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Implementation of Neighbor Discovery Protocol as Communication Initiator Between Sensor Nodes and IoT Middleware in 6LoWPAN Networks

机译:在6LoWPAN网络中实现邻居发现协议作为传感器节点和IoT中间件之间的通信发起者

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Communication between sensor nodes and IoT middleware based on 6LoWPAN offers several advantages. However, there is a challenge on forming communication in 6LoWPAN. Sensor nodes cannot automatically find the existing IoT middleware, and need configuring manually using IP address and prefix-based as used by IoT middleware. Neighbor Discovery Protocol (NDP) suggests the ability to self-configure communication between IoT middleware and sensor nodes using Stateless Address Autoconfiguration (SLAAC) mechanism. Experiments show that the sensor nodes have automatic IP addressing and can discover the middleware's existence and address. The discovery delay is around 1ms with the number of exchanged NDP control message of each node is six. The packet delivery ratio when using CoAP and MQTT protocols are 93% and 100% respectively, and the maximum reachability range is 105m.
机译:传感器节点与基于6LoWPAN的IoT中间件之间的通信具有许多优势。但是,在6LoWPAN中形成通信存在挑战。传感器节点无法自动找到现有的IoT中间件,需要使用IoT中间件所使用的IP地址和基于前缀的方式进行手动配置。邻居发现协议(NDP)建议使用无状态地址自动配置(SLAAC)机制自配置IoT中间件和传感器节点之间的通信的功能。实验表明,传感器节点具有自动IP寻址功能,并且可以发现中间件的存在和地址。发现延迟约为1ms,每个节点交换的NDP控制消息数为6。使用CoAP和MQTT协议时的数据包传递率分别为93%和100%,最大可达范围为105m。

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