遮蔽条件下亚太赫兹系统的覆盖改进

Q4 Engineering
Werner Mohr
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引用次数: 0

摘要

毫米波和亚太赫兹域中的无线电传播受到阴影条件的严重影响。在没有使用任何附加技术手段的情况下,通信链路被阻断。可以通过使用反射器、RIS阵列和中继器在角落或障碍物周围引导无线电波来提高覆盖率。这些概念显示了影响其网络部署的不同性能和复杂性级别。本文研究了可实现的无线电距离或接收功率,以比较在现实传播条件下的具体部署概念。总的来说,与反射器或RIS阵列相比,中继器解决方案提供了最大的无线电范围或最低的必要总发射功率,因此是最可持续的方法。RIS阵列需要额外的集中信号处理能力来计算优化的RIS设置,并导致最高级别的网络部署复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coverage Improvements for Sub-Terahertz Systems Under Shadowing Conditions
Radio propagation in the millimeter wave and sub-terahertz domain is heavily affected by shadowing conditions. The communication link is blocked without any additional technical means being used. Coverage improvements can be provided by using reflectors, RIS arrays, and repeaters to direct radio waves around corners or obstacles. These concepts show different performance and complexity levels affecting their network deployment. This paper investigates the achievable radio range or the received power to compare specific deployment concepts under realistic propagation conditions. Overall, the repeater solution provides either the largest radio range or the lowest necessary total transmit power compared to reflectors or RIS arrays and, thereby, is the most sustainable approach. A RIS array requires an additional centralized signal processing capacity for calculating optimized RIS settings and results in the highest level of network deployment complexity.
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来源期刊
Journal of Telecommunications and Information Technology
Journal of Telecommunications and Information Technology Engineering-Electrical and Electronic Engineering
CiteScore
1.20
自引率
0.00%
发文量
34
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