Schrödinger: Journal of Physics Education
Vol. 7 No. 3 (2026): June

Development and Performance Evaluation of a Low-Cost Embedded Smart Cane with Complementary Ultrasonic Sensors

Moh Nur Bimantoro (Universitas Dinamika)
Margareta Diacenco (Technical University of Moldova)
Marvin Mendes Cabral (University of São Paulo)



Article Info

Publish Date
30 Jun 2026

Abstract

Purpose of the study: This study aims to design, develop, and evaluate a low-cost smart cane based on an ATmega32 microcontroller and dual ultrasonic sensors to assist visually impaired individuals by detecting both elevated and ground-level obstacles through real-time auditory feedback during independent navigation. Methodology: This study employed a research and development approach using an ATmega32 microcontroller, HC-SR04 ultrasonic sensor, PING Parallax ultrasonic sensor, LCD 16×2, active buzzer, USBasp programmer, CodeVision AVR, PVC cane structure, and descriptive statistical analysis based on Mean Absolute Error (MAE), Root Mean Square Error (RMSE), and Mean Absolute Percentage Error (MAPE). Main Findings: The developed smart cane successfully detected upper- and ground-level obstacles with high measurement accuracy. The HC-SR04 sensor achieved MAE, RMSE, and MAPE values of 0.32 cm, 0.43 cm, and 1.56%, while the PING Parallax sensor obtained 0.20 cm, 0.24 cm, and 1.12%, respectively. The complementary sensing configuration provided reliable obstacle detection, wider environmental coverage, and effective real-time auditory warnings for safer navigation. Novelty/Originality of this study: This study introduces a lightweight smart cane integrating complementary HC-SR04 and PING Parallax ultrasonic sensors with an ATmega32 microcontroller to detect obstacles at different heights using a simple embedded architecture. Unlike many existing systems requiring artificial intelligence or computer vision, the proposed design offers affordable implementation, quantitative performance validation, and practical mobility assistance suitable for resource-constrained environments.

Copyrights © 2026






Journal Info

Abbrev

SJPE

Publisher

Subject

Social Sciences Other

Description

Covers all the Schrödinger: Journal of Physics Education (SJPE) at the level of primary, secondary, senior, and higher education. The goal of this journal is to bring together researchers and practitioners from academia and industry to focus on Educational advancements and establishing new ...