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Ultra-low Power Circuit and System Design for Deployable Body-worn Devices.

机译:可部署于身体的可穿戴设备的超低功耗电路和系统设计。

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摘要

Recent advances in ultra-low power chip design techniques, many originally targeting wireless sensor networks, will enable a new generation of body-worn devices for health monitoring. Off-the-shelf chips often consume too much power and are usally too bulky for body-worn applications. In this thesis, I have contributed in advancing the state-of-the-art ultra-low power circuit design techniques, including low-noise bioamplifiers for ExG (e.g. ECG, EMG, EEG, etc.) and neural applications, analog signal processors targeted for but not limited to ECoG applicaitons, transmitter and receiver for short-range wireless. In addition, I have also helped realizing the next-generation wireless sensing system ICs that aim at prolonging battery life, even eliminating the battery leveraging emerging energy-harvesting solutions. Lastly, a few works presented in the thesis (such as the "Bumblebee", "SoCWISP") have not only been published as literatures, but also deployed at various labs assisting scientists to perform experiments that are difficult if not impossible to be done otherwise.
机译:超低功耗芯片设计技术的最新进展(许多最初针对无线传感器网络)将使新一代的用于健康监测的人体穿戴设备成为可能。现成的芯片通常消耗太多功率,并且通常对于体戴应用而言体积太大。在这篇论文中,我为推进最新的超低功耗电路设计技术做出了贡献,包括用于ExG(例如ECG,EMG,EEG等)和神经应用的低噪声生物放大器,模拟信号处理器针对但不限于ECoG应用,短距离无线发射器和接收器。此外,我还帮助实现了旨在延长电池寿命的下一代无线传感系统IC,甚至消除了利用新兴的能量收集解决方案的电池。最后,论文中介绍的一些作品(例如“ Bumblebee”,“ SoCWISP”)不仅已经作为文献发表,而且还部署在各个实验室中,以协助科学家进行难以完成的实验。 。

著录项

  • 作者

    Zhang, Fan.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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