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首页> 外文期刊>Egyptian Informatics Journal >Energy aware improved least and most significant bit arbitration algorithm for WORM tags
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Energy aware improved least and most significant bit arbitration algorithm for WORM tags

机译:节能的WORM标签的改进的最低和最高有效位仲裁算法

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Passive Radio Frequency Identification systems have gained enormous attention and popularity especially after its adoption in time and data critical systems. Theoretically, these systems have the potential to read over 100 tags per second in applications which are well insulated from RF noise. Nevertheless, this may not be the case in practical systems, as tag collision is one of the major deterrents affecting the recognition rate. This paper exhaustively analyses the existing probabilistic, deterministic and hybrid algorithms on collision resolutions. In probabilistic algorithms, tags send their entire ID to the RFID reader in respective slots while tags in deterministic algorithms respond bit by bit based on the RFID reader’s query. To minimize identification delay, tag communication overhead and high energy consumption, a new energy efficient collision resolution strategy named Improved Least and Most Significant Bit Algorithm (LaMSBA) is introduced to effectively singulate a tag and increase the identification efficiency in changing tag population even when the bits in tag ID’s are randomly or uniformly distributed. Extensive simulation studies show that LaMSBA can be chosen as better alternatives for dense time and data critical RFID enabled systems. In addition, M/G/1 Queuing model is suitably identified and the the analytical results concluded that LaMSBA is able to maintain the steady state condition even when Class 1 tags arrive at the rate of 15 tags/second in the reader’s interrogation zone.
机译:无源射频识别系统已经得到了广泛的关注和普及,尤其是在时间和数据关键系统中得到采用之后。从理论上讲,这些系统在与射频噪声隔离良好的应用中,每秒可能读取超过100个标签。然而,在实际系统中可能并非如此,因为标签冲突是影响识别率的主要威慑因素之一。本文详尽地分析了现有的概率,确定性和混合算法的碰撞解决方案。在概率算法中,标签将其整个ID发送到相应插槽中的RFID阅读器,而确定性算法中的标签则根据RFID阅读器的查询一点一点地响应。为了最大程度地减少识别延迟,标签通信开销和高能耗,引入了一种新的高能效冲突解决策略,称为“改进的最低和最高有效位算法”(LaMSBA),可以有效地分离标签并提高更改标签数量时的识别效率。标签ID中的位是随机分布还是均匀分布。大量的仿真研究表明,对于密集时间和对数据有严格要求的RFID系统,可以选择LaMSBA作为更好的选择。此外,可以正确识别M / G / 1排队模型,分析结果得出结论,即使在阅读器的询问区域中,第1类标签以15个标签/秒的速率到达时,LaMSBA仍能够保持稳态条件。

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