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International Journal of Creative and Open Research in Engineering and Management

A Peer-Reviewed, Open-Access International Journal Supporting Multidisciplinary Research, Digital Publishing Standards, DOI Registration, and Academic Indexing.
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ISSN: 3108-1754 (Online)
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ISO Certification: 9001:2015
Publication Fee: 599/- INR
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License: CC BY 4.0
Peer Review: Double Blind
Volume 02, Issue 03

Published on: March 2026 2026

DESIGN AND IMPLEMENTATION OF A CANBUS-BASED ECO-DRIVING MONITORING AND CONTROL SYSTEMS

Sanjay.R Shyam Sundar.T.Y Udhaya Moorthy.S Dr.N.Janakiraman

Department of Electronics and Communication Engineering K.L.N. College of Engineering Pottapalayam Sivaganga district

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Plagiarism Passed Peer Reviewed Open Access

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Abstract

The increasing demand for fuel efficiency and environmentally responsible driving has led to the development of intelligent vehicle monitoring systems. This project presents the design and implementation of a Controller Area Network (CAN) based eco-driving monitoring system with real-time fuel consumption measurement. The proposed system simulates vehicle operating conditions using embedded hardware and sensor-based data acquisition. A potentiometer is employed to emulate accelerator pedal input, while a hall effect sensor is used to estimate vehicle speed through rotational pulse detection. To achieve real-time fuel measurement, a water-based fuel emulation mechanism is implemented, where a controlled DC pump represents engine fuel demand and a flow sensor measures water consumption equivalent to fuel usage. The acquired parameters are processed using STM32 microcontrollers and transmitted between nodes via CAN bus communication, replicating modern automotive electronic control unit (ECU) networking. The received data is displayed on a software dashboard that provides real-time visualization of speed, throttle position, fuel flow rate, total fuel consumed, and driving behavior classification. The system demonstrates how embedded communication and physical consumption measurement can be integrated to analyze driver efficiency and promote eco-driving practices. The developed prototype serves as a scalable model for intelligent vehicle monitoring and energy-efficient transportation systems.

Keywords: CANBus, Eco-driving, Fuel efficiency, Driver behavior, Real-time feedback

How to Cite this Paper

Sanjay.R, , Sundar.T.Y, S., Moorthy.S, U. & N.Janakiraman, (2026). Design and Implementation of a CANBus-Based Eco-Driving monitoring and Control systems. International Journal of Creative and Open Research in Engineering and Management, <i>02</i>(03). https://doi.org/10.55041/ijcope.v2i3.255

Sanjay.R, , et al.. "Design and Implementation of a CANBus-Based Eco-Driving monitoring and Control systems." International Journal of Creative and Open Research in Engineering and Management, vol. 02, no. 03, 2026, pp. . doi:https://doi.org/10.55041/ijcope.v2i3.255.

Sanjay.R, ,Shyam Sundar.T.Y,Udhaya Moorthy.S, and N.Janakiraman. "Design and Implementation of a CANBus-Based Eco-Driving monitoring and Control systems." International Journal of Creative and Open Research in Engineering and Management 02, no. 03 (2026). https://doi.org/https://doi.org/10.55041/ijcope.v2i3.255.

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References

[1] Road Vehicles—Controller Area Network (CAN), document ISO 11898 1:2003, 2003. Accessed: Dec. 12, 2019. [Online]. Available: http://www. iso.org/iso/iso_catalogue/catalogue_tc/catalogue_detail.htm?csnumber= 33422

[2]   K. Jakobsen, S. C. H. Mouritsen, and K. Torp, ‘‘Evaluating eco-driving advice using GPS/CANBus data,’’ in Proc. 21st ACM SIGSPATIAL Int. Conf. Adv. Geograph. Inf. Syst. (SIGSPATIAL), Orlando, FL, USA, 2013, pp. 44–53.

[3]   Standards Collection on the Web: Content, J1939 Standards CAN, SAE, 2000. Accessed: Dec. 12, 2019. [Online]. Available: http://www.sae.org/ standardsdev/groundvehicle/j1939a.htm

Ethical Compliance & Review Process

  • All submissions are screened under plagiarism detection.
  • Review follows editorial policy.
  • Authors retain copyright.
  • Peer Review Type: Double-Blind Peer Review
  • Published on: Apr 01 2026
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