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Lifetime Extension of Higher Class UHF RFID Tags using special Power Management Techniques and Energy Harvesting Devices

机译:使用特殊电源管理技术和能量收集设备延长高级UHF RFID标签的寿命

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摘要

Enhanced RFID tag technology especially in the UHF frequency range provides extended functionality like high operating range and sensing and monitoring capabilities. Such functionality requiring extended system structures including data acquisition units, real time clocks and active transmitters causes a high energy consumption of the tag and requires an on board energy store (battery). As a key parameter of the reliability of an RFID system is the lifetime, the energy budget of the higher class tag has to be as balanced as possible. This can be achieved by using energy harvesting devices as additional power supply. The PowerTag project and thus this paper proposes special power management mechanisms in combination with special energy storage structures interfacing energy harvesting devices and dealing with their special requirements. First various power management and power saving techniques are simulated and their performance is evaluated. In a second step different implementation variants of energy storage structures are compared by using accurate simulation models of the various parts of the system. The results are compared to manufacturer given and guaranteed system performance parameters of a state-of-the-art higher class UHF RFID system. The presented approach combines two simulations for the design and the evaluation of different tag architectures and power saving techniques. Simulation results are showing an improvement of over 44% of achievable lifetime applying the power saving techniques and power subsystem architectures presented in this paper, compared to a state-of-the-art higher class system.
机译:增强的RFID标签技术,特别是在UHF频率范围内,提供了扩展功能,例如高工作范围以及感应和监视功能。此类功能需要扩展的系统结构,包括数据采集单元,实时时钟和有源发射器,会导致标签消耗大量能量,并需要板载储能器(电池)。由于RFID系统的可靠性的关键参数是使用寿命,因此,高级标签的能量预算必须尽可能平衡。这可以通过使用能量收集设备作为附加电源来实现。 PowerTag项目,因此,本文提出了特殊的电源管理机制,以及与能量收集设备连接并满足其特殊要求的特殊储能结构。首先,对各种电源管理和节电技术进行仿真,并对它们的性能进行评估。在第二步骤中,通过使用系统各个部分的精确仿真模型来比较能量存储结构的不同实现方式。将结果与制造商给定的和保证的,最先进的高级UHF RFID系统的系统性能参数进行比较。提出的方法结合了两种模拟,以设计和评估不同的标签架构和省电技术。与最新的高级系统相比,仿真结果表明,采用本文介绍的节能技术和电源子系统架构,可以将使用寿命延长44%以上。

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