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A Geometric Distribution Reader Anti-Collision Protocol for RFID Dense Reader Environments

机译:RFID密集阅读器环境中的几何分布阅读器防冲突协议

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Dense passive radio frequency identification (RFID) systems are particularly susceptible to reader collision problems, categorized by reader-to-tag and reader-to-reader collisions. Both may degrade the system performance decreasing the number of identified tags per time unit. Although many proposals have been suggested to avoid or handle these collisions, most of them are not compatible with current standards and regulations, require extra hardware and do not make an efficient use of the network resources. This paper proposes the Geometric Distribution Reader Anti-collision (GDRA), a new centralized scheduler that exploits the Sift geometric probability distribution function to minimize reader collision problems. GDRA provides higher throughput than the state-of-the-art proposals for dense reader environments and, unlike the majority of previous works, GDRA is compliant with the EPCglobal standard and ETSI EN 302 208 regulation, and can be implemented in real RFID systems without extra hardware.
机译:密集的无源射频识别(RFID)系统特别容易受到阅读器碰撞问题的影响,该问题按阅读器与标签的碰撞和阅读器与阅读器的碰撞进行分类。两者都可能降低系统性能,从而降低每个时间单位中已识别标签的数量。尽管已经提出了许多建议来避免或处理这些冲突,但是它们中的大多数与当前的标准和法规不兼容,需要额外的硬件并且不能有效利用网络资源。本文提出了几何分布读取器防冲突(GDRA),这是一种新的集中式调度程序,它利用Sift几何概率分布函数来最大程度地减少读取器冲突问题。 GDRA提供的吞吐量比针对密集阅读器环境的最新建议要高,并且与大多数以前的工作不同,GDRA符合EPCglobal标准和ETSI EN 302 208法规,并且可以在没有RFID的实际RFID系统中实现额外的硬件。

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