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Performance evaluation of UHF RFID technologies for real-time passenger tracking in intelligent public transportation systems

机译:UHF RFID技术对智能公共交通系统实时乘客跟踪的绩效评估

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Passenger counting is an important task for intelligent public transportation system’s planning and operation. However, traditional counting systems can’t identify individual passengers. The access to this additional capacity would allow collecting historical statistics on each passenger’s transportation needs, hence enabling a substantially enhanced optimization in these systems. With this purpose, this work proposes a passenger counting and identification method through Radio Frequency Identification Technologies (RFID). Forty individuals are involved in measurements carrying EPC Gen2 tags in their backpacks, wallets, pocket and hand, passing through a portal with a similar size as a bus door. Conditions of one and two rows of persons walking through the portal are evaluated. This portal is equipped with 4 reading antennas. Cards that have a single EPC Gen2 tag and cards with both a Mifare and a UHF EPC Gen2 tag are used. Card reading statistics for all the combinations of 1, 2, 3 and 4 antennas are presented in this paper. The passenger detection percentage at the portal with two properly located antennas has an average of 82% for dual-band cards and 91% for single-band cards. When four antennas are used, there is an additional increase of 2% in the detection percentage for both types of cards.
机译:乘客计数是智能公交系统的规划和运作的一项重要任务。然而,传统的计数系统不能识别个别乘客。该附加容量的接入将允许在每个乘客的运输需要收集历史统计数据,从而使在这些系统基本上增强优化。有了这个目的,这项工作提出了通过无线射频识别技术(RFID)的乘客计数和识别方法。四十个人参与开展EPC Gen2标签在他们的背包,钱包,口袋和手工测量,通过门户路过的大小作为一个车门相似。通过门户网站走的人之一,两行的条件进行评估。该门户网站配备了4个读取天线。使用具有单一的EPC Gen2标签和一个带的Mifare和UHF的EPC Gen2标签卡牌。读卡统计的1,2,3和4个天线的所有组合都在本文提出。在两个正确定位天线门的乘客发现率有双频卡单带卡的平均的82%和91%。当使用四个天线,有2%的在两种类型的卡检测百分比的额外增加。

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