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An integrated satellite-HAP-terrestrial system architecture: resources allocation and traffic management issues

机译:卫星-HAP地面综合系统架构:资源分配和业务管理问题

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This paper explains the potential role of an integrated satellite-HAP (high altitude platform)-terrestrial system. A simple and suitable architecture is presented. The proposed architecture consists of three layers: the terrestrial layer, HAP layer and GEO layer. The terrestrial layer's terminals, within the same HAP coverage area, have to use a HAP transponder and HAP master control station (HMCS) to send and receive data amongst themselves. Moreover the HAP gateway stations (HGTW) guarantees communications among users belonging to different HAP coverage areas using the GEO satellite links. Since high quality multimedia application support is a key objective for upcoming communication systems, this paper investigates the issues related to this topic. In order to guarantee an adequate quality of service to these kinds of service requires an efficient resources allocation and traffic management algorithm to be implemented inside the HMCS and HGTW stations.
机译:本文解释了集成卫星-HAP(高空平台)-地面系统的潜在作用。提出了一种简单且合适的架构。所提出的体系结构由三层组成:地面层,HAP层和GEO层。在同一HAP覆盖区域内的地面层终端必须使用HAP应答器和HAP主控站(HMCS)在彼此之间发送和接收数据。此外,HAP网关站(HGTW)使用GEO卫星链路保证属于不同HAP覆盖区域的用户之间的通信。由于高质量的多媒体应用程序支持是即将到来的通信系统的主要目标,因此本文将研究与该主题相关的问题。为了保证对这些类型的服务有足够的服务质量,需要在HMCS和HGTW站内实施有效的资源分配和流量管理算法。

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