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Iris: Secure reliable live-streaming with opportunistic mobile edge cloud offloading

机译:Iris:通过机会移动边缘云卸载确保可靠的实时流传输

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The ever-increasing demand for higher quality live streams is driving the need for better networking infrastructures, specially when disseminating content over highly congested areas, such as stadiums, concerts and museums. Traditional approaches to handle this type of scenario relies on a combination of cellular data, through 4G distributed antenna arrays (DAS), with a high count of WiFi (802.11) access points. This obvious requires a substantial upfront cost for equipment, planning and deployment. Recently, new efforts have been introduced to securely leverage the capabilities of wireless multipath, including WiFi multicast, 4G, and device-to-device communications. In order to solve these issues, we propose an approach that lessens the requirements imposed on the wireless infrastructures while potentially expanding wireless coverage through the crowd-sourcing of mobile devices. In order to achieve this, we propose a novel pervasive approach that combines secure distributed systems, WiFi multicast, erasure coding, source coding and opportunistic offloading that makes use of hyperlocal mobile edge clouds. We empirically show that our solution is able to offer a 11 fold reduction on the infrastructural WiFi bandwidth usage without having to modify any existing software or firmware stacks while ensuring stream integrity, authorization and authentication. (C) 2019 Elsevier B.V. All rights reserved.
机译:对更高质量的实时流的需求不断增长,这驱使人们对更好的网络基础架构的需求,特别是在体育馆,音乐会和博物馆等高度拥挤的地区分发内容时。处理此类情况的传统方法依靠通过4G分布式天线阵列(DAS)和大量WiFi(802.11)接入点的蜂窝数据组合来实现。这显然需要设备,计划和部署的大量前期费用。最近,已采取新的措施来安全地利用无线多径功能,包括WiFi多播,4G和设备到设备通信。为了解决这些问题,我们提出了一种方法,该方法可以减轻对无线基础结构的要求,同时可以通过众包移动设备来扩展无线覆盖范围。为了实现这一目标,我们提出了一种新颖的普及方法,该方法结合了安全分布式系统,WiFi多播,擦除编码,源编码和利用超本地移动边缘云的机会性卸载。我们凭经验表明,我们的解决方案能够将基础设施WiFi带宽使用量降低11倍,而无需修改任何现有软件或固件堆栈,同时确保流完整性,授权和身份验证。 (C)2019 Elsevier B.V.保留所有权利。

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