Towards an Optimized BlockChain for IoT

A. Dorri, S. Kanhere, R. Jurdak
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引用次数: 589

Abstract

There has been increasing interest in adopting BlockChain (BC), that underpins the crypto-currency Bitcoin, in Internet of Things (IoT) for security and privacy. However, BCs are computationally expensive and involve high bandwidth overhead and delays, which are not suitable for most IoT devices. This paper proposes a lightweight BC-based architecture for IoT that virtually eliminates the overheads of classic BC, while maintaining most of its security and privacy benefits. IoT devices benefit from a private immutable ledger, that acts similar to BC but is managed centrally, to optimize energy consumption. High resource devices create an overlay network to implement a publicly accessible distributed BC that ensures end-to-end security and privacy. The proposed architecture uses distributed trust to reduce the block validation processing time. We explore our approach in a smart home setting as a representative case study for broader IoT applications. Qualitative evaluation of the architecture under common threat models highlights its effectiveness in providing security and privacy for IoT applications. Simulations demonstrate that our method decreases packet and processing overhead significantly compared to the BC implementation used in Bitcoin.
面向物联网优化区块链
人们对在物联网(IoT)中采用支撑加密货币比特币的区块链(BC)来保护安全和隐私的兴趣越来越大。然而,bc在计算上很昂贵,并且涉及高带宽开销和延迟,这并不适合大多数物联网设备。本文提出了一种轻量级的基于BC的物联网架构,它几乎消除了经典BC的开销,同时保持了其大部分安全和隐私优势。物联网设备受益于一个私有的不可变分类账,它的作用类似于BC,但是集中管理的,以优化能源消耗。高资源设备创建覆盖网络来实现可公开访问的分布式BC,以确保端到端的安全性和隐私性。提出的体系结构使用分布式信任来减少块验证处理时间。我们在智能家居环境中探索我们的方法,作为更广泛的物联网应用的代表性案例研究。在常见威胁模型下对架构进行定性评估,突出了其在为物联网应用提供安全和隐私方面的有效性。仿真表明,与比特币中使用的BC实现相比,我们的方法显着降低了数据包和处理开销。
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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