IoT-Enabled Smart Fence: Remote Security and Monitoring Using NodeMCU ESP32 and Blynk
Scholarly dissemination Share this article
LinkedIn WhatsApp Facebook X Email
PDF (ENG) (English)

关键词

基于物联网的家庭安防 自动围栏系统 Blynk 应用程序 NodeMCU ESP32

How to Cite

Syahrani, F. P., Saputra, H. K., Anori, S., Agustiarmi, W., Ayasrah, F. T., & Thanh, P. V. (2025). IoT-Enabled Smart Fence: Remote Security and Monitoring Using NodeMCU ESP32 and Blynk. Journal of Hypermedia & Technology-Enhanced Learning, 3(1), 1–15. https://doi.org/10.58536/j-hytel.158
Article at a Glance

Publication Snapshot

Published 2025-01-15
Pages 1-15
References 25
Access
Now Welcoming Submissions
Call for Papers

Upcoming Issue

Volume4
Number3
October 2026
Submission Scope

J-HyTEL welcomes original and rigorous scholarship advancing education, media technology, and computer science applications.

Submit Manuscript Author Guidelines

Rolling submissions are accepted throughout the year.

摘要

物联网(IoT)通过实现自动化的远程监控和控制系统,彻底改变了家庭安防领域。本研究提出了一种基于物联网的智能围栏原型,该原型利用NodeMCU ESP32微控制器和Blynk应用程序,提供安全、高效的远程门禁操作。 该系统允许用户通过移动设备远程开启、关闭和锁定大门,从而解决了传统手动操作方式的局限性。 核心组件包括用于实时障碍物检测的超声波传感器、继电器和电机,所有组件均集成在一个稳健的软硬件框架中。测试表明,在稳定的网络条件下,系统响应时间始终控制在两秒以内,且精准的障碍物检测确保了安全区域的维持。尽管存在网络稳定性方面的挑战,该系统仍具有实用性、用户友好性,并可扩展应用于住宅安防领域。 未来的改进可考虑采用双连接方案以增强网络弹性,并通过先进的传感器校准来提高在各种环境下的可靠性。这一高性价比的原型机展现了在现代智能家居安防应用及未来技术发展方面的巨大潜力。

PDF (ENG) (English)
https://doi.org/10.58536/j-hytel.158
PDF (ENG) (English)
Abstract Views2045
File Downloads1289
Researcher tools Save & Cite

RIS is compatible with Zotero, Mendeley, and EndNote. Immediate opening depends on the visitor's browser and reference-manager settings.

Research Transparency

Declarations reported in the published article

View Full PDF
Author Contributions

Fadhilah Putri Syahrani: Conceptualization, Methodology, Investigation, Formal Analysis, Data Curation, Software, Writing - Original Draft, Writing - Review & Editing. Hadi Kurnia Saputra: Validation, Supervision, Writing - Review & Editing. Sartika Anori: Validation, Supervision, Writing - Review & Editing. Winda Agustiarmi: Validation, Supervision, Writing - Review & Editing. Firas Tayseer Ayasrah: Validation, Writing - Review & Editing. Pham Van Thanh: Writing - Review & Editing. All authors have reviewed and approved the final version of this manuscript.

Detected CRediT roles
Conceptualization Data curation Formal analysis Investigation Methodology Software Supervision Validation Writing – original draft Writing – review & editing
View statement in PDF · PDF page 12
Acknowledgments

The authors would like to express their sincere gratitude to all individuals and institutions who provided invaluable support and resources throughout the research process.

View statement in PDF · PDF page 12
Ethics Approval

This study did not involve human or animal participants; therefore, ethical approval was not required.

View statement in PDF · PDF page 12
Competing Interests

The authors declare that they have no competing interests.

View statement in PDF · PDF page 12
Funding

This research received no external funding.

View statement in PDF · PDF page 12
Generative AI Disclosure

While preparing this manuscript, the author(s) used ChatGPT and Grammarly to enhance its readability, language, and overall structure. Following these tools, the author(s) performed a comprehensive review and editing process to ensure the content’s accuracy, integrity, and quality. The author(s) accept full responsibility for the content and conclusions presented in this publication.

View statement in PDF · PDF page 12

Statements are reproduced from the final published PDF using exact section headings. The PDF remains the authoritative version. Absence of a panel does not establish that the declaration is absent from the PDF.

参考

25 References

[1] K. Shafique, B. A. Khawaja, F. Sabir, S. Qazi, and M. Mustaqim, “Internet of Things (IoT) for Next-Generation Smart Systems: A Review of Current Challenges, Future Trends, and Prospects for Emerging 5G-IoT Scenarios,” IEEE Access, vol. 8, pp. 23022–23040, 2020. https://doi.org/10.1109/ACCESS.2020.2970118

[2] A. A. Laghari, K. Wu, R. A. Laghari, M. Ali, and A. A. Khan, “A Review and State of Art of Internet of Things (IoT),” Archives of Computational Methods in Engineering, vol. 29, no. 3, pp. 1395–1413, May 2022. https://doi.org/10.1007/s11831-021-09622-6

[3] M. A. Rahman et al., “A Cloud-Based Cyber-Physical System with Industry 4.0: Remote and Digitized Additive Manufacturing,” Automation, vol. 3, no. 3, pp. 400–425, Aug. 2022. https://doi.org/10.3390/automation3030021

[4] P. Marwedel, Embedded System Design, 2nd ed. Springer, 2021. https://doi.org/10.1007/978-3-030-60910-8

[5] M. Ojha and R. Sikka, “An Overview on Applications of Microcontroller,” International Journal of Innovative Research in Engineering and Management, vol. 8, no. 6, pp. 4020–4405, 2021.

[6] D. Hercog, T. Lerher, M. Truntič, and O. Težak, “Design and Implementation of ESP32-Based IoT Devices,” Sensors, vol. 23, no. 15, p. 6739, Jul. 2023. https://doi.org/10.3390/s23156739

[7] J. Eriksson and T. Nilson, “The House as a Machine for Living: Dreams of Domestic Automation, 1923–2023,” in The De Gruyter Handbook of Automated Futures: Imaginaries, Interactions, and Impact, vol. 2, p. 105, 2024.

[8] W. A. Jabbar et al., “Design and Fabrication of Smart Home with Internet of Things Enabled Automation System,” IEEE Access, vol. 7, pp. 144059–144074, 2019. https://doi.org/10.1109/ACCESS.2019.2942846

[9] D. C. Khedekar, A. C. Truco, D. A. Oteyza, and G. F. Huertas, “Home Automation—A Fast-Expanding Market,” Thunderbird International Business Review, vol. 59, no. 1, pp. 79–91, Jan. 2017. https://doi.org/10.1002/tie.21829

[10] K. Scheerlinck and Y. Schoonjans, “Garden Streetscapes: Front Yards as Territorial Configurations,” Landscape Review, vol. 16, no. 2, Sep. 2016. https://doi.org/10.34900/lr.v16i2.955

[11] M. West, “Preventing System Intrusions,” in Network and System Security, 2nd ed., Elsevier, 2014, pp. 29–56. https://doi.org/10.1016/B978-0-12-416689-9.00002-2

[12] C. Zechmeister, M. Gil Pérez, J. Knippers, and A. Menges, “Concurrent, Computational Design and Modelling of Structural, Coreless-Wound Building Components,” Automation in Construction, vol. 151, p. 104889, Jul. 2023. https://doi.org/10.1016/j.autcon.2023.104889

[13] G. Fortino, C. Savaglio, G. Spezzano, and M. Zhou, “Internet of Things as System of Systems: A Review of Methodologies, Frameworks, Platforms, and Tools,” IEEE Transactions on Systems, Man, and Cybernetics: Systems, vol. 51, no. 1, pp. 223–236, Jan. 2021. https://doi.org/10.1109/TSMC.2020.3042898

[14] E. Sherif, W. Helmy, and G. H. Galal-Edeen, “Proposed Framework to Manage Non-Functional Requirements in Agile,” IEEE Access, vol. 11, pp. 53995–54005, 2023. https://doi.org/10.1109/ACCESS.2023.3281195

[15] A. S. Rao et al., “Real-time Monitoring of Construction Sites: Sensors, Methods, and Applications,” Automation in Construction, vol. 136, p. 104099, Apr. 2022. https://doi.org/10.1016/j.autcon.2021.104099

[16] J. Singh, D. Singh, L. Verma, and S. Singh, “IoT-Based Remote Control and Monitoring of Electrical Appliances,” International Journal of Digital Technology, vol. 3, no. 1, p. 74, Jun. 2024. https://journal.nielit.edu.in/index.php/01/article/view/107

[17] S. Dilek, K. Irgan, M. Guzel, S. Ozdemir, S. Baydere, and C. Charnsripinyo, “QoS-aware IoT Networks and Protocols: A Comprehensive Survey,” International Journal of Communication Systems, vol. 35, no. 10, p. e5156, Jul. 2022. https://doi.org/10.1002/dac.5156

[18] A. R. Lawson et al., “Multi-site Calibration and Validation of a Wide-Angle Ultrasonic Sensor and Precise GPS to Estimate Pasture Mass at the Paddock Scale,” Computers and Electronics in Agriculture, vol. 195, p. 106786, Apr. 2022. https://doi.org/10.1016/j.compag.2022.106786

[19] A. Jain, S. Singh, P. S. Chauhan, and A. Shukla, “Management of COVID-19 Patients Through IoT-Based Smart Ambu Bag,” in Distributed Intelligence in Circuits and Systems, pp. 181–215, Jan. 2024. https://doi.org/10.1142/9789811279539_0006

[20] B. Hammi, S. Zeadally, R. Khatoun, and J. Nebhen, “Survey on Smart Homes: Vulnerabilities, Risks, and Countermeasures,” Computers & Security, vol. 117, p. 102677, Jun. 2022. https://doi.org/10.1016/j.cose.2022.102677

[21] W. Li, T. Yigitcanlar, I. Erol, and A. Liu, “Motivations, Barriers, and Risks of Smart Home Adoption: From Systematic Literature Review to Conceptual Framework,” Energy Research & Social Science, vol. 80, p. 102211, Oct. 2021. https://doi.org/10.1016/j.erss.2021.102211

[22] Y. Zhang, A. Carballo, H. Yang, and K. Takeda, “Perception and Sensing for Autonomous Vehicles Under Adverse Weather Conditions: A Survey,” ISPRS Journal of Photogrammetry and Remote Sensing, vol. 196, pp. 146–177, Feb. 2023. https://doi.org/10.1016/j.isprsjprs.2022.12.021

[23] H. Omidvarborna, P. Kumar, J. Hayward, M. Gupta, and E. G. S. Nascimento, “Low-Cost Air Quality Sensing Towards Smart Homes,” Atmosphere, vol. 12, no. 4, p. 453, Apr. 2021. https://doi.org/10.3390/atmos12040453

[24] V. Demiroglou, S. Skaperas, L. Mamatas, and V. Tsaoussidis, “Adaptive Multiprotocol Communication in Smart City Networks,” IEEE Internet of Things Journal, vol. 11, no. 11, pp. 20499–20513, Jun. 2024. https://doi.org/10.1109/JIOT.2024.3372624

[25] T. Magara and Y. Zhou, “Internet of Things (IoT) for Smart Homes: Privacy and Security,” Journal of Electrical and Computer Engineering, vol. 2024, no. 1, p. 7716956, Jan. 2024. https://doi.org/10.1155/2024/7716956

Copyright and License

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright (c) 2025 Fadhilah Putri Syahrani, Hadi Kurnia Saputra, Sartika Anori, Winda Agustiarmi, Firas Tayseer Ayasrah, Pham Van Thanh

Downloads

Download data is not yet available.
本页面为便于访问而自动翻译。如译文与英文版本存在含义差异,以 J-HyTEL 英文官方版本为准。English