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SmartHat: A battery-free worker safety device employing passive UHF RFID technology

机译:Smarthat:一种无电池的工人安全装置,采用被动UHF RFID技术

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In many safety-critical applications, battery performance is a significant limiting factor that affects the feasibility of electronic safety devices intended to alert workers to hazardous situations. In particular, battery capacity and lifetime are difficult to predict when safety devices are exposed to extremes of temperature, humidity, shock, and vibration that are common in construction, excavation, drill rigs, and mining work sites. Because battery failure is unacceptable in safety devices, periodic preventative maintenance is required, adding to device cost and labor cost and reducing acceptance of electronic safety devices. Energy harvesting and communications techniques based on passive UHF RFID technology may offer an alternative to battery power for some types of safety alert devices, particularly where hazardous conditions are created by powered heavy equipment. We present a worker safety device designed around a passive UHF RFID platform that derives its operating power from specialized interrogators mounted on heavy equipment. This device is designed to be integrated with plastic hard hats that are commonly used in the construction industry to yield an intelligent hard hat, called a “SmartHat”, that delivers an audible alert directly to workers in proximity to a particular piece of equipment. It is addressible using an ASK interrogator-to-tag link, and backscatters confirmation that an alert has been delivered to the worker. We present the design of the SmartHat tag, including a compact printed-circuit vee style antenna, an RF-to-DC power harvesting circuit, and a microprocessor-driven alert speaker. The tag's average operating power while delivering a pulsed alert is 1.8V at 61μA, or 110μW (−9.6 dBm). Its power-up threshold when not delivering an alert is 1.8 V at ≈ 10μA. We also present a specialized interrogator device operating under FCC Part 18 rules in the 902–928 MHz band that is mou- - nted to a piece of construction equipment to power and communicate with nearby SmartHats. In outdoor testing of the SmartHat tag and its companion interrogator device, +35 dBm transmitter output power feeding a 9dBi Yagi antenna (+44 dBm EIRP) allows for safety alerts to be delivered at distances of up to 16.46 m.
机译:在许多安全关键型应用,电池的性能是影响的旨在提醒工人危险情况的电子安全装置的可行性显著限制因素。特别是,电池容量和寿命是困难时的安全装置被暴露于在结构上,挖掘,钻机,和采矿工地常见的温度,湿度,冲击,振动和极端的预测。因为电池故障是在安全装置是不可接受的,周期性的预防性维护要求,增加了设备成本和劳动成本,减少接受的电子安全装置。基于无源UHF RFID技术能量收集和通信技术可以提供到电池电源替代一些类型的安全警示装置,特别是由动力重型设备创建的危险情况。我们提出围绕一个无源UHF RFID平台,获得其工作功率从专业的审讯安装在重型设备设计了一个工人的安全装置。该设备被设计为是常规建筑行业使用,以获得一个智能安全帽塑料安全帽被整合,被称为“SmartHat”,即在接近直接将声音警报工人到特定的设备。它采用ASK读写器到标签的链接,并反向散射确认警报已交付给工人寻址。我们目前的SmartHat标签的设计,包括一个紧凑的印刷电路VEE式天线,RF到DC电力收获电路,和一个微处理器驱动警报扬声器。标签的同时输送脉冲警报平均运行功率为1.8V,在61μA,或110μW(-9.6 dBm的)。它在不递送预警开机阈值是≈10μA1.8 V。我们还提出了一种专门的询问器设备的操作下FCC第18条部分规定在902-928 MHz频带即mou- - nted一块施工设备的电源和与附近SmartHats通信。在SmartHat标签和它的同伴询问器设备的室外测试,35 dBm的发射机输出功率供给9dBi八木天线(44 dBm的EIRP)允许以高达的距离被输送到16.46米安全警报。

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