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An ultra-low power voltage regulator system for wireless sensor networks powered by energy harvesting.

机译:一种用于由能量收集供电的无线传感器网络的超低功耗稳压器系统。

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摘要

A DC-DC converter is an important power management module as it converts one DC voltage level to another suitable for powering a desired electronic system. It also stabilizes the output voltage when fluctuations appear in the power supplies. For those wireless sensor networks (WSNs) powered by energy harvesting, the DC-DC converter is usually a linear regulator and it resides at the last stage of the whole energy harvesting system just before the empowering sensor node. Due to the low power densities of energy sources, one may have to limit the quiescent current of the linear regulator in the sub-muA regime. This severe restriction on quiescent current could greatly compromise other performance aspects, especially the transient response.;This dissertation reports a voltage regulator system topology which utilizes the sensor node state information to achieve ultra-low power consumption. The regulator system is composed of two regulators with different current driving abilities and quiescent current consumptions. The key idea is to switch between the two regulators depending on the sensor state. Since the "right" regulator is used at the "right" time, the average quiescent current of the regulator system is minimized, and the trade-off between low quiescent current and fast transient response has been eliminated. In order to minimize the average quiescent current of the system, nano-ampere reference current design is studied, and the proposed reference current circuit is shown (theoretically and experimentally) to reduce the supply voltage dependence by 5X. The regulator system has been fabricated and tested using an ON Semiconductor 0.5 &mgr;m process. It has been verified through experiments that the proposed system reduces the quiescent current by 3X over the state-of-the-art in the literature; and, more importantly, it achieves low quiescent current, low dropout voltage, and fast transient response with small output voltage variation all at the same time. The thesis further presents data on the application of energy harvesting system deriving energies from various RF signals to power a commercial off-shelf wireless sensor node.
机译:DC-DC转换器是重要的电源管理模块,因为它将一个DC电压电平转换为适合于为所需电子系统供电的另一个DC电压电平。当电源中出现波动时,它还可以稳定输出电压。对于那些由能量收集提供动力的无线传感器网络(WSN),DC-DC转换器通常是线性稳压器,它位于整个能量收集系统的最后阶段,就在授权传感器节点之前。由于能源的功率密度低,人们可能不得不在sub-muA体制下限制线性稳压器的静态电流。这种对静态电流的严格限制可能会极大地影响其他性能方面,尤其是瞬态响应。;本论文报告了一种稳压器系统拓扑,该拓扑利用传感器节点的状态信息来实现超低功耗。调节器系统由两个具有不同电流驱动能力和静态电流消耗的调节器组成。关键思想是根据传感器状态在两个调节器之间切换。由于在“正确的”时间使用“正确的”调节器,因此调节器系统的平均静态电流最小,并且消除了低静态电流和快速瞬态响应之间的折衷方案。为了最小化系统的平均静态电流,研究了纳安级基准电流设计,并在理论上和实验上示出了拟议的基准电流电路,以将电源电压依赖性降低5倍。调节器系统已使用安森美半导体0.5 µm工艺制造和测试。通过实验已经证实,与文献中的最新技术相比,该系统可将静态电流降低3倍。而且,更重要的是,它同时具有低静态电流,低压差和快速瞬态响应,同时输出电压变化小。本文还介绍了有关从各种RF信号中获取能量以为商用现成无线传感器节点供电的能量收集系统的应用数据。

著录项

  • 作者

    Wang, Chao.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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