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A real-time algorithm for timeslot assignment in multirate return channels of interactive satellite multimedia networks

机译:交互式卫星多媒体网络多速率返回信道中时隙分配的实时算法

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摘要

Since the digital video broadcast-return channel via satellite (DVB-RCS) standard was released in 2000, developing an interactive satellite multimedia (ISM) network has become a hot issue. In order to provide high-speed multimedia services using a DVB-RCS system, it is important to efficiently and dynamically assign the timeslots to a number of terminals according to their various demands. Also, it is imperative to improve the degradation of link quality due to rain-fade attenuation in Ka-band satellite communications. As a result, multirate superframe structures should be implemented for a relatively low data rate at the cost of stable connection to terminals in rain-fade regions and a relatively high data rate to terminals in clear-sky regions. Timeslot scheduling in this environment is studied in this paper. We mathematically formulate the timeslot assignment problem as a nonlinear integer programming problem and develop an efficient real-time solution algorithm. Extensive simulation results show that our algorithm successfully finds a feasible solution with optimality gap less than 0.05% within about 5 ms at Pentium III PC. We believe that our algorithm can be utilized as a guideline in developing real-time timeslot assignment algorithms for ISM networks.
机译:自2000年发布了基于卫星的数字视频广播返回频道(DVB-RCS)标准以来,开发交互式卫星多媒体(ISM)网络已成为一个热门问题。为了使用DVB-RCS系统提供高速多媒体服务,重要的是根据其各种需求将时隙有效且动态地分配给多个终端。同样,必须改善由于Ka波段卫星通信中的衰落衰减导致的链路质量下降。结果,应当以相对低的数据速率实现多速率超帧结构,但是要以稳定地连接到雨衰地区的终端以及以相对较高的数据速率到晴空地区的终端为代价。本文研究了这种环境下的时隙调度。我们在数学上将时隙分配问题公式化为非线性整数规划问题,并开发了一种高效的实时求解算法。大量的仿真结果表明,我们的算法在奔腾III PC上约5 ms内成功找到了最优间隙小于0.05%的可行解决方案。我们认为,我们的算法可以用作开发ISM网络的实时时隙分配算法的指南。

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