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Joint UE Location Energy-Efficient Resource Management in Integrated Satellite and Terrestrial Networks

机译:集成卫星和地面网络中的联合UE位置节能资源管理

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摘要

Integrated satellite and terrestrial networksrncan be used to solve communication problems in naturalrndisasters, forestry monitoring and control, and militaryrncommunication. Unlike traditional communication methods,rnintegrated networks are effective solutions because ofrntheir advantages in communication, remote sensing, monitoring,rnnavigation, and all-weather seamless coverage.rnMonitoring, urban management, and other aspects willrnalso have a wide range of applications. This study firstrnbuilds an integrated network overlay model, and dividesrnthe satellite network into two categories: terrestrialrnnetwork end users and satellite network end users. Thernenergy efficiency, throughput, and signal-to-noise ratiorn(SINR) are deduced and analyzed. In this paper, werndiscuss the influence of various factors, such as transmitrnpower, number of users, size of the protected area, andrnterminal position, on energy efficiency and SINR. Arnsatellite-sharing scheme with a combination of the userrnlocation and an exclusion zone with high energy efficiencyrnand anti-jamming capability is proposed to provide betterrncommunication quality for end users in integrated satelliternand terrestrial networks.
机译:集成的卫星和地面网络可用于解决自然灾害,林业监测与控制以及军事通信中的通信问题。与传统的通信方法不同,集成网络是有效的解决方案,因为它们在通信,遥感,监视,导航和全天候无缝覆盖方面具有优势。监视,城市管理等方面也将具有广泛的应用。这项研究首先建立了一个集成的网络覆盖模型,并将卫星网络分为两类:地面网络最终用户和卫星网络最终用户。推导并分析了能效,通量和信噪比(SINR)。在本文中,我们讨论了发射功率,用户数量,保护区大小和终端位置等各种因素对能效和SINR的影响。提出了结合用户配置和高能效与抗干扰能力的禁区的钠闪石共享方案,为综合卫星和地面网络的最终用户提供更好的通信质量。

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