Sistem Smart Lock Door Berbasis Internet of Things (IoT) Menggunakan ESP32
Abstract
Saat ini tingkat kriminalitas yang bermacam-macam semakin bertambah, khususnya pembobolan rumah. Pada kenyataannya, kasus pembobolan rumah pada zaman sekarang dengan mudahnya dilakukan oleh para pencuri dengan membuka pengunci pada pintu karena pengamanan pintu hanya menggunakan kunci biasa (manual). Kurangnya sistem keamanan merupakan salah satu hal yang memudahkan pelaku menjalankan aksinya. Dalam hal ini maka perlu adanya sistem keamanan yang harus ditingkatkan. Berdasarkan permasalahan tersebut, peneliti akan meningkatkan sistem keamanan pintu rumah dengan menggunakan sistem smart lockdoor berbasis Internet of Things (IoT) menggunakan ESP32 yang diharapkan dapat bermanfaat dan lebih meningkatkan tingkat keamanan pintu rumah jika dibandingkan dengan kunci pintu konvensional. Penelitian ini menggunakan metode Action Research yang merupakan metode yang meneliti mengenai suatu tindakan yang memiliki tujuan untuk memberikan solusi atau meningkatkan kemampuan, mutu, dan kualitas dari suatu objek yang di teliti. Dengan adanya penelitian ini diharapkan dapat mengurangi rasa khawatir ketika tidak berada dirumah karena peneliti melakukan perancangan sistem pengamanan pintu berbasis ESP32 yang didukung dengan fitur-fitur yang terpasang seperti sensor sidik jari, kamera pemindai, alarm dan sistem notifikasi yang terhubung ke ponsel pemilik rumah.
References
Anwar, M. &. (2015). A Comparative Study of Graphical and Alphanumeric Passwords for Mobile Device Authentication. In MAICS.
Calatayud, B. M. (IEEE 12th Annual Computing and Communication Workshop and Conference (CCWC)). A comparative analysis of Buffer Overflow vulnerabilities in High-End IoT devices. 2022.
Canedo, J. &. (2016). Using machine learning to secure IoT systems. IEEE.
Efendi, Y. (2018). Internet of Things (IOT) sistem pengendalian lampu menggunakan Raspberry PI berbasis mobile. Jurnal Ilmiah Ilmu Komputer Fakultas Ilmu Komputer Universitas Al Asyariah Mandar.
Fan, K. Z. (2019). A lightweight authentication scheme for cloud-based RFID healthcare systems. IEEE.
Hassija, V. C. (2019). A survey on IoT security: application areas, security threats, and solution architectures. IEEE Access.
Hutabarat, D. P. (2018). Development of home security system using ESP8266 and android smartphone as the monitoring tool. IOP Publishing.
Jiang, X. L. (2020). An experimental analysis of security vulnerabilities in industrial IoT devices. ACM Transactions on Internet Technology (TOIT).
Keoh, S. L. (2014). Securing the internet of things: A standardization perspective. IEEE Internet of things Journal.
Khemissa, H. &. (2015). A lightweight authentication scheme for e-health applications in the context of internet of things. IEEE.
Kumar, V. M. (2022). Light weight authentication scheme for smart home iot devices. Cryptography.
Lee, J. Y. (2014). A lightweight authentication protocol for internet of things. IEEE.
Liu, J. R. (2019). A novel secure authentication scheme for heterogeneous internet of things. IEEE International Conference on Communications (ICC).
Minhaj Ahmad Khan, K. S. (2018). IoT security: Review, blockchain solutions, and open challenges. Future Generation Computer Systems.
Mishra, D. B. (2021). An efficient and secure RSA-based authentication scheme for Internet of Things (IoT) using smart card. Journal of Ambient Intelligence and Humanized Computing.
Mishra, D. D. (2015). A secure password-based authentication and key agreement scheme using smart cards. Journal of Information Security and Applications.
Nguyen, T. H. (2021). A zero-knowledge proof based blockchain authentication scheme for internet of things. International Journal of Communication Systems.
Qin, J. L. (2019). A Lightweight and Secure Authentication Scheme for Internet of Things Devices. IEEE Access.
Salah, K. C.-M. (2012). Using cloud computing to implement a security overlay network. IEEE security & privacy.
Sasmoko, D. &. (2017). Rancang bangun sistem pendeteksi kebakaran berbasis iot dan sms gateway menggunakan arduino. Simetris: Jurnal Teknik Mesin, Elektro Dan Ilmu Komputer.
Tayef, S. H. (2021). Design and Implementation of IoT based Smart Home Automation System. International Conference on Computer and Information Technology (ICCIT) (pp. 1-5). IEEE.
Tyagi, J. P. (2017). Using Power Clues to Hack IoT Devices: The power side channel provides for instruction-level disassembly. IEEE Consumer Electronics Magazine.
Voas, J. (2016). NIST Special Publication 800-183. Networks of ‘Things’. Gaithersburg. National Institute of Standards and Technology (NIST).
Wang, Q. C. (2020). An Improved Lightweight Authentication Protocol for Internet of Things. IEEE Access.
Yang, W. L. (2020). A review of the Internet of Things (IoT) for smart home: Challenges and solutions. International Conference on Robotics and Automation Engineering (ICRAE).
Yang, X. Z. (2018). A Lightweight Authentication Scheme for Internet of Things. IEEE Access.
YASMINE HARBI, Z. A. (2021). Recent Security Trends in Internet of Things: A Comprehensive Survey. IEEE.
Zhang, L. Z. (2019). A Survey of Industrial Internet of Things: A Cyber-Physical Systems Perspective. IEEE Access.
Zhang, Y. X. (2019). A novel secure and efficient authentication scheme for the internet of things. Future Generation Computer Systems.
Zhou, L. L. (2019). Lightweight IoT-based authentication scheme in cloud computing circumstance. Future generation computer systems.