源无线传感器技术的最新进展大大扩展了传感的应用范围,特别是在监测行业和医疗保健应用的具有挑战性的环境中。这些系统配备了无电池操作,无线连接,并且设计为小型化和轻量化。这些功能能够安全、实时地监测工业环境,并支持在受限的身体内部空间和可穿戴的表皮设备上进行高精度的生理测量。尽管对不同的应用环境进行了探索,但系统架构的系统和全面的研究框架仍然难以形成,这阻碍了系统的进一步优化。因此,本文将从应用场景的检查开始,进一步评估当前的系统架构,并在目标传感系统的关键实现背景下讨论每个组件的功能,特别是无源传感器模块、无线通信模型和读出模块。此外,我们提出了案例研究,证明了从这种系统方法中衍生出来的用于传感场景的分类组件的可行性。通过概述无源无线系统在传感技术中的应用研究轨迹,本文旨在为更先进、用户友好的应用奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancements in Passive Wireless Sensing Systems in Monitoring Harsh Environment and Healthcare Applications

Recent advancements in passive wireless sensor technology have significantly extended the application scope of sensing, particularly in challenging environments for monitoring industry and healthcare applications. These systems are equipped with battery-free operation, wireless connectivity, and are designed to be both miniaturized and lightweight. Such features enable the safe, real-time monitoring of industrial environments and support high-precision physiological measurements in confined internal body spaces and on wearable epidermal devices. Despite the exploration into diverse application environments, the development of a systematic and comprehensive research framework for system architecture remains elusive, which hampers further optimization of these systems. This review, therefore, begins with an examination of application scenarios, progresses to evaluate current system architectures, and discusses the function of each component—specifically, the passive sensor module, the wireless communication model, and the readout module—within the context of key implementations in target sensing systems. Furthermore, we present case studies that demonstrate the feasibility of proposed classified components for sensing scenarios, derived from this systematic approach. By outlining a research trajectory for the application of passive wireless systems in sensing technologies, this paper aims to establish a foundation for more advanced, user-friendly applications.

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来源期刊
Nano-Micro Letters
Nano-Micro Letters NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
32.60
自引率
4.90%
发文量
981
审稿时长
1.1 months
期刊介绍: Nano-Micro Letters is a peer-reviewed, international, interdisciplinary, and open-access journal published under the SpringerOpen brand. Nano-Micro Letters focuses on the science, experiments, engineering, technologies, and applications of nano- or microscale structures and systems in various fields such as physics, chemistry, biology, material science, and pharmacy.It also explores the expanding interfaces between these fields. Nano-Micro Letters particularly emphasizes the bottom-up approach in the length scale from nano to micro. This approach is crucial for achieving industrial applications in nanotechnology, as it involves the assembly, modification, and control of nanostructures on a microscale.
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