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A 21 m Operation Range RFID Tag for Pick to Light Applications with a Photovoltaic Harvester

机译:一个21米的操作范围RFID标签用于挑选光应用带光伏收割机

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摘要

In this paper, a novel Radio-Frequency Identification (RFID) tag for “pick to light” applications is presented. The proposed tag architecture shows the implementation of a novel voltage limiter and a supply voltage (VDD) monitoring circuit to guarantee a correct operation between the tag and the reader for the “pick to light” application. The feasibility to power the tag with different photovoltaic cells is also analyzed, showing the influence of the illuminance level (lx), type of source light (fluorescent, LED or halogen) and type of photovoltaic cell (photodiode or solar cell) on the amount of harvested energy. Measurements show that the photodiodes present a power per unit package area for low illuminance levels (500 lx) of around 0.08 μW/mm2, which is slightly higher than the measured one for a solar cell of 0.06 μW/mm2. However, solar cells present a more compact design for the same absolute harvested power due to the large number of required photodiodes in parallel. Finally, an RFID tag prototype for “pick to light” applications is implemented, showing an operation range of 3.7 m in fully passive mode. This operation range can be significantly increased to 21 m when the tag is powered by a solar cell with an illuminance level as low as 100 lx and a halogen bulb as source light.
机译:本文提出了一种新颖的“挑选光”应用的射频识别(RFID)标签。所提出的标签架构显示了一种新颖的电压限制器和电源电压(VDD)监测电路的实现,以保证标签和读取器之间的正确操作,以便“拾取到光”应用。还分析了用不同光电池供电标签的可行性,显示了照度(LX),源光(荧光,LED或卤素)和光伏电池(光电二极管或太阳能电池)的类型的影响收获的能量。测量结果表明,光电二极管对于大约0.08μW/ mm2的低照度水平(500Lx)提供每单位封装区域的功率,其略高于0.06μw/ mm2的太阳能电池的测量。然而,太阳能电池由于大量的所需光电二极管并联而具有相同的绝对收获功率的更紧凑的设计。最后,实现了“拾取光”应用的RFID标签原型,在完全被动模式下显示了3.7米的操作范围。当标签由太阳能电池供电时,该操作范围可以显着增加到21μm,其照度水平低至100 LX和作为源光的卤素灯。

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