DNAIoT——物联网的动态网络架构

Gyanesh Samanta, Rishal Ramesh, Rushil Saxena, Devdarshan K Sardar, Sidhant Chourasiya, Fancy C
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引用次数: 0

摘要

网络物理系统由传感、计算、控制和基础设施联网等不同领域组成,通常通过互联网连接。用单独的控制器或开关控制每台设备似乎既乏味又麻烦。在当今世界,智能设备或智能集线器允许我们连接有限数量的设备,通常在30-40左右。在本文中,我们提出了一种方法,可以无缝连接到200多个物联网设备,而不会影响单点的带宽。在连接的网络系统中,您可以线性地增加设备的数量。这是一个不同于现有的基于WiFi和蓝牙的系统的独特系统。我们使用WiFi作为第一通信链路,为了控制物联网设备,我们使用Arduino Uno WiFi REV2微控制器,配备Zigbee[2]通信。Arduino Uno WiFi REV2作为WiFi和Zigbee[2]通信之间的桥梁。这是一个简单的基于物联网的工作,一次连接多个设备,并在设备之间提供稳定,可靠和快速的连接,通信和控制。根据我们的方法,我们可以在1000米的范围内连接2000多个设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNAIoT - Dynamic Network Architecture for IoT
Cyber-physical systems consist of various domains such as sensing, computation, controlling and networking in infrastructure, often connected by the internet. Controlling each device with separate controllers or switches seems tedious and troublesome. In today’s world, smart devices or an intelligent hub allow us to connect a limited number of devices, usually around 30-40. In this paper, we propose a way in which you can connect to over 200 IoT devices seamlessly without affecting the bandwidth to a single point. In a connected network system, you can increase the number of devices linearly. It is a unique system that is different from the existing systems based on WiFi and Bluetooth. We have used WiFi as the first communication link, and for controlling the IoT devices, we are using the Arduino Uno WiFi REV2 microcontroller equipped with Zigbee [2] communication. The Arduino Uno WiFi REV2 works as a bridge between WiFi and Zigbee [2] communication. This is a simple IoT-based work that connects multiple devices at once and provides a stable, reliable and fast connection, communication, and control between the devices As per our methodology we can connect more than 2000 devices over a range of 1000 meters.
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