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The Design, by Physical Topology Optimizing, of a Passive UHF RFID Identification System: Suitable for Applications with Various Constraints

机译:通过物理拓扑优化的无源UHF RFID识别系统设计:适用于各种约束条件的应用

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RFID technology is booming. It catches the attention of several researchers. This technology uses the radio wave to identify objects on which an RFID tag is placed. RFID has a lot of advantages, but it also has limitations. Its limits are its sensitivity to liquids, metals and speed.We design an objects identification system by radio frequency that works in different RFID technology application environments, based on passive UHF RFID technology and through the physical topology optimization in real time too. This system is also adapted to various constraints, in order to solve overcome difficulties, related to various applications, at once, and operates, without any problem, in different fields.We use the simulated annealing algorithm to find the optimal physical topology that has the highest average reading rate. RFID antennas are installed on brackets, attached to a tripod system by servo motors. These servo motors are controlled by the middleware, where the simulated annealing optimization algorithm is already implemented, to vary the angles of the detection connectors in an automated way, in order to find the optimal topology. So the optimization process will be guided by an optimization algorithm and not by trial and error processes. Tripod mechanical systems are movable media for antennas to play on XYZ dimensions too.The design of the mechanical system and the choice of materials were made. The first results, such as the identity of each detected object and the identity of each antenna that will detect an object, are here. Following reached results will be shared in several next publications.
机译:RFID技术正在蓬勃发展。它引起了一些研究人员的注意。这项技术使用无线电波来识别放置RFID标签的物体。 RFID具有很多优点,但也有其局限性。它的局限性在于它对液体,金属和速度的敏感性。我们基于无源UHF RFID技术并通过实时物理拓扑优化,设计了一种在不同RFID技术应用环境中工作的射频对象识别系统。该系统还适用于各种约束条件,以便立即解决与各种应用相关的克服困难,并且可以在不同领域中毫无问题地运行。我们使用模拟退火算法来找到具有以下特征的最优物理拓扑:平均阅读率最高。 RFID天线安装在支架上,并通过伺服电机连接到三脚架系统。这些伺服电动机由中间件控制,该中间件已在其中实现了模拟退火优化算法,以自动方式改变检测连接器的角度,以便找到最佳拓扑。因此,优化过程将以优化算法为指导,而不是反复试验过程。三脚架机械系统也是天线可移动介质,可以在XYZ尺寸上播放。这里是第一个结果,例如每个检测到的物体的身份以及将检测到一个物体的每个天线的身份。达到的结果将在接下来的几个出版物中分享。

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