This is an unedited manuscript accepted for publication and provided as an Article in Press for early access at the author’s request. The article will undergo copyediting, typesetting, and galley proof review before final publication. Please be aware that errors may be identified during production that could affect the content. All legal disclaimers of the journal apply.

Yatharth Agrawal,
- Student, Spring Valley Public School, Kanadiya Bypass Road, Kanadia Main Rd, Indore, Madhya Pradesh, India
Abstract document.addEventListener(‘DOMContentLoaded’,function(){frmFrontForm.scrollToID(‘frm_container_abs_108550’);});Edit Abstract & Keyword
The Internet of Things (IoT) concept involves connecting and monitoring physical objects via the Internet, generating significant interest among researchers and users due to widespread Internet availability. This concept encompasses a broad spectrum of devices, including Internet-connected “smart” versions of traditional appliances, novel gadgets designed for an Internet-enabled environment, and Internet-enabled sensors transforming various sectors such as manufacturing, healthcare, transportation, and living spaces. Home automation, an IoT application, has significantly simplified people’s lives. The 21st century has fully embraced IoT in smart home automation, enhancing the ability to control and operate household appliances and devices remotely in a convenient and comfortable manner. IoT-based home automation systems incorporate servers and sensors, with remote servers situated on the Internet facilitating data management and processing without the need for personal computers. This study includes household systems like fire prevention systems, surveillance cameras, smart TVs, lighting systems, smart thermostats, air conditioners, doors, fans, and humidity and gas monitoring systems. Users can receive alerts through microcontrollers and sensors from any location. The implementation of IoT has streamlined the performance of home automation systems in residential, commercial, and workplace settings, delivering efficient and effective safety, security, and comfort. A home automation system utilizing VPN technology offers a more secure and robust voice-controlled system with the assistance of a microcontroller, enhancing the intelligence and usability of existing appliances. This system also includes home security functions like access control and alarm systems. When connected to the internet, household devices become key elements of the Internet of Things (IoT) ecosystem. Moreover, the overall sensors message receiving, handling and response system has to be more efficient and various architectures have been presented in the paper.
Keywords: Sensors, Internet of Things (IoT), Microcontroller, Home automation, Gadgets, Communication protocols, Message Queuing Telemetry Transport (MQTT), Constrained Application Protocol (CoAP), Message Response Time
[This article belongs to International Journal of Mobile Computing Technology (ijmct)]
Yatharth Agrawal. Efficient Message Captivating Environment in IOT Home Networks. International Journal of Mobile Computing Technology. 2024; 02(02):-.
Yatharth Agrawal. Efficient Message Captivating Environment in IOT Home Networks. International Journal of Mobile Computing Technology. 2024; 02(02):-. Available from: https://journals.stmjournals.com/ijmct/article=2024/view=0
References
document.addEventListener(‘DOMContentLoaded’,function(){frmFrontForm.scrollToID(‘frm_container_ref_108550’);});Edit
- El-Hajj M, Fadlallah A, Chamoun M, Serhrouchni A. A survey of internet of things (IoT) authentication schemes. Sensors. 2019 Mar 6;19(5):1141.
- Kelly SD, Suryadevara NK, Mukhopadhyay SC. Towards the implementation of IoT for environmental condition monitoring in homes. IEEE Sensors J. 2013 May 16;13(10):3846-53.
- Al-Ali AR, Al-Rousan M. Java-based home automation system. IEEE Trans Consum Electron. 2004 May;50(2):498-504.
- ElShafee A, Hamed KA. Design and implementation of a WIFI based home automation system. Int J Comput Inf Eng. 2012 Aug 28;6(8):1074-80.
- Cui Y, Kim M, Gu Y, Jung JJ, Lee H. Home appliance management system for monitoring digitized devices using cloud computing technology in ubiquitous sensor network environment. Int J Distrib Sens Netw. 2014 Feb 18;10(2):174097.
- Gabriele T, Pantoli L, Stornelli V, Chiulli D, Muttillo M. Smart power management system for home appliances and wellness based on wireless sensors network and mobile technology. Proc XVIII AISEM Annu Conf. 2015 Feb 3;2015:1-4.
- Lamine H, Abid H. Remote control of a domestic equipment from an Android application based on Raspberry pi card. Proc 15th Int Conf Sci Technol Autom Control Comput Eng (STA). 2014 Dec 21;2014:903-8.
- Jivani MN. GSM based home automation system using app-inventor for android mobile phone. Int J Adv Res Electr Electron Instrum Eng. 2014 Sep;3(9).
- Gebhardt J, Massoth M, Weber S, Wiens T. Ubiquitous smart home control on a raspberry pi embedded system. UBICOMM 2014-8th Int Conf Mobile Ubiquitous Comput Syst Serv Technol. 2014;172-7.
- Baraka K, Ghobril M, Malek S, Kanj R, Kayssi A. Low cost arduino/android-based energy-efficient home automation system with smart task scheduling. Proc 5th Int Conf Comput Intell Commun Syst Netw. 2013 Jun 5;2013:296-301.
- Koyuncu B. PC remote control of appliances by using telephone lines. IEEE Trans Consum Electron. 1995 Feb;41(1):201-9.
- Jain S, Vaibhav A, Goyal L. Raspberry Pi based interactive home automation system through E-mail. Proc Int Conf Reliab Optim Inf Technol (ICROIT). 2014 Feb 6;2014:277-80.
- Coskun I, Ardam H. A remote controller for home and office appliances by telephone. IEEE Trans Consum Electron. 1998 Nov;44(4):1291-7.
- Vishwakarma SK, Upadhyaya P, Kumari B, Mishra AK. Smart energy efficient home automation system using IoT. Proc 4th Int Conf Internet Things Smart Innov Usages (IoT-SIU). 2019 Apr 18;2019:1-4.
- Manojkumar P, Suresh M, Ayub Ahmed AA, Panchal H, Rajan CA, Dheepanchakkravarthy A, et al. A novel home automation distributed server management system using Internet of Things. Int J Ambient Energy. 2022 Dec 31;43(1):5478-83.
- Khan MA, Ahmad I, Nordin AN, Ahmed AE, Mewada H, Daradkeh YI, et al. Smart android based home automation system using internet of things (IoT). Sustainability. 2022 Aug 28;14(17):10717.
- Chen WE, Wang YH, Huang PC, Huang YY, Tsai MY. A smart IoT system for waste management. Proc 1st Int Cogn Cities Conf (IC3). 2018 Aug 7;2018:202-3.
- Sheikh RU, Kale PA, Sarfaraj S, Sukhdeve S, Sherekar K, Faruqui S. A review paper on IoT based smart security and home automation.
- Jason RC, Nurse, Ahmed Atamli, Andrew Martin. Towards usable framework for modelling security privacy risk in smart home. Proc 4th Int Conf Hum Aspects Inf Secur Priv Trust. 2016;1-12.
- Raza S, Misra P, He Z, Voigt T. Building the Internet of Things with Bluetooth smart. Ad Hoc Netw. 2017 Mar 15;57:19-31.
- Desai D, Upadhyay H. Security and privacy consideration for internet of things in smart home environments. Int J Eng Res Dev. 2014 Nov;10(11):73-83.
- Kumar PM, Sandhya N. Bluetooth based wireless home automation system using FPGA. J Theor Appl Inf Technol. 2015 Jul 31;77(3).
- Wang M, Zhang G, Zhang C, Zhang J, Li C. An IoT-based appliance control system for smart homes. Proc 4th Int Conf Intell Control Inf Process (ICICIP). 2013 Jun 9;2013:744-7.
- Piyare R, Tazil M. Bluetooth based home automation system using cell phone. Proc 15th Int Symp Consum Electron (ISCE). 2011 Jun 14;2011:192-5.
- Gazafroudi AS, Soares J, Ghazvini MA, Pinto T, Vale Z, Corchado JM. Stochastic interval-based optimal offering model for residential energy management systems by household owners. Int J Electr Power Energy Syst. 2019 Feb 1;105:201-19.
- Djumanazarov O, Väänänen A, Haataja K, Toivanen P. An overview of IoT-based architecture model for smart home systems. Proc Int Conf Intell Syst Des Appl. 2021 Dec 13;2021:696-706.
- Overmars A, Venkatraman S. Towards a secure and scalable IoT infrastructure: a pilot deployment for a smart water monitoring system. Technologies. 2020 Sep 26;8(4):50.
- Qiu W, Saleem K, Pham M, Halpern M, Beresford-Smith B, Overmars A, et al. Robust multipath links for wireless sensor networks in irrigation applications. Proc 3rd Int Conf Intell Sens Sens Netw Inf (ISSNIP). 2007 Dec 3;2007:95-100.
- Yar H, Imran AS, Khan ZA, Sajjad M, Kastrati Z. Towards smart home automation using IoT-enabled edge-computing paradigm. Sensors. 2021 Jul 20;21(14):4932.
- Taiwo O, Ezugwu AE. Internet of Things‐based intelligent smart home control system. Secur Commun Netw. 2021;2021(1):9928254.
| Volume | 02 |
| Issue | 02 |
| Received | 11/10/2024 |
| Accepted | 12/10/2024 |
| Published | 21/10/2024 |
function myFunction2() {
var x = document.getElementById(“browsefigure”);
if (x.style.display === “block”) {
x.style.display = “none”;
}
else { x.style.display = “Block”; }
}
document.querySelector(“.prevBtn”).addEventListener(“click”, () => {
changeSlides(-1);
});
document.querySelector(“.nextBtn”).addEventListener(“click”, () => {
changeSlides(1);
});
var slideIndex = 1;
showSlides(slideIndex);
function changeSlides(n) {
showSlides((slideIndex += n));
}
function currentSlide(n) {
showSlides((slideIndex = n));
}
function showSlides(n) {
var i;
var slides = document.getElementsByClassName(“Slide”);
var dots = document.getElementsByClassName(“Navdot”);
if (n > slides.length) { slideIndex = 1; }
if (n (item.style.display = “none”));
Array.from(dots).forEach(
item => (item.className = item.className.replace(” selected”, “”))
);
slides[slideIndex – 1].style.display = “block”;
dots[slideIndex – 1].className += ” selected”;
}
