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DNS-Based Dynamic Authentication for Microservices in IoT

机译:基于DNS的动态认证在IOT中微服务

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摘要

IoT devices provide with real-time data to a rich ecosystems of services and applications that will be of uttermost importance for ubiquitous computing. The volume of data and the involved subscribe/notify signaling will likely become a challenge also for access and core netkworks. Designers may opt for microservice architectures and fog computing to address this challenge while offering the required flexibility for the main players of ubiquitous computing: nomadic users. Microservices require strong security support for Fog computing, to rely on nodes in the boundary of the network for secure data collection and processing. IoT low cost devices face outdated certificates and security support, due to the elapsed time from manufacture to deployment. In this paper we propose a solution based on microservice architectures and DNSSEC, DANE and chameleon signatures to overcome these difficulties. We will show how trap doors included in the certificates allow a secure and flexible delegation for off-loading data collection and processing to the fog. The main result is showing this requires minimal manufacture device configuration, thanks to DNSSEC support.
机译:IOT设备提供了实时数据,以实现丰富的服务和应用程序,这对于普遍存在的计算来说是最重要的。数据和所涉及的订阅/通知信令可能会成为访问和核心NetKworks的挑战。设计人员可以选择MicroService架构和雾计算,以解决这一挑战,同时为无处不在的计算主要玩家提供所需的灵活性:游牧民族用户。微服务需要强烈的安全支持对雾计算,依赖于网络边界中的节点进行安全数据收集和处理。由于从制造到部署的经过时间,IoT低成本设备面临过时的证书和安全支持。在本文中,我们提出了一种基于微服务架构和DNSSEC,丹LE和变色龙签名的解决方案,以克服这些困难。我们将展示证书中包含的陷阱门如何允许安全灵活的委托来为雾中加载数据收集和处理。由于DNSSEC支持,主要结果显示这需要最小的制造设备配置。

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