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首页> 外文期刊>International Journal of Satellite Communications and Networking >Radio resource management across multiple protocol layers in satellite networks: A tutorial overview
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Radio resource management across multiple protocol layers in satellite networks: A tutorial overview

机译:卫星网络中跨多个协议层的无线电资源管理:教程概述

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Satellite transmissions have an important role in telephone communications, television broadcasting, computer communications, maritime navigation, and military command and control. Moreover, in many situations they may be the only possible communication set-up. Trends in telecommunications indicate that four major growth market/service areas are messaging and navigation services (wireless and satellite), mobility services (wireless and satellite), video delivery services (cable and satellite), and interactive multimedia services (fibre/cable, satellite). When using geostationary satellites (GEO), the long propagation delay may have great impact, given the end-to-end delay user's requirements of relevant applications; moreover, atmospheric conditions may seriously affect data transmission. Since satellite bandwidth is a relatively scarce resource compared to the terrestrial one (e.g. in optical transport networks), and the environment is harsher, resource management of the radio segment plays an important role in the system's efficiency and economy. The radio resource management (RMM) entity is responsible for the utilization of the air interface resources, and covers power control, handover, admission control, congestion control, bandwidth allocation, and packet scheduling. RRM functions are crucial for the best possible utilization of the capacity. RRM functions can be implemented in different ways, thus having an impact on the overall system efficiency. This tutorial aims to provide an overview of satellite transmission aspects at various OSI layers, with emphasis on the MAC layer; some cross-layer solutions for bandwidth allocation are also indicated. Far from being an exhaustive survey (mainly due to the extensive nature of the subject), it offers the readers an extensive bibliography, which could be used for further research on specific aspects.
机译:卫星传输在电话通信,电视广播,计算机通信,海上导航以及军事指挥与控制中具有重要作用。而且,在许多情况下,它们可能是唯一可能的通信设置。电信趋势表明,四个主要的增长市场/服务领域是消息传递和导航服务(无线和卫星),移动服务(无线和卫星),视频传递服务(电缆和卫星)和交互式多媒体服务(光纤/电缆,卫星​​) )。当使用对地静止卫星(GEO)时,考虑到相关应用的端到端延迟用户的需求,长的传播延迟可能会产生很大的影响;此外,大气条件可能严重影响数据传输。由于与地面资源相比(例如在光传输网络中),卫星带宽是一种相对稀缺的资源,并且环境更加恶劣,因此,无线电部分的资源管理在系统的效率和经济性中起着重要的作用。无线电资源管理(RMM)实体负责空中接口资源的利用,并涵盖功率控制,切换,准入控制,拥塞控制,带宽分配和分组调度。 RRM功能对于最大程度地利用容量至关重要。 RRM功能可以通过不同的方式实现,从而影响整体系统效率。本教程旨在概述OSI各个层的卫星传输方面,重点是MAC层。还指出了一些用于带宽分配的跨层解决方案。它不是详尽的调查(主要是由于该主题的广泛性质),而是为读者提供了广泛的参考书目,可将其用于特定方面的进一步研究。

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