一种用于无线传感器节点功率最小化的2.4 GHz无源唤醒电路

C. Shekhar, S. Varma, M. Radhakrishna
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引用次数: 4

摘要

传感器节点(SN)的功耗是一个关键问题。一个SN在几天内就能耗尽1500毫安时的中等功率电池(AA),而无线传感器网络应用的电力需求是几年。因此一个重要的问题是:“如何延长网络的生命周期?”本文提出了一种无源唤醒电路(PWUC)的原型,以最大限度地减少SNs在空闲收听模式下的功耗。PWUC由天线、阻抗匹配电路和整流器组成。很少有作者提出了PWUCs,它们大多数在欧洲频段(如868 MHz)运行,这些不能部署在印度的开放频段。所设计的PWUC按照印度频谱规则工作,在- 19dbm的输入功率下,输出功率为3.2 μW(输出电压1.8 V,输出电流1.8 μA)。这相当于25%的转换效率。整流器采用UMC 0.18 μm CMOS工艺,匹配电路采用标准的现成元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 2.4 GHz passive wake-up circuit for power minimization in wireless sensor nodes
Power consumption of the sensor node (SN) is a critical issue. A SN drains-out its moderately powerful batteries (AA) of 1500 mAh in just a few days, while the power requirement of wireless sensor network applications is of the order of few years. So an important question is: “how to prolong the network lifetime?”. This article presents a prototype of passive wake-up circuit (PWUC) to minimize the power consumption by the SNs during the idle listening mode. The PWUC consists of an antenna, impedance matching circuitry and rectifier. Very few authors have proposed the PWUCs and most of them operate in European frequency bands (like 868 MHz) and these cannot be deployed in the Indian context of open band. The designed PWUC operates as per Indian frequency spectrum regulations and provides an output power of 3.2 μW (output voltage: 1.8 V & output current: 1.8 μA) for an input power of -19 dBm. This amounts to conversion efficiency of 25 %. The UMC 0.18 μm CMOS process is used to realize Rectifier, while standard off-the-shelf components are used to realize matching circuitry.
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