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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Circuit and System Designs of Ultra-Low Power Sensor Nodes With Illustration in a Miniaturized GNSS Logger for Position Tracking: Part II—Data Communication, Energy Harvesting, Power Management, and Digital Circuits
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Circuit and System Designs of Ultra-Low Power Sensor Nodes With Illustration in a Miniaturized GNSS Logger for Position Tracking: Part II—Data Communication, Energy Harvesting, Power Management, and Digital Circuits

机译:超低功率传感器节点的电路和系统设计,以及用于位置跟踪的微型GNSS记录器中的插图:第二部分-数据通信,能量收集,电源管理和数字电路

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摘要

This two-part paper reviews recent innovations in circuit design that have accelerated the miniaturization of sensor nodes. In this second part of the paper, we focus on key building blocks of miniaturized sensor nodes, such as data transceivers, energy harvesters, power management units, and digital logic circuits. System level design considerations are also discussed to provide guidelines for the design of a miniaturized system. As an example prototype design, a 2.7-cm global navigation satellite system (GNSS) logger is proposed. This paper includes a die-stacked sensor platform composed of an ARM cortex M0 processor, energy harvester, power management unit, solar cell, optical receiver, sensor layer, and RF transmitter that exploits the discussed design techniques for ultra-low power operation. The GNSS logger can store GNSS signals of >1 k positions on a single battery charging without additional energy harvesting.
机译:这篇由两部分组成的文章回顾了电路设计中的最新创新,这些创新加速了传感器节点的小型化。在本文的第二部分中,我们重点介绍了小型传感器节点的关键构件,例如数据收发器,能量收集器,电源管理单元和数字逻辑电路。还讨论了系统级设计注意事项,以为小型系统的设计提供指导。作为示例原型设计,提出了一个2.7厘米的全球导航卫星系统(GNSS)记录器。本文包括一个由ARM皮质M0处理器,能量收集器,电源管理单元,太阳能电池,光接收器,传感器层和RF发射器组成的管芯堆叠式传感器平台,该平台利用了已讨论的超低功耗操作设计技术。 GNSS记录器可以在一次电池充电中存储> 1 k位置的GNSS信号,而无需额外的能量收集。

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