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Coexistence of IEEE 802.11b and Bluetooth: An Integrated Performance Analysis

机译:IEEE 802.11b和蓝牙的共存:集成的性能分析

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摘要

IEEE 802.11b wireless networks and Bluetooth networks provide complimentary services using the same unlicensed radio frequency band. As the benefits of utilizing these services become increasingly apparent, the likelihood of mutual interference also increases. The well-known frequency hopping algorithm and adaptive frequency hopping algorithm do not fully consider the interference level of the operating environment. In this paper an algorithm called interference-aware adaptive frequency hopping (IAFH) is presented and implemented on Bluetooth devices to mitigate the interference between IEEE 802.11b and Bluetooth wireless networks. An analytical model of IAFH is developed to evaluate the performance of 802.11b stations and Bluetooth devices in a mutual interference environment. The analysis comprises the collision probability, packet error rate, and throughput performance for both IEEE 802.11b and Bluetooth wireless networks. Simulation results confirm that 802.11b station and IAFH-enabled Bluetooth devices experience lower packet error rates and better throughput as compared to the frequency hopping and adaptive frequency hopping algorithms.
机译:IEEE 802.11b无线网络和蓝牙网络使用相同的未许可无线电频段提供免费服务。随着利用这些服务的好处越来越明显,相互干扰的可能性也增加了。众所周知的跳频算法和自适应跳频算法没有充分考虑操作环境的干扰水平。本文提出了一种称为干扰感知自适应跳频(IAFH)的算法,并在蓝牙设备上实现了该算法,以减轻IEEE 802.11b与蓝牙无线网络之间的干扰。开发了IAFH的分析模型,以评估相互干扰环境下802.11b站和蓝牙设备的性能。该分析包括IEEE 802.11b和Bluetooth无线网络的冲突概率,数据包错误率和吞吐性能。仿真结果证实,与跳频和自适应跳频算法相比,802.11b站和支持IAFH的蓝牙设备具有更低的分组错误率和更高的吞吐量。

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