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Bit error rate analysis of Wi-Fi and bluetooth under the interference of 2.45 GHz RFID

机译:2.45 GHz RFID干扰下Wi-Fi和蓝牙的误码率分析

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摘要

IEEE 802.11b WLAN (Wi-Fi) and IEEE 802.15.1 WPAN (bluetooth) are prevalent nowadays, and radio frequency identification (RFID) is an emerging technology which has wider applications. 802.11b occupies unlicensed industrial, scientific and medical (ISM) band (2.4 .2.483 5 GHz) and uses direct sequence spread spectrum (DSSS) to alleviate the narrow band interference and fading. Bluetooth is also one user of ISM band and adopts frequency hopping spread spectrum (FHSS) to avoid the mutual interference. RFID can operate on multiple frequency bands, such as 135 KHz, 13.56 MHz and 2.45 GHz. When 2.45 GHz RFID device, which uses FHSS, collocates with 802.11b or bluetooth, the mutual interference is inevitable. Although DSSS and FHSS are applied to mitigate the interference, their performance degradation may be very significant. Therefore, in this article, the impact of 2.45 GHz RFID on 802.11b and bluetooth is investigated. Bit error rate (BER) of 802.11b and bluetooth are analyzed by establishing a mathematical model, and the simulation results are compared with the theoretical analysis to justify this mathematical model.
机译:如今,IEEE 802.11b WLAN(Wi-Fi)和IEEE 802.15.1 WPAN(蓝牙)非常流行,射频识别(RFID)是一种新兴的技术,具有更广泛的应用。 802.11b占用了未经许可的工业,科学和医学(ISM)频段(2.4 .2.483 5 GHz),并使用直接序列扩频(DSSS)来缓解窄带干扰和衰落。蓝牙也是ISM频段的一个用户,并采用跳频扩频(FHSS)来避免相互干扰。 RFID可以在135 KHz,13.56 MHz和2.45 GHz等多个频带上运行。当使用FHSS的2.45 GHz RFID设备与802.11b或蓝牙并置时,相互干扰是不可避免的。尽管将DSSS和FHSS应用于减轻干扰,但是它们的性能下降可能非常显着。因此,在本文中,研究了2.45 GHz RFID对802.11b和蓝牙的影响。通过建立数学模型来分析802.11b和蓝牙的误码率(BER),并将仿真结果与理论分析进行比较,以证明该数学模型的合理性。

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