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Blockchain-based trusted data sharing among trusted stakeholders in IoT

机译:基于区块链的可信数据共享IOT的可信利益相关者

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Sharing trusted data among trusted stakeholders is very important to large-scale Internet of Things (IoT) applications. However, the entities and organizations involved in IoT naturally lack trusted relationships, which poses significant challenges to the above vision. Specifically, the first challenge is to ensure that the data in the physical world can be objectively and truly injected into the information world of IoT. The second is to ensure the credibility of the entities' identities in IoT. The third is to ensure the authenticity of data, the credibility of identity, and the reliable transmission of data when a third trusted party is unable to provide the expected trusted services. In view of the above challenges, this paper proposes a secure and lightweight triple-trusting architecture (SLTA), which fully uses a blockchain-related supporting technology. The architecture includes an oracle-based data collection mechanism, which ensures that the data collected from edge devices of IoT cannot be modified, and the distributed identity management mechanism, which enhances personal privacy, security, and control of digital identities. Furthermore, a series of innovative designs for applying the blockchain to special large-scale cooperation scenario in IoT are proposed, which is also a part of the key mechanisms of the SLTA. The innovative design includes a new software-defined blockchain structure model and a lightweight Byzantine fault-tolerant algorithm that provides credible support for decentralized data collection, identity management, and data transfer, as well as low-overhead sequential storage mechanism.
机译:信任利益相关者之间的信任数据对大规模的物联网(物联网)应用程序非常重要。然而,涉及IOT的实体和组织自然缺乏可信赖的关系,这对上述愿景构成了重大挑战。具体而言,第一个挑战是确保物理世界中的数据可以客观地,真正注入IOT的信息世界。第二是确保IOT中实体身份的可信度。第三是为了确保数据的真实性,身份的可信度,以及第三名可信政党无法提供预期的可信服务时的数据的可靠传输。鉴于上述挑战,本文提出了一种安全而轻巧的三重信任架构(SLTA),它充分利用了具有区块链相关的支持技术。该体系结构包括基于Oracle的数据收集机制,可确保从IOT的边缘设备收集的数据无法修改,以及分布式身份管理机制,增强了数字隐私,安全性和控制数字身份的控制。此外,提出了一系列用于将区块链应用于IOT的特殊大规模合作情景的创新设计,这也是SLTA关键机制的一部分。创新设计包括一个新的软件定义区块链结构模型和轻量级拜占庭容错算法,可提供对分散数据收集,身份管理和数据传输的可信支持,以及低开销顺序存储机制。

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