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Autonomous sensor-transponder RFID with supply energy conditioning for object navigation systems

机译:自主传感器-应答器RFID,为目标导航系统提供能量调节

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The properties of energy conditioning electrical circuits that are developed for powering additional functional blocks of autonomous RFID transponders working in the HF band have been analyzed and presented in the paper. The concept of autonomy is realized by implementing extra functions in the typical transponder. First of all, the autonomous system should harvest energy, e.g. from the electromagnetic field of read/write devices but also the possibility of gathering information about environment should be available, e.g. by measuring different kind of physical quantities. In such an electrical device, the crucial problem consists in energy conditioning because the output voltage-current characteristic of an front-end (antenna with matching and harvesting circuit) as well as the total and instantaneous power load generated by internal circuits are strongly dependent on a realized function but also on energy and communication conditions in the RFID interface. The properly designed solution should improve harvesting efficiency, current leakage of supply storage, matching between antenna and input circuits, in order to save energy and increase operating time in such a battery-free system. The authors present methods how to increase the autonomous operation time even at advanced measuring algorithms. The measuring system with wide spectrum of sensors dedicated for different quantities (physical, chemical, etc.) has also been presented. The results of model calculations and experimental verifications have been also discussed on the basis of investigations conducted in the unique laboratory stand of object navigation systems.
机译:本文分析并介绍了用于为在HF频段工作的自主RFID应答器的附加功能模块供电的能量调节电路的特性。自治的概念是通过在典型的应答器中实现额外的功能来实现的。首先,自治系统应该收集能量,例如可以从读/写设备的电磁场中获得,但也应该有收集有关环境信息的可能性,例如通过测量不同种类的物理量。在这样的电气设备中,关键问题在于能量调节,因为前端(具有匹配和采集电路的天线)的输出电压-电流特性以及内部电路产生的总和瞬时功率负载在很大程度上取决于已实现的功能,还取决于RFID接口中的能量和通讯条件。正确设计的解决方案应提高采集效率,电源存储的电流泄漏,天线与输入电路之间的匹配,以节省能源并增加这种无电池系统的工作时间。作者提出了即使在高级测量算法下也如何增加自主操作时间的方法。还提出了具有专用于不同数量(物理,化学等)的多种传感器的测量系统。在对象导航系统的独特实验室中进行的调查基础上,还讨论了模型计算和实验验证的结果。

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