Power Consumption prediction of IoT application Protocols Based on Linear Regression

Sidna Jeddou, Amine Baïna, Najid Abdallah, H. E. Alami
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引用次数: 1

Abstract

The advent of the Internet of Things (IoT) augurs new cutting-edge applications in modern life such as smart cities and smart grids. These applications require protocols more efficient for ensuring the reliability of data communications in the IoT networks. Many works state that IoT cannot meet their demands without application protocols improvement with Artificial Intelligence (AI) as IoT are expected to generate unprecedented traffic giving IoT researchers access to data that can help in studying and analyzing the demands and develop application protocols conceptions to meet the requirement of IoT applications. In literature, several works introduced AI in some layers of the TCP/IP model including wireless communication and routing. In this article, an evaluation of application protocols HTTP, MQTT, DDS, XMPP, AMQP, and CoAP has been presented; and subsequently, the power consumption prediction of MQTT and COAP based on the linear regression model is analyzed, in order to enhance data communications in IoT applications.
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基于线性回归的物联网应用协议功耗预测
物联网(IoT)的出现预示着智能城市和智能电网等现代生活中新的尖端应用。这些应用需要更有效的协议来确保物联网网络中数据通信的可靠性。许多工作表明,如果没有人工智能(AI)对应用协议的改进,物联网就无法满足他们的需求,因为物联网有望产生前所未有的流量,使物联网研究人员能够获得有助于研究和分析需求的数据,并开发应用协议概念,以满足物联网应用的需求。在文献中,一些作品在TCP/IP模型的某些层(包括无线通信和路由)中引入了AI。本文对HTTP、MQTT、DDS、XMPP、AMQP和CoAP等应用协议进行了评估;随后,分析了基于线性回归模型的MQTT和COAP的功耗预测,以增强物联网应用中的数据通信。
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