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A Blockchain-Based Contractual Routing Protocol for the Internet of Things Using Smart Contracts

机译:使用智能合约的物联网基于区块链的合约路由协议

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In this paper, we propose a novel blockchain-based contractual routing (BCR) protocol for a network of untrusted IoT devices. In contrast to conventional secure routing protocols in which a central authority (CA) is required to facilitate the identification and authentication of each device, the BCR protocol operates in a distributed manner with no CA. The BCR protocol utilizes smart contracts to discover a route to a destination or data gateway within heterogeneous IoT networks. Any intermediary device can guarantee a route from a source IoT device to a destination device or gateway. We compare the performance of BCR with that of the Ad-hoc On-Demand Distance Vector (AODV) routing protocol in a network of devices. The results show that the routing overhead of the BCR protocol is times lower compared to AODV at the cost of a slightly lower packet delivery ratio. BCR is fairly resistant to both Blackhole and Greyhole attacks. The results show that the BCR protocol enables distributed routing in heterogeneous IoT networks.
机译:在本文中,我们为不受信任的IoT设备网络提出了一种新颖的基于区块链的合同路由(BCR)协议。与传统的安全路由协议不同,在传统的安全路由协议中,需要中央授权机构(CA)来简化每个设备的标识和身份验证,而BCR协议则在没有CA的情况下以分布式方式运行。 BCR协议利用智能合约在异构IoT网络中发现通往目的地或数据网关的路由。任何中间设备都可以保证从源IoT设备到目标设备或网关的路由。我们将BCR的性能与设备网络中的Ad-hoc按需距离矢量(AODV)路由协议的性能进行了比较。结果表明,与AODV相比,BCR协议的路由开销要低几倍,但代价是分组传送率略低。 BCR对黑洞和灰洞攻击具有相当的抵抗力。结果表明,BCR协议支持异构IoT网络中的分布式路由。

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