Research of trusted real‐time electrical data transmission mechanism based on Parallel Proof of Work algorithm

Yiming Chen, Dongliang Gao, Yuxuan Yang, Jintang Luo, Yi Li
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Abstract

Secure and reliable electricity supply is a prerequisite for the development of smart cities, and the trustworthy and efficient transmission of electrical data is the foundation for the safe and stable operation of the power grid. This paper introduces a real‐time data transmission blockchain technique based on parallel proof of work algorithm. The new block generation process of proposed blockchain is divided into five subroutines: hash pointer computation, real‐time data pudding, signature value iteration, interruption, block header assembly. The real‐time data pudding and signature value iteration are parallel processed, which brings the effect of decreasing energy loss of blockchain system, and enhances the speed of new block generation and the bandwidth of data storage on blockchain. Computer simulation shows the proposed strategy can be effectively applied in real‐time electrical data transmission application, raising the data transmission reliability with no harm to real‐time data transfer function. This strategy provides a solution to guarantee data transmission safety in the digital conversion of power grid.
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基于并行工作量证明算法的可信实时电力数据传输机制研究
安全可靠的电力供应是智慧城市发展的前提,而可信高效的电力数据传输是电网安全稳定运行的基础。本文介绍了一种基于并行工作量证明算法的实时数据传输区块链技术。所提区块链的新区块生成过程分为五个子程序:哈希指针计算、实时数据布丁、签名值迭代、中断、区块头组装。其中,实时数据布丁和签名值迭代采用并行处理方式,起到了降低区块链系统能量损耗、提高新区块生成速度和区块链数据存储带宽的效果。计算机仿真表明,所提出的策略可以有效地应用于实时电力数据传输应用中,在不损害实时数据传输功能的前提下提高了数据传输的可靠性。该策略为保障电网数字化转换中的数据传输安全提供了解决方案。
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