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Security Access Protocols in IoT Networks with Heterogenous Non-IP Terminals

机译:具有异构非IP终端的IoT网络中的安全访问协议

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To provide advanced services to citizens, Smart City services are enabled by a massive use of Internet of Things (IoT) technologies. The envisaged huge amount of sensors, and terminals with a great variety of typologies and applications, do not allow having a unique way to manage them, requiring for example minimal packaging and presentation overhead for many of them. In general in a network providing Smart City services, both IP and non-IP devices are present. In this paper, we tackle the security issue for non-IP devices able to connect by a short-range with a mediator gateway, forming a capillary access network, which can be seen as a short range extension of conventional access network in order to efficiently capture the IoT traffic. In particular, we propose security algorithms both for uni- and bi-directional terminals, depending on the terminal capabilities. The security algorithms are based on a local key renewal (without any exchange in air), performed just considering the local clock time. Performance are obtained respect to the maximum number of terminals that can be managed by one mediator gateway and the maximum packet delay as a function of the number of terminals in the area.
机译:为了向公民提供先进的服务,智能城市服务通过大规模使用物联网(物联网)技术。设想大量的传感器和具有各种类型的类型和应用的终端,不允许拥有一种独特的方法来管理它们,需要为其中许多提供最小的包装和呈现开销。通常,在提供智能城市服务的网络中,存在两个IP和非IP设备。在本文中,我们解决了能够通过介体网关的短程连接的非IP设备的安全问题,形成毛细管接入网络,可以看作是传统接入网络的短程扩展,以便有效地捕获物联网流量。特别是,根据终端能力,我们提出了针对单向和双向终端的安全算法。安全算法基于本地密钥续订(没有空中中的任何交换),立即考虑本地时钟时间。获得对可以由一个介质网关管理的最大终端数和最大分组延迟的性能,以及该区域中终端数的函数。

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