Abstract

In the current era of smart homes and smart grids, complex technical systems that allow for the automation of domestic functions are rapidly growing and becoming more widely available. A wide range of technologies and software applications are now available for use in smart homes, and many of them are free to use. They allow for communication between home appliances and their users, as well as the automation, monitoring, and remote-control capabilities of home appliances themselves. Unfortunately, a lot of previous research ignored security issues involving the great attention to detail of the data in a transmission session within the devices in smart home architectures, which is why this study proposed smart grid secured transmission flags suitable for preventing every bit of data transmission in a smart home. Secure Message Queueing Transport Protocol (MQTT) in Internet of Things (IoT) Smart Homes protocols was utilized; an experimental testbed was designed with a prototype involving the process of a smart home system and the sequences of the data transmission. The evaluation of the proposed strategies has shown an improved bi-directional secure resource constraint strategy for the smart home within data packet transmission at 70 to 80 mbps over secure MQTT. A number of concerns, including technological barriers, difficulties, challenges, and future trends, as well as the role of users, have been presented in this study, among others.

Highlights

  • Message Queueing Transport Protocol (MQTT) Secure Transmission Flags inSmart homes deliver on the need to drastically improve families’ lives through socially appropriate and timely assistance to perceive, anticipate, and respond to actions in the home [1]

  • There has been a great deal of prior research work on smart homes, and it has been demonstrated that smart homes are equivalent to home automation to some extent, in that smart devices interact with one another through a communications protocol such as MQTT

  • This study has recognized that in the contemporary era of smart homes and intelligent, complex, and technical solutions that automate domestic operations, there is a need for ensuring that the security of the system is well addressed

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Summary

Introduction

Smart homes deliver on the need to drastically improve families’ lives through socially appropriate and timely assistance to perceive, anticipate, and respond to actions in the home [1]. An important protocol associated with the interaction of intelligent devices and facilities in a smart home is MQTT [3]. Flags” in a transmission session over the MQTT protocol are associated with responses to security events at varying degrees of sensitivity to detecting security issues. This can be justified by the fact that the MQTT protocol, which is used by the broker to facilitate. The justification for that lies with the challenging issues of a secure communication solution for the IoT since there were so many variables to consider Some of these difficulties were caused by the vastness of classification and the number of devices that can be used in the IoT, as well as the limited resources available for dealing with security approaches. In order to maintain secure contact between subscribers and publishers, it is necessary to develop a good security technique that provides secure communication between both parties, which is the goal of this article

Related Work
Research Methodology
Architectural Framework
Algorithm Development
Experimental Analysis
Presentation of Experimental Analysis Results and Discussion
Conclusions
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