Please use this identifier to cite or link to this item: https://elib.vku.udn.vn/handle/123456789/7729
Title: Design and Construction of a Two-Wheeled Object Tracking Robot
Authors: Tran, Thi Tra Vinh
Keywords: adaptive PID
gain scheduling
self-balancing robot
inverted pendulum
field-oriented control
BLDC
ESP32
FreeRTOS
complementary filter
time-of-flight tracking
voice command
Issue Date: Jun-2026
Publisher: International Journal of Engineering Inventions
Abstract: This paper presents the design, implementation, and experimental validation of a self-balancing two wheeled robot (SBWR) governed by a three-state Gain Scheduling Adaptive PID controller integrated with Field Oriented Control (FOC) of Brushless DC (BLDC) motors on a dual-core ESP32 embedded platform. The proposed controller switches among Stable (|e| <2○), Dynamic (2○ ≤ |e| < 6○), and Recovery (|e| ≥ 6○) parameter sets whose boundaries are grounded in experimentally measured sensor noise statistics (σ = 0.42○) and the maximum perturbation angle recoverable by fixed-gain control (6○), respectively. A PCA9548A I2C multiplexer resolves the address conflict betweentwo AS5600 magnetic encoders, enabling simultaneous 1 kHz rotor-angle feedback for both motors. A VL53L0X Time-of-Flight sensor provides closed-loop object-following at 20 Hz, and an INMP441 MEMS microphone supports on-device voice command detection. Across 50 experimental trials, the adaptive controller reduces settling time by 50% (2.4–1.2 s), overshoot by 66.7% (15–5%), tilt RMSE by 68.0% (2.5–0.8○), and fall rate by 83.3% (12–2%) over a Ziegler–Nichols fixed-gain baseline. Object-tracking mean error is 1.3 cm and voice recognition accuracy is 94%.
Description: International Journal of Engineering Inventions; Volume 15, Issue 6; PP: 122-128
URI: https://elib.vku.udn.vn/handle/123456789/7729
ISSN: 2278-7461 (e)
2319-6491 (p)
Appears in Collections:NĂM 2026

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