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Comparison of the Self-Piloting Constructive and Destructive Interference in 7 and 23 GHz Band Over the Seawater Surface

机译:对海水表面7和23 GHz带中的自我推迟建设性和破坏性干扰的比较

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Autonomous technology is tremendously evolving modern life and expected to transform the world utterly. Different aspects for ground-air space connection need various frequencies to support the high capacity, tremendous data rate, and unmistakably link connection. The present frequency bands reach their capacity limit and consider below the customer's demands particularly when thinking about the new upcoming technologies such as IoT and Unmanned Aerial Vehicle (UAV) technologies. In this work, we investigate propagation characteristics of the radio channel in 7 and 23 GHz as a part of the new super-high frequency (SHF) band which is expecting to operate for wireless control and particularly above the seawater surface that is considered an unusual environment from the link connection point of view. The two frequency bands were selected based on their utilization in various link budgets to cover the effect of frequency in terms of different wireless conceptual such as constructive and destructive Interference behavior in addition to the vertical and horizontal polarization. The result shows that the 23 GHz is severely affected by the path loss propagation with extremely high variation in constructive and destructive interferences which could be accommodated when using space diversity technology. The scientific approach of the study estimates the potential analysis to overtake the challenges of new era demands.
机译:自主技术是大量的现代生活,预计将完全改变世界。地面空中空间连接的不同方面需要各种频率来支持高容量,巨大的数据速率和明显的链接连接。当前频段达到其容量限制,并考虑以下客户所需的要求,特别是在考虑新的即将到来的技术,如IoT和无人机(UAV)技术。在这项工作中,我们研究了7和23 GHz中的广播通道的传播特性,作为新的超高频率(SHF)频段的一部分,该频带期望用于无线控制,特别是在被认为是一个不寻常的海水表面之上来自链接连接的环境。除了垂直和水平极化之外,基于各种链路预算的利用率基于各种链路预算的利用来选择两个频带,以涵盖不同无线概念的频率的影响,例如垂直和水平极化。结果表明,23 GHz受到在使用空间分集技术时可以适应的建设性和破坏性干扰的极高变化的路径损耗传播严重影响。该研究的科学方法估计潜在的分析,以超越新时代需求的挑战。

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