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Multi-Party WebRTC Services Using Delay and Bandwidth Aware SDN-Assisted IP Multicasting of Scalable Video Over 5G Networks

机译:多方WebRTC服务使用延迟和带宽感知SDN辅助IP多播超过5G网络的可伸缩视频

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At present, multi-party WebRTC videoconferencing between peers with heterogenous network resources and terminals is enabled over the best-effort Internet using a central selective forwarding unit (SFU), where each peer sends a scalable encoded video stream to the SFU. This connection model avoids the upload bandwidth bottleneck associated with mesh connections; however, it increases peer delay and overall network load (resource consumption) in addition to requiring investment in servers since all video traffic must go through SFU servers. To this effect, we propose a new multi-party WebRTC service model over future 5G networks, where a video service provider (VSP) collaborates with a network service providers (NSP) to offer an NSP-managed service to stream scalable video layers using software-defined networking (SDN)-assisted Internet protocol (IP) multicasting between peers using NSP infrastructure. In the proposed service model, each peer sends a scalable coded video upstream, which is selectively duplicated and forwarded as layer streams at SDN switches in the network, instead of at a central SFU, in a multi-party WebRTC session managed by multicast trees maintained by the SDN controller. Experimental results show that the proposed SDN-assisted IP multicast service architecture is more efficient than the SFU model in terms of end-to-end service delay and overall network resource consumption, while avoiding peer upload bandwidth bottleneck and distributing traffic more evenly across the network. The proposed architecture enables efficient provisioning of premium managed WebRTC services over bandwidth-reserved SDN slices to provide videoconferencing experience with guaranteed video quality over 5G networks.
机译:目前,使用中央选择性转发单元(SFU),通过最佳努力的Internet(SFU)在具有异形网络资源和终端的对等体之间的多方WebRTC视频会议,其中每个对等体向SFU发送可扩展的编码视频流。此连接模型避免了与网状连接关联的上载带宽瓶颈;但是,除了需要在服务器投资外,它还增加了对等延迟和整体网络负载(资源消耗),因为所有视频流量必须通过SFU服务器。为此,我们向未来的5G网络提出了一个新的多方WebRTC服务模型,其中视频服务提供商(VSP)与网络服务提供商(NSP)协作,以提供使用软件流的NSP托管服务来流传输可伸缩的视频层 - 使用NSP基础架构的对等体之间的互联网协议(IP)多播的义网络(SDN)。在所提出的服务模型中,每个对等体向上游发送可伸缩的编码视频,这是选择性复制并作为网络中的SDN交换机中的图层流转发,而不是在由维护的多播树管理的多方WebRTC会话中。由SDN控制器。实验结果表明,在端到端服务延迟和整体网络资源消耗方面,所提出的SDN辅助IP多播服务架构比SFU模型更有效,同时避免对等上传带宽瓶颈和在网络上更均匀地分配流量。拟议的架构可以通过带宽保留的SDN切片提供高级管理WebRTC服务的高效配置,以提供VideoCooneCing体验,具有超过5G网络的保证视频质量。

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