The Evolution of Student Monitoring Systems in School Buses: A Detailed Review

[{“box”:0,”content”:”[if 992 equals=”Open Access”]n

n

n

n

Open Access

nn

n

n[/if 992]n

n

Year : July 26, 2024 at 12:05 pm | [if 1553 equals=””] Volume :02 [else] Volume :02[/if 1553] | [if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] : 01 | Page : 1-6

n

n

n

n

n

n

By

n

[foreach 286]n

n

n

Anita H. Shinde, Vishal Dhage, Apeksha Nagane, Rasheshwari Menkudale,

n

    n t

  • n

n

n[/foreach]

n

n[if 2099 not_equal=”Yes”]n

    [foreach 286] [if 1175 not_equal=””]n t

  1. Student,, Student,, Student,, Student, SKN Sinhgad College of Engineering, Pandharpur,, SKN Sinhgad College of Engineering, Pandharpur,, SKN Sinhgad College of Engineering, Pandharpur,, SKN Sinhgad College of Engineering, Pandharpur, Maharashtra,, Maharashtra,, Maharashtra,, Maharashtra, India, India, India, India
  2. n[/if 1175][/foreach]

n[/if 2099][if 2099 equals=”Yes”][/if 2099]n

n

Abstract

nIn modern educational institutions, ensuring the safety and well-being of students during transportation is paramount. To address this, we propose a comprehensive Student Monitoring System for buses, designed to enhance safety, efficiency, and communication between stakeholders. The system utilizes advanced technologies such as GPS tracking, RFID tags, and real-time data processing to monitor students’ location, track bus routes, and provide instant notifications to parents and school administrators. By integrating these technologies, the system offers features including real-time location tracking, attendance recording, emergency alerts, and optimized route planning. Moreover, the system facilitates seamless communication between parents, drivers, and school authorities through mobile applications and web interfaces. This paper outlines the design, implementation, and evaluation of the Student Monitoring System, highlighting its effectiveness in ensuring the safety and security of students during their commute. Additionally, ethical considerations, privacy safeguards, and future enhancements are discussed to address concerns and further improve the system’s functionality and usability.

n

n

n

Keywords: GPS tracking, RFID Tags, Real Time Data Processing, Mobile Application, biometric scanners

n[if 424 equals=”Regular Issue”][This article belongs to International Journal of Electrical Machine Analysis and Design(ijemad)]

n

[/if 424][if 424 equals=”Special Issue”][This article belongs to Special Issue under section in International Journal of Electrical Machine Analysis and Design(ijemad)][/if 424][if 424 equals=”Conference”]This article belongs to Conference [/if 424]

n

n

n

How to cite this article: Anita H. Shinde, Vishal Dhage, Apeksha Nagane, Rasheshwari Menkudale. The Evolution of Student Monitoring Systems in School Buses: A Detailed Review. International Journal of Electrical Machine Analysis and Design. July 26, 2024; 02(01):1-6.

n

How to cite this URL: Anita H. Shinde, Vishal Dhage, Apeksha Nagane, Rasheshwari Menkudale. The Evolution of Student Monitoring Systems in School Buses: A Detailed Review. International Journal of Electrical Machine Analysis and Design. July 26, 2024; 02(01):1-6. Available from: https://journals.stmjournals.com/ijemad/article=July 26, 2024/view=0

nn[if 992 equals=”Open Access”] Full Text PDF Download[/if 992] n

n[if 992 not_equal=’Open Access’] [/if 992]nn n

nn[if 379 not_equal=””]n

Browse Figures

n

n

[foreach 379]n

n[/foreach]n

n

n

n[/if 379]n

n

References

n[if 1104 equals=””]n

  1. Lu, C., Kuo, T. (2018). Design of an IoT-based smart bus tracking system using RFID and GPS. International Journal of Engineering and Technology, 10(3), 3105–3112. DOI: 10.21817/ijet/2018/v10i3/181003207
  2. Raj, J. T., Sankar, J. (2017, December). IoT based smart school bus monitoring and notification system. Proceedings of the 2017 IEEE Region 10 Humanitarian Technology Conference (pp. 89–92). IEEE.
  3. Gadade, B., Mulani, A. O., & Harale, A. D. (2024). IoT Based Smart School Bus and Student Monitoring System. NATURALISTA CAMPANO, 28(1), 730–737.
  4. Patale, J. P., Jagadale, A. B., Mulani, A. O., & Pise, A. (2023). A Systematic survey on Estimation of Electrical Vehicle. Journal of Electronics, Computer Networking and Applied Mathematics (JECNAM) ISSN: 2799–1156.
  5. Boxey, A., Jadhav, A., Gade, P., Ghanti, P., & Mulani, A. O. (2022). Face Recognition using Raspberry Pi. Journal of Image Processing and Intelligent Remote Sensing (JIPIRS) ISSN, 2815–0953.
  6. Sampada Padmakar Thigale, Hemlata Makarand Jadhav, Altaf O. Mulani, Ganesh B. Birajadar, Megha Nagrale, Mohini P. Sardey. Internet of Things and Robotics in Transforming Healthcare Services. African Journal of Biological Sciences.6(6): 1567–1575. 2024;
  7. Kolekar, S. D., Walekar, V. B., Patil, P. S., Mulani, A. O., & Harale, A. D. (2022). Password Based Door Lock System. Int. J. of Aquatic Science, 13(1), 494–501.
  8. Nagane, U. P., & Mulani, A. O. (2021). Moving object detection and tracking using Matlab. Journal of Science and Technology, 6, 86–89..
  9. Kondekar, R. P., & Mulani, A. O. (2017). Raspberry Pi based voice operated Robot. International Journal of Recent Engineering Research and Development, 2(12), 69–76.
  10. Abhangaro, R. (2017). Design And Implementation Of 8-bit Vedic Multiplier. International Journal of Research Publications in Engineering and Technology (ISSN No: 2454–7875).
  11. Mulani, A. O., & Mane, P. B. (2016). Area efficient high-speed FPGA based invisible watermarking for image authentication. Indian journal of Science and Technology.
  12. Ghodake, M. R. G., & Mulani, M. A. (2016). Sensor based automatic drip irrigation system. Journal for Research, 2(02).
  13. Kashid, M. M., Karande, K. J., & Mulani, A. O. (2022, November). IoT-based environmental parameter monitoring using machine learning approach. In Proceedings of the International Conference on Cognitive and Intelligent Computing: ICCIC 2021, Volume 1 (pp. 43–51). Singapore: Springer Nature Singapore.
  14. Das, R. R., Josephine Malathi A., C., M., A., Moses, M. L., & Sona, D. R. (2024). IoT-Based School Bus and Student Monitoring System Using RFID and GSRM Technologies. International Journal of Intelligent Systems and Applications in Engineering, 12(3), 164–173. Retrieved from https://ijisae.org/index.php/IJISAE/article/view/5237

nn[/if 1104][if 1104 not_equal=””]n

    [foreach 1102]n t

  1. [if 1106 equals=””], [/if 1106][if 1106 not_equal=””],[/if 1106]
  2. n[/foreach]

n[/if 1104]

nn


nn[if 1114 equals=”Yes”]n

n[/if 1114]

n

n

[if 424 not_equal=””]Regular Issue[else]Published[/if 424] Subscription Review Article

n

n

[if 2146 equals=”Yes”][/if 2146][if 2146 not_equal=”Yes”][/if 2146]n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n

n[if 1748 not_equal=””]

[else]

[/if 1748]n

n

n

Volume 02
[if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] 01
Received June 4, 2024
Accepted June 26, 2024
Published July 26, 2024

n

n

n

n

n

n nfunction myFunction2() {nvar x = document.getElementById(“browsefigure”);nif (x.style.display === “block”) {nx.style.display = “none”;n}nelse { x.style.display = “Block”; }n}ndocument.querySelector(“.prevBtn”).addEventListener(“click”, () => {nchangeSlides(-1);n});ndocument.querySelector(“.nextBtn”).addEventListener(“click”, () => {nchangeSlides(1);n});nvar slideIndex = 1;nshowSlides(slideIndex);nfunction changeSlides(n) {nshowSlides((slideIndex += n));n}nfunction currentSlide(n) {nshowSlides((slideIndex = n));n}nfunction showSlides(n) {nvar i;nvar slides = document.getElementsByClassName(“Slide”);nvar dots = document.getElementsByClassName(“Navdot”);nif (n > slides.length) { slideIndex = 1; }nif (n (item.style.display = “none”));nArray.from(dots).forEach(nitem => (item.className = item.className.replace(” selected”, “”))n);nslides[slideIndex – 1].style.display = “block”;ndots[slideIndex – 1].className += ” selected”;n}n”}]