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IoT Registration and Authentication in Smart City Applications with Blockchain

机译:具有区块链的智能城市应用中的IoT注册和身份验证

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摘要

The advent of 5G will bring a massive adoption of IoT devices across our society. IoT Applications (IoT Apps) will be the primary data collection base. This scenario leads to unprecedented scalability and security challenges, with one of the first areas for these applications being Smart Cities (SC). IoT devices in new network paradigms, such as Edge Computing and Fog Computing, will collect data from urban environments, providing real-time management information. One of these challenges is ensuring that the data sent from Edge Computing are reliable. Blockchain has been a technology that has gained the spotlight in recent years, due to its robust security in fintech and cryptocurrencies. Its strong encryption and distributed and decentralized network make it potential for this challenge. Using Blockchain with IoT makes it possible for SC applications to have security information distributed, which makes it possible to shield against Distributed Denial of Service (DDOS). IoT devices in an SC can have a long life, which increases the chance of having security holes caused by outdated firmware. Adding a layer of identification and verification of attributes and signature of messages coming from IoT devices by Smart Contracts can bring confidence in the content. SC Apps that extract data from legacy and outdated appliances, installed in inaccessible, unknown, and often untrusted urban environments can benefit from this work. Our work’s main contribution is the development of API Gateways to be used in IoT devices and network gateway to sign, identify, and authorize messages. For this, keys and essential characteristics of the devices previously registered in Blockchain are used. We will discuss the importance of this implementation while considering the SC and present a testbed that is composed of Blockchain Ethereum and real IoT devices. We analyze the transfer time, memory, and CPU impacts during the sending and processing of these messages. The messages are signed, identified, and validated by our API Gateways and only then collected for an IoT data management application.
机译:5G的出现将在社会中造成大规模采用物联网设备。 IOT应用程序(IOT Apps)将是主要数据收集基础。此方案导致前所未有的可扩展性和安全挑战,其中包含智能城市(SC)的第一个区域之一。新的网络范例中的IOT设备,如Edge Computing和Fog Computing,将收集来自城市环境的数据,提供实时管理信息。其中一个挑战是确保从边缘计算发送的数据是可靠的。由于其在Fintech和Cryptocurrencies中的强劲安全性,区块链是近年来近年来的技术。它强大的加密和分布式和分散的网络使其成为这一挑战的潜力。使用带有IOT的区块链使得SC应用程序可以具有分布的安全信息,这使得可以防止分布式拒绝服务(DDOS)。 SC中的IOT设备可以具有长寿命,这增加了具有过时固件引起的安全漏洞的可能性。通过智能合同添加来自IOT设备的消息的一层识别和验证和签名可以带来对内容的信心。 SC应用程序从传统和过时的设备中提取数据,安装在无法访问,未知,并且通常不受信任的城市环境中可以受益于此工作。我们的工作主要贡献是在IOT设备和网络网关中使用API​​网关的开发,以签署,识别和授权消息。为此,使用先前在区块链中注册的设备的键和基本特征。我们将讨论此实施的重要性,同时考虑SC,并呈现由SlockChain Ethereum和Real IoT设备组成的测试设备。我们在发送和处理这些消息期间分析转移时间,内存和CPU影响。通过我们的API网关签名,识别并验证消息,然后只收集IOT数据管理应用程序。

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