scholarly journals Design And Build A Room Security System Based On Internet Of Things (IOT)

2021 ◽  
Vol 2 (3) ◽  
pp. 710-717
Author(s):  
Juman Kundang K ◽  
Tjahjono B ◽  
Yulhendri ◽  
Apresia Kadek

Workspace or home security systems required special attention, especially in the issue of locks for room security that must be unique, not easily opened by unauthorized people to enter the room. In this research, indoor security systems applied Internet of things (IoT), the use of MQTT Broker which functions as a getway for data transactions between publishers and subscribers, power supply and ESP8266. The method to building the smart doorlock was use prototype method, designed  the system and design diagrams, used UML (Unified Manipulation Language), the analysing problem used the PIECES method. The use of the MQTT broker functions as a gateway to connect publishers, subscribers, power supplies and the ESP8266 wifi module which functions as a gateway between devices to the mobile. The result of this researched was prototype the smart door lock system using IoT.

2019 ◽  
Vol 10 (1) ◽  
pp. 367-374
Author(s):  
Jalu Wardoyo ◽  
Noor Hudallah ◽  
Aryo Baskoro Utomo

Tingginya tindak kejahatan pencurian di rumah tangga perlu diantisipasi dengan penggunaan sistem keamanan rumah yang modern, salah satunya yaitu smart home. Salah satu penerapan smart home berupa safety system. Studi ini mengajukan perancangan sistem keamanan smart home berbasis mikrokontroler. Sistem keamanan smart home ini menggunakan kombinasi metode pengaman biometric fingerprint dan password. Metode perancangan sistem dengan metode Research and Development (RnD). Proses RnD dibagi menjadi tiga tahap yaitu tahap studi, research, dan pengembangan. Tahap studi meliputi studi pustaka dan studi lapangan terkait sistem keamanan rumah, tahap research berupa pembuatan dan pengujian prototype sistem keamanan, dan tahap pengembangan berupa pengujian dan perbaikan terhadap kekurangan sistem keamanan. Penelitian ini menghasilkan prototype sistem keamanan smart home yang memiliki kemampuan memberikan akses terhadap pintu dengan metode autentifikasi biometric fingerprint dan password serta fitur tambahan emergency backup supply dan emergency entry. Akses pintu diberikan ketika autentifikasi berhasil dilakukan dan mikrokontroler akan memberikan perintah untuk menghidupkan solenoid door lock sebagai mekanisme penguncian pintu. Sistem ini bekerja menggunakan beberapa perangkat diantaranya: Arduino Mega, modul fingerprint, keypad, LCD, power supply unit (PSU), magnetic switch, solenoid door lock, dan buzzer.


2020 ◽  
Vol 9 (1) ◽  
pp. 1009-1014

With evolving technology in the field of automation, the implementation of the word “Smart” on the equipments we use in our day to day life has become a sort of a fashion trend among young researchers. Smart Homes and their development are sky-rocketing in reference to controlling daily objects using voice/gesture/apps, paths which are a free flow of development which researchers tend to be inclined to. But intricate care is also given towards using this technology for developing security and safety systems. Safety and security systems are very important in daily life as they tend to be very helpful in stopping crime. Safety and Security will be achieved by a three-layer security system includes a RFID based detection system and Face Detection. This article gives intricate details on a novel Home security system implementing automation and Internet of Things


2019 ◽  
Vol 4 (2) ◽  
pp. 112-120
Author(s):  
Hadjira BELAIDI ◽  
Nour-El-Houda MEDDAH

This work deals with lock and home security systems. First, Motion sensors detect movement indoors and outdoors to guard against intruders, protect valuables and more. Thus, if any movement, RFID reader will be activated and database will be scanned to identify the persons who have the access to the home. This enhances the effectiveness of the security system and provides the user with the complete, whole-house protection he needs. An RFID badge can be used to unlock the door and access to the home. Alerts also are received on the smart phone if motion is sensed in a protected area inside or outside; giving the user the information it needs to act quickly. The door can also be remotely locked/unlocked. A microcontroller (ATmega2560) is used to control the entire system, and GSM is used to send alerts to the Smartphone. An Ethernet shield that connects the microcontroller to the database (DB) is also added.


Journal ICTEE ◽  
2021 ◽  
Vol 2 (2) ◽  
pp. 20
Author(s):  
Tri Sakti ◽  
Imam Suharjo

AbstrakTechnological advances today are very developed, so it can help the community in monitoring home security. One example is offices or houses owned by themselves. In this research I am interested in doing research and development in the field of IoT where this research aims to build a system that can help homeowners to provide security at the door of the house during remote travel. With fingerprint system equipped with door monitoring using botTelegram this system itself is implemented with the concept of internet of things (IoT). In this study using the concept of internet of things implemented in the automatic door system using microcontroller that serves as a prototype regulator so that the prototype can run properly. In this system has an interface in the form of Telegram-based applications by utilizing BotTelegram that serves as a communication tool between users and the system. In this system, users can monitor the security of the door when traveling or at home. Based on the results of the study, it can be concluded that the system can run with a percentage of 85% where the system can open automatic doors with fingerprint configuration data that has been registered in the fingerprint module. Keywords: Internet of things, fingerprints, telegram bots, nodemcu, Door Security


2021 ◽  
Vol 6 (6) ◽  
pp. 69-73
Author(s):  
Md. Abdullah Al Rakib ◽  
Md. Moklesur Rahman ◽  
Md. Sohel Rana ◽  
Md. Sanjib Islam ◽  
Fysol Ibna Abbas

In this paper, we worked on how to control home apparatuses, safety, and security systems utilizing GSM innovation by utilizing a cell phone. We will likewise show that we can control the apparatuses even without a phone by sending an ordinary call. The favorable position of utilizing GSM innovation is that we can handle home appliances from any place in the world. This system permits the proprietor to control the appliances and to get a feedback status of the home apparatuses by sending calls just as through a portable application. For the home security system, we are utilizing an antitheft announcing system that will report the proprietor by sending a message and ringing a call. Likewise, for the security system, when fire or gas spillage is expected to occur, it will also report the proprietor by sending a call. Subsequently, by utilizing GSM innovation, it gives remote access to the gadgets to be controlled.


2014 ◽  
Vol 571-572 ◽  
pp. 1037-1041
Author(s):  
Ya Liu ◽  
Jian Hua Mao ◽  
Xue Feng Liu

The traditional smart security systems have poor extensity, delayed alarm systems, and cannot be controlled through the remote network. To solve the shortcomings, this article proposed a smart security system based on Sensor Web. The system used Sensor Observation Service to achieve the data transmission and storage in real time. Users can send requests to Sensor Observation Service to get home environment information in real time via Internet. The system also implemented Sensor Event Service, so that users can get home security alarm information in real time by subscribing the events they are interested in.


Author(s):  
Ahmed Waleed Al-Khafaji

Physical security systems are applied to alert in advance a well-known vector of attacks. This paper presents an analysis of the research and assessment of physical security systems applying the PSMECA technique (analysis of modes, efforts, and criticality of physical security). The object of research and analysis is the physical security system of the Ministry of Education and Science of Iraq (as the infrastructure of the region's objects), as well as the area of the compact living of students and co-workers (campus). This paper discusses the organization of physical security systems, which are based on devices with low power consumption and function in the Internet of things environment. The main aim is to describe and develop a physical security system that functions in the Internet of things environment, as well as the development of a scheme for the research and development of models and methods for risk analysis, models of functions and components, models of failures and conducting research and analysis of occurrence failures of PSS. The generalized structural and hierarchical scheme of the physical security system of the infrastructure of the region is presented, as well as the applied application of the scheme is illustrated by the example of the physical security system of a student campus of one of the universities of Baghdad. The functional modeling scheme of the object is provided and is based on the use of the Raspberry Pi microcomputer and the Arduino microcontroller. The set-theoretical models of functions, components, and failures of the system under study, as well as the projection of a hierarchical failure structure in the table of the basic structural elements of the system, are presented. The IDEF0 diagram, showing a power outage scenario (accidental or intentional) in connection with lighting and video subsystems, is presented. The scheme of research and development of models and methods of analysis of risks of PSS is carried out in the paper. A PSMECA table for the CCTV system has been created, which allows you to more precisely determine the cause of the failure in the physical security system and the importance of failure criticality


2015 ◽  
Vol 74 (10) ◽  
Author(s):  
Norlezah Hashim ◽  
Mohd Amir Hafifi Abdul Razak ◽  
Fakrulradzi Idris

This paper explains the design and implementation of home security systems using the most widely deployed enhancement to the 802.15.4 standard, which is better known as Zigbee. Home security systems nowadays are expensive and complicated to install. Two types of sensors were used in this project, motion sensor and magnetic door sensor. These sensors were used as the end device to detect any intruder. If any intruder bypasses the motion sensor or the magnetic door sensor, a signal will be sent to the system and the alarm will be triggered together with Graphical User Interface (GUI) display on a personal computer. The performance of the designed system was analyzed in terms of detectable range and delay. Result shows that the designed system is capable of detecting up to 22 meters of distance for indoor use at maximum delays of 15 seconds. The home security system using Zigbee has been successfully designed, implemented and analyzed. 


Author(s):  
Hasan Salman ◽  
Md. Arifur Rahman Nayeem ◽  
Asif Mohammad ◽  
Xiaodong Bai ◽  
Md. Rezwan Mamun ◽  
...  

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