基于实时天气数据的模糊逻辑自适应毫米波信道切换

IF 2.3 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Abdulmajid Mrebit;Esmail Abuhdima;Jian Liu;Amirhossein Nazeri;Nabeyou Tadessa;Naomi Rolle;Jason Laing;Gurcan Comert;Chin-Tser Huang;Pierluigi Pisu
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引用次数: 0

摘要

毫米波(mmWave)通信系统提供高数据速率,但这些系统极易受到环境因素的影响,特别是雨、灰尘和沙子等天气条件。本文提出了一种提高毫米波通信可靠性的新方法,即采用模糊控制系统(FCS)进行动态信道切换。该系统将降雨率等实时天气测量数据与模糊控制器相结合,在当前大气条件下智能选择衰减最小的最佳信道。模糊控制器通过持续分析环境变化,做出自适应切换决策,以保持信号质量和系统性能。实验和仿真结果表明,结合实际测量数据可显著提高系统对天气变化的响应能力,确保稳定高效的毫米波通信。这项工作为在下一代无线通信网络中实现智能、天气感知信道交换机制提供了一个实用框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Millimeter Wave Channel Switching Based on Real-Time Weather Data Using Fuzzy Logic Control
Millimeter wave (mmWave) communication systems offer high data rates, but these systems are highly susceptible to environmental factors, particularly weather conditions such as rain, dust, and sand. This paper presents a novel approach to enhance the reliability of mmWave communication by implementing a Fuzzy Controller System (FCS) for dynamic channel switching. The proposed system integrates real-time measured weather data, such as rain rate, with the fuzzy logic controller to intelligently select the optimum frequency channel with the least attenuation under current atmospheric conditions. The fuzzy controller makes adaptive switching decisions by continuously analyzing environmental changes to maintain signal quality and system performance. Experimental results and simulations demonstrate that incorporating real measured data significantly improves the system’s ability to respond to weather variability, ensuring stable and efficient mmWave communication. This work provides a practical framework for implementing intelligent, weather-aware channel-switching mechanisms in next-generation wireless communication networks.
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