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IPv6 Addressing Proxy: Mapping Native Addressing from Legacy Technologies and Devices to the Internet of Things (IPv6)

机译:IPv6地址代理:将传统地址和技术从旧版技术和设备映射到物联网(IPv6)

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摘要

Sensors utilize a large number of heterogeneous technologies for a varied set of application environments. The sheer number of devices involved requires that this Internet be the Future Internet, with a core network based on IPv6 and a higher scalability in order to be able to address all the devices, sensors and things located around us. This capability to connect through IPv6 devices, sensors and things is what is defining the so-called Internet of Things (IoT). IPv6 provides addressing space to reach this ubiquitous set of sensors, but legacy technologies, such as X10, European Installation Bus (EIB), Controller Area Network (CAN) and radio frequency ID (RFID) from the industrial, home automation and logistic application areas, do not support the IPv6 protocol. For that reason, a technique must be devised to map the sensor and identification technologies to IPv6, thus allowing homogeneous access via IPv6 features in the context of the IoT. This paper proposes a mapping between the native addressing of each technology and an IPv6 address following a set of rules that are discussed and proposed in this work. Specifically, the paper presents a technology-dependent IPv6 addressing proxy, which maps each device to the different subnetworks built under the IPv6 prefix addresses provided by the internet service provider for each home, building or user. The IPv6 addressing proxy offers a common addressing environment based on IPv6 for all the devices, regardless of the device technology. Thereby, this offers a scalable and homogeneous solution to interact with devices that do not support IPv6 addressing. The IPv6 addressing proxy has been implemented in a multi-protocol card and evaluated successfully its performance, scalability and interoperability through a protocol built over IPv6.
机译:传感器针对大量不同的应用环境利用了大量的异构技术。涉及到的大量设备要求该Internet是未来的Internet,具有基于IPv6的核心网络和更高的可扩展性,以便能够寻址我们周围的所有设备,传感器和事物。通过IPv6设备,传感器和事物进行连接的能力就是所谓的物联网(IoT)的定义。 IPv6提供了寻址空间,可以到达这组无处不在的传感器,但是工业,家庭自动化和物流应用领域中的传统技术,例如X10,欧洲安装总线(EIB),控制器局域网(CAN)和射频ID(RFID) ,不支持IPv6协议。因此,必须设计一种将传感器和识别技术映射到IPv6的技术,从而允许在IoT上下文中通过IPv6功能进行同质访问。本文提出了在这项工作中讨论和提出的一组规则之后,每种技术的本机寻址与IPv6地址之间的映射。具体来说,本文提出了一种与技术相关的IPv6寻址代理,该代理将每个设备映射到在互联网服务提供商为每个家庭,建筑物或用户提供的IPv6前缀地址下构建的不同子网。 IPv6寻址代理为所有设备提供基于IPv6的通用寻址环境,而与设备技术无关。因此,这提供了可扩展且同质的解决方案,可与不支持IPv6寻址的设备进行交互。 IPv6寻址代理已在多协议卡中实现,并通过基于IPv6的协议成功评估了其性能,可伸缩性和互操作性。

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