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Dynamic channel selection in wireless communications via a multi-armed bandit algorithm using laser chaos time series

机译:使用激光混沌时间序列的多武装强盗算法在无线通信中的动态信道选择

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Dynamic channel selection is among the most important wireless communication elements in dynamically changing electromagnetic environments wherein, a user can experience improved communication quality by choosing a better channel. Multi-armed bandit (MAB) algorithms are a promising approach that resolve the trade-off between channel exploration and exploitation of enhanced communication quality. Ultrafast solution of MAB problems has been demonstrated by utilizing chaotically oscillating time series generated by semiconductor lasers. In this study, we experimentally demonstrate a MAB algorithm incorporating laser chaos time series in a wireless local area network (WLAN). Autonomous and adaptive dynamic channel selection is successfully demonstrated in an IEEE802.11a-based, four-channel WLAN. Although the laser chaos time series is arranged prior to the WLAN experiments, the results confirm the usefulness of ultrafast chaotic sequences for real wireless applications. In addition, we numerically examine the underlying adaptation mechanism of the significantly simplified MAB algorithm implemented in the present study compared with the previously reported chaos-based decision makers. This study provides a first step toward the application of ultrafast chaotic lasers for future high-performance wireless communication networks.
机译:动态信道选择是动态改变电磁环境中最重要的无线通信元件中,其中,用户可以通过选择更好的信道来体验改进的通信质量。多武装强盗(MAB)算法是一种有希望的方法,可以解决渠道探索与增强通信质量开发之间的权衡。通过利用半导体激光器产生的混沌振荡时间序列,已经证明了MAB问题的超快解决方案。在本研究中,我们通过实验证明了一种在无线局域网(WLAN)中的激光混沌时间序列的MAB算法。基于IEEE802.11a的四通道WLAN成功展示了自主和自适应动态通道选择。虽然激光混沌时间序列在WLAN实验之前布置,但结果证实了超快混沌序列对真实无线应用的有用性。此外,与先前报告的基于混乱的决策者相比,我们在数值上检查了本研究中实施的显着简化的MAB算法的基础适应机制。本研究提供了对未来高性能无线通信网络应用超快混沌激光器的第一步。

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