Arduino Based Automatic Door Lock Design Using Personal Identification Number Pin

  • Anton Anton Informatics, Ngudi Waluyo University
  • Sri Mujiyono Informatics, Ngudi Waluyo University
Keywords: Door locks, Pins, Arduino IDE Development Applications

Abstract

Current developments require more innovation in everyday life, one of which is home or office door security. Initially, home or office door security was only with ordinary padlocks or door keys found in most houses in Indonesia which had shortcomings in terms of security and effectiveness. In the current era of digitalization, almost every line of human activity is no exception, technology is currently continuously developing more rapidly. This can be observed through the many sophisticated equipment that utilizes technology so that the work system can run automatically. Of course, this makes it much easier for someone to carry out their activities and the work they do is also more efficient. This research aims to design a door lock system that is able to increase security, effectiveness and comfort in accessing rooms, both home and office. This system utilizes an Arduino microcontroller as the brain of the system, a keypad as input for entering the PIN code. Users are allowed to open the door simply by entering a predetermined PIN code. The main advantage of this system is its ease of use and a better level of security compared to conventional door locks. The results of this research are a pin-based door lock system using Arduino and keypad. This system uses the Arduino IDE development application for writing program code and Proteus for work simulation.

References

Adella, A. F., Fardika, M., Putra, P., Taufiqurrahman, F., & Kaswar, A. B. (2020). Pintu Otomatis Berbasis Ultrasonic Internet of Things. Jurnal MEDIA ELEKTRIK, 17(3), 80–84.

Adkins, H., Beyer, B., Blankinship, P., Lewandowski, P., Oprea, A., & Stubblefield, A. (2020). Building secure and reliable systems: best practices for designing, implementing, and maintaining systems. O'Reilly Media.

Blum, J. (2019). Exploring Arduino: tools and techniques for engineering wizardry. John Wiley & Sons.

Chen, V., Gupta, A., & Marino, K. (2020). Ask your humans: Using human instructions to improve generalization in reinforcement learning. arXiv preprint arXiv:2011.00517. https://doi.org/10.48550/arXiv.2011.00517

Dekker, S., Hollnagel, E., Woods, D., & Cook, R. (2008). Resilience Engineering: New directions for measuring and maintaining safety in complex systems. Lund University School of Aviation, 1, 1-6.

Domb, M. (2019). Smart home systems based on internet of things. In Internet of Things (IoT) for automated and smart applications. IntechOpen. https://doi.org/10.5772/intechopen.84894

Gultom, D., & Susanto, M. F. (2020). Studi Aplikasi Smartlock Pada Pintu Rumah Dengan Arduino Berbasis Iot Dengan Sensor Suara. Prosiding Industrial Research Workshop and National Seminar, 11(1), 239–245. https://doi.org/10.35313/irwns.v11i1.2001

Hasibuan, A., Rosdiana, R., & Tambunan, D. S. (2021). Design and Development of An Automatic Door Gate Based on Internet of Things Using Arduino Uno. Bulletin of Computer Science and Electrical Engineering, 2(1), 17-27. https://doi.org/10.25008/bcsee.v2i1.1141

Hazazi, H. (2024). Understanding and Improving the Usability, Security, and Privacy of Smart Locks from the Perspective of the End User (Doctoral dissertation, The University of North Carolina at Charlotte).

Ito, H., Yamamoto, K., Mori, H., & Ogata, T. (2022). Efficient multitask learning with an embodied predictive model for door opening and entry with whole-body control. Science Robotics, 7(65), eaax8177. https://doi.org/10.1126/scirobotics.aax8177

Kaul, L. (2023). Practical Arduino Robotics: A hands-on guide to bringing your robotics ideas to life using Arduino. Packt Publishing Ltd.

Khan, H., Ceci, J., Stegman, J., Aviv, A. J., Dara, R., & Kuber, R. (2020, December). Widely reused and shared, infrequently updated, and sometimes inherited: A holistic view of pin authentication in digital lives and beyond. In Proceedings of the 36th Annual Computer Security Applications Conference (pp. 249-262). https://doi.org/10.1145/3427228.3427240

Kondaveeti, H. K., Kumaravelu, N. K., Vanambathina, S. D., Mathe, S. E., & Vappangi, S. (2021). A systematic literature review on prototyping with Arduino: Applications, challenges, advantages, and limitations. Computer Science Review, 40, 100364. https://doi.org/10.1016/j.cosrev.2021.100364

Kuzlu, M., Jovanovic, V., Popescu, O., & Sarp, S. (2023). Development of Sensing and Programming Activities for Engineering Technology Pathways Using a Virtual Arduino Simulation Platform. https://doi.org/10.18260/1-2--43164

Lontoh, J. H., Mamahit, D. J., & Tulung, N. M. (2017). Rancang Bangun Kunci Pintu Elektronik Menggunakan Bluetooth berbasis Android. Jurnal Teknik Elektro Dan Komputer, 6(3), 97–104. https://doi.org/10.35793/jtek.v6i3.18067

Martani, A., & Arfiani, I. (2022). Perancangan Sistem Pintu Otomatis Menggunakan ESP32CAM. Jurnal Teknologi Dan Komputer (JTEK), 2(01), 104–110. https://doi.org/10.56923/jtek.v2i01.60

Morgante, P., & Peverati, R. (2020). The devil in the details: A tutorial review on some undervalued aspects of density functional theory calculations. International Journal of Quantum Chemistry, 120(18), e26332. https://doi.org/10.1002/qua.26332

Mostakim, M. N., Mahmud, S., Jewel, M. K. H., Rahman, M. K., & Ali, M. S. (2020). Design and development of an intelligent home with automated environmental control. International Journal of Image, Graphics and Signal Processing, 10(4), 1. https://doi.org/10.5815/ijigsp.2020.04.01

Novianti, T. (2019). Rancang bangun pintu otomatis dengan menggunakan RFID. Jurnal Teknik Elektro Dan Komputer TRIAC, 6(1), 8–13. https://doi.org/10.21107/triac.v6i1.4878

Noyes, J., & Baber, C. (1999). User-centred design of systems. Springer Science & Business Media.

Prabhu, G. R. D., & Urban, P. L. (2020). Elevating chemistry research with a modern electronics toolkit. Chemical Reviews, 120(17), 9482-9553. https://doi.org/10.1021/acs.chemrev.0c00206

Pradhan, P. (2017). The role of arduino for increasing performance and interest in programming for first-year engineering students (Master's thesis, University of Cincinnati).

Purnama, B. E. (2013). Sistem Pengendalian Keamanan Pintu Rumah Berbasis SMS (Short Message Service) Menggunakan Mikrokontroler Atmega 8535. Indonesian Journal of Networking and Security (IJNS), 2(4). http://dx.doi.org/10.55181/ijns.v2i4.156

Rahajoeningroem, T. (2013). Home Security System with Monitoring using Cellular Phone Network. Telekontran: Jurnal Ilmiah Telekomunikasi, Kendali dan Elektronika Terapan, 1(1), 9-9. https://doi.org/10.34010/telekontran.v1i1.1558

Reiss, E. (2012). Usable usability: simple steps for making stuff better. John Wiley & Sons.

Samsuddin, S., Susmanto, S., Munawir, M., Hidayat, T., Irfandi, I., & Maulinda, M. (2020). Perancangan Pintu Otomatis Menggunakan KEYPAD Berbasis Arduino AT Mega 328. Jurnal Pendidikan Dan Pengabdian Vokasi (JP2V), 1(1), 138–147. https://doi.org/10.32672/jp2v.v1i1.3241

Saputro, K. H. (2023). Prototype Pintu Otomatis Di PT. Kaltim Nitrate Indonesia Menggunakan Sensor PIR Berbasis Arduino Uno di Masa Pandemi Covid-19. Journal Of Power electric And Renewable Energy, 1(1), 7-11. https://doi.org/10.59811/jper.v1i1.52

Sayeduzzaman, M., Hasan, T., Nasser, A. A., & Negi, A. (2024). An Internet of Things‐Integrated Home Automation with Smart Security System. Automated Secure Computing for Next‐Generation Systems, 243-273. https://doi.org/10.1002/9781394213948.ch13

Serfontein, G. (2024). Development and Verification of an Electro-mechanical Docking Mechanism for Flight.

Setiawan, D., Nofriandi, N., Aziz, F., & Hamdi, F. (2022). Desain Dan Analisis Pintu Otomatis Menggunakan Sensor Ultrasonic Berbasis Arduino Uno. Jurnal Karya Ilmiah Multidisiplin (JURKIM), 2(1), 62–68. https://doi.org/10.31849/jurkim.v2i1.9074

Tajadod, F. (2021). Voice command android-based smart home system for controlling door lock, lights, and home appliance for physically disabled people based on iot (Doctoral dissertation, California State University San Marcos).

Talal, M., Zaidan, A. A., Zaidan, B. B., Albahri, A. S., Alamoodi, A. H., Albahri, O. S., ... & Mohammed, K. I. (2019). Smart home-based IoT for real-time and secure remote health monitoring of triage and priority system using body sensors: Multi-driven systematic review. Journal of medical systems, 43, 1-34. https://doi.org/10.1007/s10916-019-1158-z

Tupac-Yupanqui, M., Vidal-Silva, C., Pavesi-Farriol, L., Ortiz, A. S., Cardenas-Cobo, J., & Pereira, F. (2022). Exploiting Arduino features to develop programming competencies. IEEE Access, 10, 20602-20615. https://doi.org/10.1109/ACCESS.2022.3150101

Ukil, A., Yeap, Y. M., & Satpathi, K. (2020). Fault analysis and protection system design for DC grids. Berlin: Springer. https://doi.org/10.1007/978-981-15-2977-1

Yar, H., Imran, A. S., Khan, Z. A., Sajjad, M., & Kastrati, Z. (2021). Towards smart home automation using IoT-enabled edge-computing paradigm. Sensors, 21(14), 4932. https://doi.org/10.3390/s21144932

Published
2024-10-02
How to Cite
Anton, A., & Mujiyono, S. (2024). Arduino Based Automatic Door Lock Design Using Personal Identification Number Pin. Journal La Multiapp, 5(5), 646-659. https://doi.org/10.37899/journallamultiapp.v5i5.1534