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Energy harvesting wireless sensor for achieving self-powered structural health monitoring system

机译:用于实现自动结构健康监测系统的能量收集无线传感器

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PurposeOn average, a medium-sized satellite consist of almost 500 sensors where powering these sensors in space in such an unreachable environment is critical. Backing this, a compact energy harvester for powering up distant sensors is discussed here is the purpose of this paper. This is in line with the geostationary satellite-powered using the available electromagnetic energy on the satellite panels in space.Design/methodology/approachThe designed rectenna makes use of a compact wideband receiving antenna operating at the targeted frequency band from 8 to 18 GHz. It also consists of a simple dual diode rectifier topology with a matching circuit, bandpass filter and a resistive load to convert the received radio frequency energy into usable direct current (DC) voltage.FindingsThe rectenna measurement is performed using three different configuration setups. This shows that a maximum DC voltage of 1.8 V and 5-10 mV is harvested from rectifier and rectenna (includes antenna and rectifier) when 20 dBm power is transmitted from the transmitting antenna operating at X and Ku band. This makes the rectenna feasible to power wireless sensors in a structural health monitoring system.Originality/valueThe measurements are performed by considering a real-time environment in space in terms of the distance between the transmitting and receiving antenna, which depends on the far-field of the transmitting antenna in a satellite.
机译:初始卫星平均值由几乎500个传感器组成,其中在这种无法到达环境中为这些传感器供电至关重要。备份这一点,这里讨论了用于加电远处传感器的紧凑型能量收割机是本文的目的。这符合使用Space.Design/Methodology/ApproChodology/Approach的可用电磁能量的地静止卫星供电。设计的Endenna利用在8到18 GHz的目标频带上运行的紧凑宽带接收天线。它还包括一个简单的双流二极管整流器拓扑,带有匹配电路,带通滤波器和电阻负载,以将接收的射频能量转换为可用的直流电流(DC)电压。使用三种不同的配置设置来执行Findingsthe intenna测量。这表明,当从在X和Ku带操作的发射天线发送20dbm电源时,从整流器和固定器(包括​​天线和整流器)收获1.8V和5-10mV的最大直流电压。这使得在结构健康监测系统中的电力无线传感器的矩形是可行的。通过在传输和接收天线之间的距离方面考虑空间的实时环境来执行viemity / valueSete测量,这取决于远场在卫星中的透射天线。

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