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Through-Metal-Wall Power Delivery and Data Transmission for Enclosed Sensors: A Review

机译:封闭式传感器的全金属墙电力传输和数据传输:回顾

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摘要

The aim of this review was to assess the current viable technologies for wireless power delivery and data transmission through metal barriers. Using such technologies sensors enclosed in hermetical metal containers can be powered and communicate through exterior power sources without penetration of the metal wall for wire feed-throughs. In this review, we first discuss the significant and essential requirements for through-metal-wall power delivery and data transmission and then we: (1) describe three electromagnetic coupling based techniques reported in the literature, which include inductive coupling, capacitive coupling, and magnetic resonance coupling; (2) present a detailed review of wireless ultrasonic through-metal-wall power delivery and/or data transmission methods; (3) compare various ultrasonic through-metal-wall systems in modeling, transducer configuration and communication mode with sensors; (4) summarize the characteristics of electromagnetic-based and ultrasound-based systems, evaluate the challenges and development trends. We conclude that electromagnetic coupling methods are suitable for through thin non-ferromagnetic metal wall power delivery and data transmission at a relatively low data rate; piezoelectric transducer-based ultrasonic systems are particularly advantageous in achieving high power transfer efficiency and high data rates; the combination of more than one single technique may provide a more practical and reliable solution for long term operation.
机译:这次审查的目的是评估通过金属屏障进行无线电力传输和数据传输的当前可行技术。使用这种技术,封闭在密闭金属容器中的传感器可以通过外部电源供电并进行通讯,而无需穿透金属壁以进行导线穿通。在这篇综述中,我们首先讨论了贯穿金属墙的功率传输和数据传输的重要和基本要求,然后我们:(1)描述了文献中报道的三种基于电磁耦合的技术,包括电感耦合,电容耦合和磁共振耦合(2)详细介绍了无线超声波贯穿金属墙的功率传输和/或数据传输方法; (3)在建模,换能器配置和与传感器的通信模式下比较各种超声金属穿墙系统; (4)总结了基于电磁和基于超声的系统的特点,评估了挑战和发展趋势。我们得出结论,电磁耦合方法适用于以相对较低的数据速率通过薄的非铁磁性金属壁进行功率传输和数据传输。基于压电换能器的超声系统在实现高功率传输效率和高数据速率方面特别有利。多于一种技术的组合可以为长期运行提供更实用和可靠的解决方案。

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