On coexistence of decentralized system (blockchain) and central management in Internet-of-Things

Hirosh Watanabe
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Abstract

Network is composed of logical nodes and edges for communications. Atomistic component of things connected to the network is a memory chip. Accordingly, the unique linkage of a memory chip and a logical node can be a promising to resolve the root-of-trust problem on the Internet-of-Things. For this aim, we propose a protocol of challenge-response using a memory chip.For the central management, a central node controls the entry of electronic appliances with a memory chip into the network, and excludes a fake node (e.g., the spoofing entity) from the network that the central node manages. For the decentralized communications, Merkle’s tree turns out being composed of memory chips to which the logical nodes are uniquely linked, respectively. The root of Merkle turns out being the memory chip that stores the latest record of data transaction. We can register this memory chip as a new block by satisfying the requirement of the proof-of-consensus. After blocks are chained, it gets harder for even the central node to manipulate transaction record among memory chips. By this way, the decentralized system (e.g., blockchain) and the central management can coexist. A new idea of security state is also discussed briefly.
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论物联网中去中心化系统(区块链)与中心化管理的共存
网络由逻辑节点和边缘组成,用于通信。连接到网络的事物的原子组件是一个存储芯片。因此,存储芯片与逻辑节点的独特链接有望解决物联网上的信任根问题。为此,我们提出了一种基于存储芯片的挑战响应协议。对于中心管理,中心节点控制带有存储芯片的电子设备进入网络,并从中心节点管理的网络中排除假节点(例如,欺骗实体)。对于去中心化通信,Merkle的树是由存储芯片组成的,每个逻辑节点都是唯一连接的。默克尔的根原来是存储最新数据交易记录的存储芯片。我们可以通过满足共识证明的要求,将这个存储芯片注册为一个新的区块。在区块链之后,即使是中心节点也很难在内存芯片之间操纵交易记录。通过这种方式,分散的系统(例如区块链)和中央管理可以共存。本文还简要讨论了一种新的安全状态概念。
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