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Investigation of methods for data communication and power delivery through metals

机译:研究通过金属进行数据通信和供电的方法

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摘要

The retrieval of data from a sensor, enclosed by a metallic structure, such as a naval vessel, pipeline or nuclear flask is often very challenging. To maintain structural integrity it is not desirable to penetrate the wall of the structure, preventing any hard-wired solution. Furthermore, the conductive nature of the structure prevents the use of radio communications. Applications involving sealed containers also have a requirement for power delivery, as the periodic changing of batteries is not possible. Ultrasound has previously been identified as an attractive approach but there are two key challenges: efficient/reliable ultrasonic transduction and a method of overcoming the inherent multipath distortion resulting from boundary reflections. Previous studies have utilised piezoelectric contact transducers, however, they are impractical due to their reliance on coupling, i.e. the bond between the transducer and the metal surface, which leads to concerns over long term reliability. A non-contact transducer overcomes this key drawback, thus highlighting the electromagnetic acoustic transducer (EMAT) as a favourable alternative. This thesis presents the design and testing of an EMAT with appropriate characteristics for through-metal data communications. A low cost, low power data transmission scheme is presented for overcoming acoustic multipath based on pulse position modulation (PPM). Due to the necessary guard time, the data rate is limited to 50kbps. A second solution is presented employing continuous wave, Quadrature phase shift keying (QPSK) modulation, allowing data rates in excess of 1Mbps to be achieved. Equalisation is required to avoid intersymbol interference (ISI) and a decision feedback equaliser (DFE) is shown to be adept at mitigating this effect. The relatively low efficiency of an EMAT makes it unsuitable for power delivery, consequently, an alternative non-contact approach, utilising inductive coupling, is explored. Power transfer efficiency of ≈ 4% is shown to be achievable through 20mm thick stainless steel.
机译:从由诸如海军舰船,管道或核烧瓶之类的金属结构包围的传感器中检索数据通常是非常困难的。为了保持结构的完整性,不希望穿透结构的壁,从而防止任何硬接线的解决方案。此外,该结构的导电性质阻止了无线电通信的使用。由于不可能定期更换电池,因此在涉及密闭容器的应用中也需要动力传输。超声波以前被认为是一种有吸引力的方法,但是存在两个关键挑战:有效/可靠的超声波换能以及一种克服边界反射导致的固有多径畸变的方法。先前的研究已经利用了压电接触式换能器,但是,由于它们依赖于耦合,即换能器与金属表面之间的结合,因此它们是不切实际的,这引起了对长期可靠性的关注。非接触式换能器克服了这一关键缺点,因此突出了电磁声学换能器(EMAT)作为一种有利的替代方案。本文提出了具有适当特性的金属穿透数据通信的EMAT的设计和测试。提出了一种低成本,低功耗的数据传输方案,用于克服基于脉冲位置调制(PPM)的声学多径。由于必要的保护时间,数据速率限制为50kbps。提出了采用连续波,正交相移键控(QPSK)调制的第二种解决方案,可以实现超过1Mbps的数据速率。需要进行均衡以避免符号间干扰(ISI),并且决策反馈均衡器(DFE)被证明可以缓解这种影响。 EMAT的效率相对较低,使其不适用于功率传输,因此,人们探索了一种利用感应耦合的非接触式替代方法。通过20mm厚的不锈钢可以实现≈4%的功率传输效率。

著录项

  • 作者

    Graham David James;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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