The protection of LP-WAN Endpoints via TEE: a Chemical Storage Case Study

L. Coppolino, S. D'Antonio, Giovanni Mazzeo, L. Romano, Irene Bonetti, Elena Spagnuolo
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引用次数: 2

Abstract

Industrial IoT (IIoT) solutions typically rely on Low-Power Wide Area Network (LP-WAN) protocols to transmit data over long distances while preserving battery life. Regrettably, the distributed nature of LP-WAN deployments and the adoption of managed services make the endpoints —from the field up to the cloud— target of attacks, which could threaten the security and resilience of the infrastructure under monitoring. In this paper, we propose a solution for improving the security of LoRa-based monitoring infrastructures, which is by far the most widely used LP-WAN protocol in the IIoT landscape. We combine two different trusted execution technologies, i.e., ARM TrustZone and Intel SGX, to preserve the chain-of-trust throughout the entire data cycle, i.e. from collection to transmission and processing, and finally to storage. An experimental evaluation is conducted on a real chemical storage infrastructure, managed by Attilio Carmagnani “AC” S.p.A.. We demonstrate the practicability of the proposed approach, i.e. we prove that our solution improves security while also satisfying the performance and energy consumption requirements of a real setup. The technique can be extended to other LP-WAN deployments with minor engineering efforts.
通过TEE保护LP-WAN端点:一个化学储存案例研究
工业物联网(IIoT)解决方案通常依靠低功耗广域网(LP-WAN)协议远距离传输数据,同时保持电池寿命。遗憾的是,LP-WAN部署的分布式特性和托管服务的采用使端点(从现场到云)成为攻击的目标,这可能威胁到监控下基础设施的安全性和弹性。在本文中,我们提出了一种提高基于lora的监控基础设施安全性的解决方案,这是迄今为止在工业物联网领域中使用最广泛的LP-WAN协议。我们结合了两种不同的可信执行技术,即ARM TrustZone和Intel SGX,以保持整个数据周期的信任链,即从收集到传输和处理,最后到存储。在由Attilio Carmagnani“AC”S.p.A管理的真实化学储存基础设施上进行了实验评估。我们证明了所提出方法的实用性,即我们证明了我们的解决方案在提高安全性的同时也满足了实际设置的性能和能耗要求。该技术可以通过少量工程工作扩展到其他LP-WAN部署。
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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