Xu Xuesong, Zeng Zhi, Yang Shengjie, Shao Hongyan
Key Laboratory of Hunan Province for New Retail Virtual Reality Technology, Hunan University of Technology and Business, Changsha 410205, China.
Hunan Province Engineering Research Center of Ecologic Environment Big Data and Intelligent Decision-Making Technology, Changsha 410205, China.
Sensors (Basel). 2020 Apr 7;20(7):2061. doi: 10.3390/s20072061.
With the rapid development of industrial internet of thing (IIoT), the distributed topology of IIoT and resource constraints of edge computing conduct new challenges to traditional data storage, transmission, and security protection. A distributed trust and allocated ledger of blockchain technology are suitable for the distributed IIoT, which also becomes an effective method for edge computing applications. This paper proposes a resource constrained Layered Lightweight Blockchain Framework (LLBF) and implementation mechanism. The framework consists of a resource constrained layer (RCL) and a resource extended layer (REL) blockchain used in IIoT. We redesign the block structure and size to suit to IIoT edge computing devices. A lightweight consensus algorithm and a dynamic trust right algorithm is developed to improve the throughput of blockchain and reduce the number of transactions validated in new blocks respectively. Through a high throughput management to guarantee the transaction load balance of blockchain. Finally, we conducted kinds of blockchain simulation and performance experiments, the outcome indicated that the method have a good performance in IIoT edge application.
随着工业物联网(IIoT)的快速发展,IIoT的分布式拓扑结构和边缘计算的资源限制给传统数据存储、传输和安全保护带来了新的挑战。区块链技术的分布式信任和分配账本适用于分布式IIoT,这也成为边缘计算应用的一种有效方法。本文提出了一种资源受限的分层轻量级区块链框架(LLBF)及其实现机制。该框架由用于IIoT的资源受限层(RCL)和资源扩展层(REL)区块链组成。我们重新设计了块结构和大小以适应IIoT边缘计算设备。开发了一种轻量级共识算法和动态信任权算法,分别提高区块链的吞吐量并减少新块中验证的交易数量。通过高吞吐量管理来保证区块链的交易负载平衡。最后,我们进行了各种区块链模拟和性能实验,结果表明该方法在IIoT边缘应用中具有良好的性能。