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IoT Adaptive Dynamic Blockchain Networking Method Based on Discrete Heartbeat Signals

机译:基于离散心跳信号的IOT自适应动态区块链条组合方法

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摘要

The combination of blockchain technology and Internet of Things (IoT) technology has brought many significant advantages and new development directions. With the development of embedded technology and 5G communication technology, the performance limitations and network limitations that are traditionally believed to restrict the application of blockchain technology to IoT devices have been broken. The development of “blockchain + 5G + IoT” provides reliable data from the source for the blockchain, linking the credible mapping of physical assets and digital assets. However, at the beginning of the blockchain design, the application of the IoT was not fully considered, so there have been some obvious defects in applying the blockchain technology in the IoT. In the Byzantine fault tolerance (BFT) consensus algorithm of traditional blockchain, the entire blockchain network will become paralyzed when more than 1/3 of the nodes in the network are offline. However, in IoT applications, this situation is likely to occur and greatly limits the security and stability of the application of blockchain technology in the IoT. In order to solve this problem, we proposed an IoT adaptive dynamic blockchain networking method based on discrete heartbeat signals. The feature of the method is to set a different monitoring time for each group of nodes, that is, discrete heartbeat signals monitoring. When the number of nodes gradually decreases, the IoT adaptive dynamic blockchain network can dynamically adapt to this process. Even when more than 1/3 of the IoT are offline, the adaptive dynamic IoT blockchain network can maintain stable running. This method also has the advantages of a short network expectation recovery time and avoids instantaneous system paralysis caused by the thundering herd effect. This research improves the security and stability of the application of blockchain technology in the IoT, and provides the necessary technical foundation for the better combination of blockchain technology and IoT technology.
机译:区块链技术和事物互联网(IOT)技术的组合带来了许多显着的优势和新的发展方向。随着嵌入式技术的发展和5G通信技术,传统上据信限制区块链技术应用于IOT设备的性能限制和网络限制已被破坏。 “BlockChain + 5G + IoT”的开发提供了来自区块链的源的可靠数据,链接物理资产和数字资产的可信映射。然而,在区块链设计的开始时,IOT的应用没有完全考虑,因此在IOT中应用区块链技术存在一些明显的缺陷。在传统区块链的拜占庭容错(BFT)共识算法中,当网络中的超过1/3位离线时,整个区块链网络将变得瘫痪。但是,在IOT应用中,这种情况可能会发生,并且大大限制了区块链技术在IOT中应用的安全性和稳定性。为了解决这个问题,我们提出了一种基于离散心跳信号的物联网自适应动态区块链网络方法。该方法的特征是为每组节点设置不同的监视时间,即离散心跳信号监视。当节点的数量逐渐减小时,物联网自适应动态区块链网络可以动态地适应该过程。即使在IOT的超过1/3是脱机的时候,Adaptive Dynamic IoT区块链网络也可以保持稳定运行。该方法还具有短路期望恢复时间的优点,并避免了雷鸣群效应引起的瞬时系统瘫痪。该研究提高了区块链技术在物联网中应用的安全性和稳定性,为区块科技和物联网技术的更好组合提供了必要的技术基础。

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