论文标题

具有区块链的经济高效的物联网取证框架

A Cost-efficient IoT Forensics Framework with Blockchain

论文作者

Mercan, Suat, Cebe, Mumin, Tekiner, Ege, Akkaya, Kemal, Chang, Melissa, Uluagac, Selcuk

论文摘要

IoT devices have been adopted widely in the last decade which enabled collection of various data from different environments.在某些应用程序中,IoT设备生成有关关键基础架构或失败可能导致灾难性结果的系统的数据,收集的数据至关重要。具体而言,对于此类关键应用程序,数据存储构成挑战,因为数据可能在存储期间会受到损害,并且可能会违反不被注意的完整性。在这种情况下,需要完整性和数据出处,以便能够检测任何事件的来源,并在法律案件中与参与方有争议。为了解决这些问题,区块链提供了绝佳的机会,因为它可以通过其分布式结构来保护数据的完整性。但是,它会带来一定的成本,因为在公共区块链中存储大量数据将带有大量交易费用。在本文中,我们通过利用多个廉价的区块链网络作为临时存储,在数据致力于以太坊之前,我们提出了一个高昂的成本效益和可靠的数字取证框架。为了降低以太坊成本,我们利用默克尔树,这些树从物联网设备中存储收集的事件数据的层次。我们通过提出成本和安全分析来评估流行区块链(例如EOS,Stellar和Ethereum)的方法。结果表明,我们可以在不损害数据完整性的情况下实现大量的成本节省。

IoT devices have been adopted widely in the last decade which enabled collection of various data from different environments. The collected data is crucial in certain applications where IoT devices generate data for critical infrastructure or systems whose failure may result in catastrophic results. Specifically, for such critical applications, data storage poses challenges since the data may be compromised during the storage and the integrity might be violated without being noticed. In such cases, integrity and data provenance are required in order to be able to detect the source of any incident and prove it in legal cases if there is a dispute with the involved parties. To address these issues, blockchain provides excellent opportunities since it can protect the integrity of the data thanks to its distributed structure. However, it comes with certain costs as storing huge amount of data in a public blockchain will come with significant transaction fees. In this paper, we propose a highly cost effective and reliable digital forensics framework by exploiting multiple inexpensive blockchain networks as a temporary storage before the data is committed to Ethereum. To reduce Ethereum costs,we utilize Merkle trees which hierarchically stores hashes of the collected event data from IoT devices. We evaluated the approach on popular blockchains such as EOS, Stellar, and Ethereum by presenting a cost and security analysis. The results indicate that we can achieve significant cost savings without compromising the integrity of the data.

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