Enhancing IoT Security and Privacy Using Distributed Ledgers with IOTA and the Tangle

Bilal Shabandri, P. Maheshwari
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引用次数: 45

Abstract

The Internet of Things (IoT) devices currently rely on centralized, brokered communication models which call for a number of security flaws and threats. Privacy & security remain a challenge owing to the existing systems being centralized - creating a single point of failure. In this paper, we lay out an architecture for incorporating a concept similar to Blockchain - the technology that underpins the cryptocurrency Bitcoin and many other cryptocurrencies to provide decentralized security and privacy for IoT devices. Currently, the issue with most IoT devices is that they lack the processing power, storage and computational overhead to run consensus algorithms to be an active part of the Blockchain network. The current issue with the blockchain on the other hand, is its low scalability and low number of transactions per second. We present an innovative approach using a technology called IOTA. This addresses some of the most important problems with existing blockchain infrastructure such as being able to run on lightweight devices with constrained memory. We eliminate transaction fees and the concept of mining which requires a large amount of processing power to compete with other miners. IOTA's main component is the Tangle, a guided acyclic graph (DAG) for transaction storage. We discuss creation of two IoT applications on the tangle - a smart utility meter system and a smart car transaction system which are connected to internet through Low Power Wide Area IoT networks.
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使用IOTA和Tangle的分布式账本增强物联网安全和隐私
物联网(IoT)设备目前依赖于集中式代理通信模型,这带来了许多安全漏洞和威胁。隐私和安全仍然是一个挑战,因为现有的系统是集中式的——造成了单点故障。在本文中,我们设计了一个架构,用于整合类似区块链的概念——区块链是支撑加密货币比特币和许多其他加密货币的技术,为物联网设备提供分散的安全性和隐私性。目前,大多数物联网设备的问题是,它们缺乏处理能力、存储和计算开销来运行共识算法,从而成为区块链网络的活跃部分。另一方面,区块链当前的问题是其低可伸缩性和每秒低事务数。我们提出了一种使用IOTA技术的创新方法。这解决了现有区块链基础设施的一些最重要的问题,例如能够在内存受限的轻量级设备上运行。我们消除了交易费和挖矿的概念,因为挖矿需要大量的处理能力来与其他矿工竞争。IOTA的主要组件是Tangle,这是一个用于交易存储的引导无环图(DAG)。我们将讨论在缠结上创建两种物联网应用——智能电表系统和智能汽车交易系统,它们通过低功耗广域物联网网络连接到互联网。
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