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The Role of HAPs in Supporting Multimedia Broadcast and Multicast Services in Terrestrial-Satellite Integrated Systems

机译:HAP在地面卫星集成系统中支持多媒体广播和组播服务中的作用

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New-generation telecommunications systems are expected to meet the rising user exigencies of mobility and ubiquitous access to multimedia services. As a consequence, 3GPP consortium has introduced the Multimedia Broadcast and Multicast Service (MBMS) concept into 3G/beyond-3G networks, Supporting MB MS in next generation hybrid wireless platforms becomes a challenging issue due to high traffic load deriving from both signaling message exchange and data transmission between multicast sources (BM-SC) and end users. Therefore, in this context, key research issues are surely: effective exploitation of the limited radio spectrums available, coordination of users accessing radio resources, as well as provisioning of desired QoS guarantees. Given the high mobility profiles typical of UMTS users, it clearly appears that the cited target performance can only be achieved through networking solutions based on an overlapped terrestrial-HAP-satellite coverage. An inter-working scenario where HAPs operate in synergy with the UMTS terrestrial and satellite segments seems to be the most promising solution to provide mobile users with MBMS services. Our work, dealing with architectural design options, takes into account many metrics relevant to aspects, such as: frequency allocation, costs in terms of resource utilization, signaling traffic load, number and location of customers, reliability, possible retransmission paths, user mobility, and QoS.
机译:新一代电信系统有望满足日益增长的移动性和对多媒体服务的普遍访问的用户需求。因此,3GPP联盟已将多媒体广播和多播服务(MBMS)概念引入3G / 3G以后的网络中,由于两种信令消息交换产生的高流量负载,在下一代混合无线平台中支持MB MS成为一个具有挑战性的问题以及组播源(BM-SC)与最终用户之间的数据传输。因此,在这种情况下,关键的研究问题肯定是:有效利用有限的可用无线电频谱,协调用户访问无线电资源以及提供所需的QoS保证。鉴于UMTS用户典型的高移动性配置文件,显然,所引用的目标性能只能通过基于重叠的地面HAP卫星覆盖范围的联网解决方案来实现。 HAP与UMTS地面和卫星网段协同工作的互通方案似乎是向移动用户提供MBMS服务的最有前途的解决方案。我们处理架构设计方案的工作考虑了许多与方面相关的指标,例如:频率分配,资源利用成本,信令流量负载,客户数量和位置,可靠性,可能的重传路径,用户移动性,和QoS。

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