Coexistence optimization of wireless PAN automation systems

K. Ahmad, U. Meier
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引用次数: 6

Abstract

Wireless technologies are being envisioned for industrial automation after their success in consumer electronics. Many wireless technologies are available today, where most important are IEEE 802.11 a/b/g for WLAN, and IEEE 802.15 for WPAN standards. Despite the advantages a single wireless technology might offer in an automation system, it will be often required to run multiple WLAN/WPAN networks in parallel in different or overlapping regions of the plant. Most of these technologies are working in the 2.4 GHz ISM band which is unlicensed and available all over the world. Because of this fact, it can be expected that all these technologies will interfere with each other. Thus the coexistence of multiple networks needs to be investigated and some parameters should be adjusted to optimize reliability and security of these technologies. We suggest an easy-to-use coexistence measurement test site and investigated the coexistence properties of WPAN systems like Bluetooth IEEE 802.15.1, ZigBee IEEE 802.15.4, IEEE 802.15.4a based CSS, and narrowband FSK and suggest optimal parameter settings.
无线PAN自动化系统的共存优化
无线技术在消费电子领域取得成功后,人们正设想将其用于工业自动化。今天有许多无线技术可用,其中最重要的是用于WLAN的IEEE 802.11 a/b/g和用于WPAN的IEEE 802.15标准。尽管单一无线技术可能在自动化系统中提供优势,但通常需要在工厂的不同或重叠区域并行运行多个WLAN/WPAN网络。这些技术中的大多数都在2.4 GHz ISM频段工作,该频段无需许可,可以在全球范围内使用。由于这一事实,可以预期所有这些技术将相互干扰。因此,需要研究多网络共存的问题,并调整一些参数以优化这些技术的可靠性和安全性。我们建议了一个易于使用的共存测量测试站点,并研究了蓝牙IEEE 802.15.1、ZigBee IEEE 802.15.4、基于IEEE 802.15.a的CSS和窄带FSK等WPAN系统的共存特性,并提出了最佳参数设置。
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