MISO networks have garnered attention in wireless content-centric networks due to the additional degrees of freedoms they provide. Several beamforming techniques such as NOMA, OMA, SDMA and Rate splitting have been proposed for such networks. These techniques utilise the redundancy in the content requests across users and leverage the spatial multicast and multiplexing gains of multi-antenna transmit beamforming to improve the content delivery rate. However, queueing delays and user traffic dynamics which significantly affect the performance of these schemes, have generally been ignored. We study queueing delays in the downlink for several scheduling and beamforming schemes in content-centric networks, with one base-station possessing multiple transmit antennas. These schemes are studied along with a recently proposed Simple Multicast Queue, to improve the delay performance of the network. This work is particularly relevant for content delivery in 5G and eMBB networks.
翻译:由于无线内容中心网络提供的更多自由程度,MISO网络在无线内容中心网络中引起了关注,为这些网络提出了若干波束成型技术,如NOMA、OMA、SDMA和分率等,这些技术利用用户对内容要求的冗余,利用多播和多传传波的空间增益来提高内容交付率。然而,排队延误和用户交通动态对这些方案的绩效有重大影响,一般被忽略。我们研究在以内容为中心的网络的若干排队和波束成型计划中排队延误,一个基站拥有多个传输天线。这些技术与最近提出的简易多播程组合一起研究,以改善网络的延迟性能。这项工作对于5G和EMB网络的内容交付尤其相关。