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首页> 外文期刊>ETRI journal >Conception and Performance Analysis of Efficient CDMA-Based Full-Duplex Anti-collision Scheme
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Conception and Performance Analysis of Efficient CDMA-Based Full-Duplex Anti-collision Scheme

机译:高效的基于CDMA的全双工防冲突方案的概念和性能分析

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摘要

Ultra-high-frequency radio-frequency identification (UHF RFID) is widely applied in different industries. The Frame Slotted ALOHA in EPC C1G2 suffers severe collisions that limit the efficiency of tag recognition. An efficient full-duplex anti-collision scheme is proposed to reduce the rate of collision by coordinating the transmitting process of CDMA UWB uplink and UHF downlink. The relevant mathematical models are built to analyze the performance of the proposed scheme. Through simulation, some important findings are gained. The maximum number of identified tags in one slot is g/e (g is the number of PN codes and e is Euler’s constant) when the number of tags is equal to mg (m is the number of slots). Unlike the Frame Slotted ALOHA, even if the frame size is small and the number of tags is large, there aren’t too many collisions if the number of PN codes is large enough. Our approach with 7-bit Gold codes, 15-bit Gold codes, or 31-bit Gold codes operates 1.4 times, 1.7 times, or 3 times faster than the CDMA Slotted ALOHA, respectively, and 14.5 times, 16.2 times, or 18.5 times faster than the EPC C1 G2 system, respectively. More than 2,000 tags can be processed within 300 ms in our approach.
机译:超高频射频识别(UHF RFID)广泛应用于不同行业。 EPC C1G2中的帧时隙ALOHA遭受严重的冲突,从而限制了标签识别的效率。提出了一种高效的全双工防冲突方案,通过协调CDMA UWB上行链路和UHF下行链路的传输过程来降低冲突率。建立了相关的数学模型来分析所提出方案的性能。通过仿真,获得了一些重要的发现。当标签的数量等于mg(m是插槽的数量)时,一个插槽中已识别的标签的最大数量为g / e(g是PN码的数量,e是欧拉常数)。与帧时隙ALOHA不同,即使帧大小很小且标签数量很大,但如果PN码数量足够大,冲突也不会太多。我们采用7位黄金代码,15位黄金代码或31位黄金代码的方法的运行速度分别比CDMA时隙ALOHA快1.4倍,1.7倍或3倍,分别是14.5倍,16.2倍或18.5倍分别比EPC C1 G2系统快。在我们的方法中,可以在300毫秒内处理超过2,000个标签。

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