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On adaptive frequency hopping to combat coexistence interference between Bluetooth and IEEE 802.11b with practical resource constraints

机译:在具有实际资源限制的情况下,针对与蓝牙和IEEE 802.11b之间的共存干扰进行自适应跳频

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In contrast to traditional frequency hopping techniques, adaptive frequency hopping (AFH) is a low cost and low power solution to avoid interference dynamically. While each AFH algorithm proposed previously is shown to be efficient, a detailed performance analysis of various AFH mechanisms under realistic resource constraints is yet to be done. In particular, based on our performance study on Bluetooth systems presented in this paper, we have found that the AFH mechanism adopted by IEEE 802.15 task group 2 (TG2) is very sensitive to memory and power limitations. We then propose an interference source oriented adaptive frequency hopping (ISOAFH) approach based on a cross-layer design, in which the baseband layer of Bluetooth considers not only the instantaneous channels condition but also the physical layer transmission characteristics of potential interference sources in determining the hop sequence. In our simulations using detailed MATLAB Simulink modeling, we find that our proposed method is much more robust in that it is insensitive to memory and energy constraints. Indeed, our approach generally achieves a lower collision rate and higher ISM spectrum utilization.
机译:与传统的跳频技术相比,自适应跳频(AFH)是一种低成本,低功耗的解决方案,可以动态避免干扰。虽然先前提出的每种AFH算法都被证明是有效的,但是在实际资源约束下,各种AFH机制的详细性能分析仍待完成。特别是,根据本文对蓝牙系统的性能研究,我们发现IEEE 802.15任务组2(TG2)采用的AFH机制对内存和功率限制非常敏感。然后,我们提出一种基于跨层设计的面向干扰源的自适应跳频(ISOAFH)方法,其中蓝牙的基带层在确定干扰源时不仅考虑瞬时信道条件,还考虑潜在干扰源的物理层传输特性。跳序列。在使用详细的MATLAB Simulink建模进行的仿真中,我们发现我们提出的方法更加健壮,因为它对内存和能量约束不敏感。实际上,我们的方法通常可以实现较低的冲突率和较高的ISM频谱利用率。

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