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EM- and piezo-scavengers: Two useful solutions in highly humanized scenarios toward a 'greener world'

机译:EM和压电清除剂:在高度人性化的方案中向“绿色世界”迈进的两个有用的解决方案

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摘要

This contribution discusses different aspects related to EM- and piezo-scavengers from ambient energy that are very promising as power suppliers of the latest evolution of ultra-low power electronic systems. First challenges in designing circuits and systems for microwave ambient energy harvesting are discussed. A design flow, including the RF/Microwave receivers and the base-band conversion blocks is presented. Power densities as low as few μW/cm2 are targeted as realistic sources to be scavenged by a highly efficient multi-band resonant rectenna. Predicted and measured results in stationary regime are presented and the measured converted energy is also assessed. Second, a conventional piezoelectric scavenger is tested as a power source of a nomadic RFID-reader adopted for novel localization system approach. The latter is intended as an example of multidisciplinary (RFID-NFC, ultra-low power systems, short range wireless power transfer, organic technologies and so on), fully autonomous (energy scavenger on board, battery-less), wirelessly empowered (multitude of passive tags is energized by autonomous reader), evolutionary electronic system toward a “greener world”.
机译:本贡献讨论了与环境能量中的EM和压电清除剂有关的不同方面,这些方面非常有希望成为超低功耗电子系统最新发展的电源供应商。讨论了设计用于微波环境能量收集的电路和系统的第一个挑战。给出了包括RF /微波接收器和基带转换模块的设计流程。功率密度低至只有μW/ cm 2 的目标是通过高效的多频带谐振整流天线来消除的实际信号源。给出了稳态下的预测和测量结果,还评估了测量的转换能量。其次,测试了传统的压电清除剂,将其用作新型定位系统方法所采用的游牧RFID阅读器的电源。后者旨在作为多学科(RFID-NFC,超低功率系统,短距离无线功率传输,有机技术等),完全自主(板载能量清除器,无电池),无线授权(众多)的示例自主阅读器为无源标签供电),向“绿色世界”演进的电子系统。

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