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2.4 GHz Inkjet-printed RF Power Harvester on Bulk Cardboard Substrate

机译:散装纸板基板上的2.4 GHz喷墨打印RF功率收集器

摘要

Inkjet-Printing Technology provides the ability of fabricating electronic circuits on different substrates such as: cardboard, wood, kapton and etc. The advantages of this technology are reduction in production cost in comparison to conventional laminate substrates and also being environmentally-friendly circuits which is one of the main goals in any manufacturing field. Having environmentally-friendly and low cost productions are possible by utilizing paper as the substrate and Inkjet-printing as the fabrication technology.In addition, reducing the power consumption in any circuit is an important factor in designing a circuit. In any wireless portable device, usage of battery causes a limitation in application space and decreases the lifetime of devices .Since increasing the lifetime of battery is still infeasible, power harvesting energy is one of the solutions in designing battery-less circuits. Power harvesting is a process by which energy is delivered by scavenging DC power from ambient sources. The ambient sources for power harvesting can be light, temperature, motion and electromagnetic in RF (Radio Frequency) range.Among all these sources, ambient RF energy, in both indoor and outdoor is generally available in all hours at different frequency bands. Hence RF energy harvesting is one the most popular type of power harvesting. The ambient RF sources are: Wi-Fi transceivers,AM/FM radio, television broadcasting, mobile networks and communication devices.In this Project, experimental investigations on the inkjet-printed RF power harvester for 2.4GHz are presented. An one stage discrete rectifier based on a voltage doubler structure and a planar monopole antenna are fabricated on cardboard using inkjet printing.The performance of the whole system is examined by measuring the output voltage of the RF power harvester. By the utilization of the proposed idea, the fabrication of low cost Environmental-friendly battery-less wireless modules is conceivable
机译:喷墨打印技术提供了在不同的基材上制造电子电路的能力,例如:纸板,木材,棉布等。与传统的层压基材相比,该技术的优势在于降低了生产成本,并且是环保的电路,任何制造业领域的主要目标之一。通过以纸张为基材,以喷墨打印为制造技术,可以实现环保且低成本的生产。此外,减少任何电路的功耗也是设计电路的重要因素。在任何无线便携式设备中,电池的使用都会限制应用空间并缩短设备的使用寿命。由于仍然无法延长电池的使用寿命,因此,收集能量是设计无电池电路的解决方案之一。功率收集是一个过程,通过该过程通过清除来自周围环境的直流电来传递能量。功率收集的环境源可以是射频(RF)范围内的光,温度,运动和电磁波。在所有这些源中,室内和室外的环境RF能量通常可在所有小时的不同频段上获得。因此,RF能量收集是最流行的功率收集类型之一。周围的射频源是:Wi-Fi收发器,AM / FM广播,电视广播,移动网络和通信设备。在本项目中,将对2.4GHz的喷墨打印射频功率采集器进行实验研究。在纸板上采用喷墨打印技术制造了基于倍压器结构的单级离散整流器和平面单极天线。通过测量射频功率采集器的输出电压来检查整个系统的性能。通过利用所提出的想法,可以想到制造低成本的环保无电池无线模块。

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    Khonsari Zahra;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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