BECA: A Blockchain-Based Edge Computing Architecture for Internet of Things Systems

Oluwashina Joseph Ajayi, J. Rafferty, José Santos, M. Garcia-Constantino, Zhan Cui
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引用次数: 5

Abstract

The scale of Internet of Things (IoT) systems has expanded in recent times and, in tandem with this, IoT solutions have developed symbiotic relationships with technologies, such as edge Computing. IoT has leveraged edge computing capabilities to improve the capabilities of IoT solutions, such as facilitating quick data retrieval, low latency response, and advanced computation, among others. However, in contrast with the benefits offered by edge computing capabilities, there are several detractors, such as centralized data storage, data ownership, privacy, data auditability, and security, which concern the IoT community. This study leveraged blockchain’s inherent capabilities, including distributed storage system, non-repudiation, privacy, security, and immutability, to provide a novel, advanced edge computing architecture for IoT systems. Specifically, this blockchain-based edge computing architecture addressed centralized data storage, data auditability, privacy, data ownership, and security. Following implementation, the performance of this solution was evaluated to quantify performance in terms of response time and resource utilization. The results show the viability of the proposed and implemented architecture, characterized by improved privacy, device data ownership, security, and data auditability while implementing decentralized storage.
BECA:基于区块链的物联网边缘计算架构
近年来,物联网(IoT)系统的规模不断扩大,与此同时,物联网解决方案与边缘计算等技术建立了共生关系。物联网利用边缘计算能力来提高物联网解决方案的能力,例如促进快速数据检索,低延迟响应和高级计算等。然而,与边缘计算功能提供的好处相比,存在一些批评者,例如集中数据存储,数据所有权,隐私,数据可审计性和安全性,这些都与物联网社区有关。本研究利用区块链的固有功能,包括分布式存储系统、不可否认性、隐私性、安全性和不变性,为物联网系统提供了一种新颖、先进的边缘计算架构。具体来说,这种基于区块链的边缘计算架构解决了集中式数据存储、数据可审计性、隐私、数据所有权和安全性问题。在实现之后,对该解决方案的性能进行了评估,以根据响应时间和资源利用率来量化性能。结果显示了所提出和实现的架构的可行性,其特点是在实现分散存储时改进了隐私性、设备数据所有权、安全性和数据可审计性。
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