首页> 外文会议>IEEE MTT-S Microwave Workshop Series on Innovative Wireless Power Transmission >EM- and piezo-scavengers: Two useful solutions in highly humanized scenarios toward a #x0022;greener world#x0022;
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EM- and piezo-scavengers: Two useful solutions in highly humanized scenarios toward a #x0022;greener world#x0022;

机译:em-和piezo-scavengers:两个有用的解决方案在高度人性化场景朝着一个"更环保的世界"

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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:这一贡献讨论了与环境能量相关的不同方面,这些方面是非常有前途的超低电力电子系统的最新演进的电力供应商。讨论了用于微波环境能量收集电路和系统的第一次挑战。提出了一种设计流,包括RF /微波接收器和基带转换块。电源密度低至少数μ w / cm 2 作为现实来源被定向,以便通过高效的多频带谐振矩形冷却。提出了静止制度的预测和测量结果,并评估了测量的转换能量。其次,将传统的压电清除剂作为用于新颖的定位系统方法采用的游牧射频读取器的电源。后者旨在作为多学科(RFID-NFC,超低电源系统,短程无线电力传输,有机技术等)的示例,完全自主(船上的能源清除能量),无线赋权(众多被动标签由自治读者通电),进化电子系统朝着A“更环保世界”

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