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Comparison of Duty Cycle Measurement Techniques of 802.11b/g in the Frequency and Time Domain

机译:802.11b/g占空比频域和时域测量技术的比较

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摘要

Medical device manufacturers are evermore including wireless communication in their medical devices. Because most utilize common wireless standards such as ZigBee and Bluetooth that operate in the unlicensed 2.4 GHz industrial, scientific, and medical (ISM) band, the Food and Drug Administration (FDA) is asking medical device manufacturers to test for wireless coexistence. Coexistence among wireless devices is dependent on three factors, namely frequency, space, and time. Specific to time, the probability of coexistence in the 2.4 GHz ISM depends on channel occupancy (or duty cycle) of the interfering wireless network--the main source being WiFi (802.11b/g) for ZigBee and Bluetooth. This paper reports on the implementation of two duty-cycle measurement systems for 802.11b/g utilizing a National Instruments 5663E vector signal analyzer. Measurement techniques were designed in the frequency and time domain, and then compared. Simulations of 802.11b/g duty cycles were also executed and compared with experimental measurements.
机译:医疗设备制造商越来越多地在医疗设备中使用无线通信。由于大多数使用的是在未经许可的2.4 GHz工业、科学和医疗(ISM)频段运行的常见无线标准,如ZigBee和蓝牙,食品和药物管理局(FDA)要求医疗设备制造商测试无线共存性。无线设备之间的共存取决于三个因素,即频率、空间和时间。具体到时间,2.4 GHz ISM中共存的概率取决于干扰无线网络的信道占用率(或占空比)——主要来源是ZigBee和蓝牙的WiFi(802.11b/g)。本文报告了利用国家仪器5663E矢量信号分析仪实现802.11b/g的两个占空比测量系统。在频域和时域设计了测量技术,并进行了比较。还对802.11b/g占空比进行了模拟,并与实验测量结果进行了比较。

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