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A bit-error based capture model for EPCglobal RFID systems

机译:EPCglobal RFID系统的基于误码的捕获模型

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The tag inventory process in systems according to the EPCglobal UHF RFID Air Interface Protocol is based on framed slotted ALOHA (FSA). For FSA, the well-known maximum throughput of 0.37 is reached when the number of allocated slots is equal to the number of contending tags. These values do not hold when captures happen in the system, i.e. when information can be recovered from collision slots. In this work, we propose a new capture model that allows us to calculate the capture probability in a noisy channel, depending on the occupation number of a slot. We will apply the model to AWGN, as well as fading channels, and show the expected capture probabilities for these cases. We will further show how the proposed model can be used to estimate the throughput improvement in a system when forward error correction is employed during the tag inventory.
机译:根据EPCglobal UHF RFID空中接口协议的系统中的标签清单过程基于带框的开槽ALOHA(FSA)。对于FSA,当分配的插槽数等于竞争标签数时,达到了众所周知的最大吞吐量0.37。当系统中发生捕获时,即何时可以从冲突插槽中恢复信息时,这些值将不成立。在这项工作中,我们提出了一个新的捕获模型,该模型允许我们根据时隙的占用数量来计算在嘈杂信道中的捕获概率。我们将模型应用于AWGN以及衰落信道,并显示出这些情况下的预期捕获概率。我们将进一步展示当在标签清单中采用前向纠错时,所提出的模型如何用于估计系统中的吞吐量提高。

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