Secure and user-friendly over-the-air firmware distribution in a portable faraday cage

Martin Striegel, Florian Jakobsmeier, Yacov Matveev, Johann Heyszl, G. Sigl
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引用次数: 1

Abstract

Setting up a large-scale wireless sensor networks (WSNs) is challenging, as firmware must be distributed and trust between sensor nodes and a backend needs to be established. To perform this task efficiently, we propose an approach named Box, which utilizes an intelligent Faraday Cage (FC). The FC acquires firmware images and secret keys from a backend, patches the firmware with the keys and deploys those customized images over-the-air (OTA) to sensor nodes placed in the FC. Electromagnetic (EM) shielding protects this exchange against passive attackers. We place few demands on the sensor node, not requiring additional hardware components or firmware customized by the manufacturer. We describe this novel workflow, implement the Box and a backend system and demonstrate the feasibility of our approach by batch-deploying firmware to multiple commercial off-the-shelf (COTS) sensor nodes. We conduct a user-study with 31 participants with diverse backgrounds and find, that our approach is both faster and more user-friendly than firmware distribution over a wired connection.
安全和用户友好的无线固件分布在便携式法拉第笼
建立大规模无线传感器网络(wsn)具有挑战性,因为固件必须分布,并且需要在传感器节点和后端之间建立信任。为了有效地完成这项任务,我们提出了一种名为Box的方法,该方法利用智能法拉第笼(FC)。FC从后端获取固件映像和密钥,用密钥对固件进行补丁,并通过OTA (over- air)将这些定制映像部署到FC中的传感器节点。电磁(EM)屏蔽保护这种交换免受被动攻击者的攻击。我们对传感器节点的要求很少,不需要制造商定制的额外硬件组件或固件。我们描述了这种新颖的工作流程,实现了Box和后端系统,并通过批量部署固件到多个商用现货(COTS)传感器节点来演示我们方法的可行性。我们对31名不同背景的参与者进行了用户研究,发现我们的方法比有线连接的固件分发更快,更用户友好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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