面向物联网应用的主动轻量级无服务器边缘云

Ian Wang, Shixiong Qi, Elizabeth Liri, K. Ramakrishnan
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引用次数: 2

摘要

边缘云解决方案使云更接近传感器,对于满足许多物联网(IoT)应用程序的低延迟要求非常有用。然而,物联网流量也可能是间歇性的,因此不断运行应用程序可能会造成浪费。因此,对于资源和经济高效的物联网应用环境来说,拥有响应迅速并提供低延迟特性的无服务器边缘云是一个非常有吸引力的选择。在本文中,我们讨论了在无服务器边缘云中支持物联网流量所需的关键组件,并确定了难以直接使用现有无服务器解决方案(如Knative)进行物联网应用的关键挑战。其中包括用于管理整个系统的重量级组件的开销,以及用于通信协议转换的软件适配器,这些适配器用于为大规模集中式云设计的现成无服务器平台。“冷启动”带来的延迟是进一步的阻碍。为了应对这些挑战,我们重新设计了Knative无服务器框架的几个组件。我们使用一个简化的协议适配器在我们的无服务器框架中利用MQTT物联网协议进行物联网事件处理。我们还基于扩展的Berkeley Packet Filter (eBPF)创建了一个新颖的事件驱动代理,以取代常规的重量级native队列代理。我们的初步实验结果表明,在物联网无服务器环境中,事件驱动代理是队列代理的合适替代品,并且可以降低CPU使用率和提高请求吞吐量。
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Towards a Proactive Lightweight Serverless Edge Cloud for Internet-of-Things Applications
Edge cloud solutions that bring the cloud closer to the sensors can be very useful to meet the low latency requirements of many Internet-of-Things (IoT) applications. However, IoT traffic can also be intermittent, so running applications constantly can be wasteful. Therefore, having a serverless edge cloud that is responsive and provides low-latency features is a very attractive option for a resource and cost-efficient IoT application environment.In this paper, we discuss the key components needed to support IoT traffic in the serverless edge cloud and identify the critical challenges that make it difficult to directly use existing serverless solutions such as Knative, for IoT applications. These include overhead from heavyweight components for managing the overall system and software adaptors for communication protocol translation used in off-the-shelf serverless platforms that are designed for large-scale centralized clouds. The latency imposed by ‘cold start’ is a further deterrent.To address these challenges we redesign several components of the Knative serverless framework. We use a streamlined protocol adaptor to leverage the MQTT IoT protocol in our serverless framework for IoT event processing. We also create a novel, event-driven proxy based on the extended Berkeley Packet Filter (eBPF), to replace the regular heavyweight Knative queue proxy. Our preliminary experimental results show that the event-driven proxy is a suitable replacement for the queue proxy in an IoT serverless environment and results in lower CPU usage and a higher request throughput.
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