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Frontier: Resilient Edge Processing for the Internet of Things

机译:前沿:物联网的弹性边缘处理

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In an edge deployment model, Internet-of-Things (IoT) applications, e.g. for building automation or video surveillance, must process data locally on IoT devices without relying on permanent connectivity to a cloud backend. The ability to harness the combined resources of multiple IoT devices for computation is influenced by the quality of wireless network connectivity. An open challenge is how practical edge-based IoT applications can be realised that are robust to changes in network bandwidth between IoT devices, due to interference and intermittent connectivity. We present Frontier, a distributed and resilient edge processing platform for IoT devices. The key idea is to express data-intensive IoT applications as continuous data-parallel streaming queries and to improve query throughput in an unreliable wireless network by exploiting network path diversity: a query includes operator replicas at different IoT nodes, which increases possible network paths for data. Frontier dynamically routes stream data to operator replicas based on network path conditions. Nodes probe path throughput and use backpressure stream routing to decide on transmission rates, while exploiting multiple operator replicas for data-parallelism. If a node loses network connectivity, a transient disconnection recovery mechanism reprocesses the lost data. Our experimental evaluation of Frontier shows that network path diversity improves throughput by 1.3×-2.8× for different IoT applications, while being resilient to intermittent network connectivity.
机译:在边缘部署模型中,物联网(IoT)应用程序例如对于楼宇自动化或视频监控,必须在IoT设备上本地处理数据,而不必依赖与云后端的永久连接。利用多个IoT设备的组合资源进行计算的能力受无线网络连接质量的影响。一个开放的挑战是如何实现实用的基于边缘的IoT应用程序,该应用程序由于干扰和间歇性连接而对IoT设备之间的网络带宽变化具有鲁棒性。我们介绍了Frontier,这是一种用于物联网设备的分布式弹性边缘处理平台。关键思想是将数据密集型IoT应用程序表示为连续的数据并行流查询,并通过利用网络路径多样性来提高不可靠无线网络中的查询吞吐量:查询包括位于不同IoT节点的运营商副本,从而增加了可能的网络路径数据。前沿根据网络路径条件将流数据动态路由到运营商副本。节点探测路径吞吐量并使用反压流路由来确定传输速率,同时利用多个操作员副本进行数据并行处理。如果节点丢失网络连接,则瞬态断开连接恢复机制将重新处理丢失的数据。我们对Frontier的实验评估表明,对于不同的物联网应用,网络路径多样性可将吞吐量提高1.3倍-2.8倍,同时还能抵御间歇性网络连接。

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