Title :
Real-time indoor surveillance based on smartphone and mobile robot
Author :
Juang, Shih-Yao ; Juang, Jih-Gau
Author_Institution :
Dept. of Commun., Navig. & Control, Eng., Nat. Taiwan Ocean Univ., Keelung, Taiwan
Abstract :
The purpose of this study is to integrate image processing techniques, fuzzy theory, wireless communications, and smartphone to a wheeled mobile robot (WMR) for real-time object recognition, tracking and indoor surveillance. Image processing and fuzzy control algorithms are coded by C# language. Zigbee is utilized to transmit command signals between webcam, WMR, and computer. The WMR uses webcam to capture its surroundings. Classification of color features is based on Hue-Saturation-Value (HSV) color space. The WMR calculates the relative position of the target object through image processing and distance computation algorithms. Fuzzy system is applied to servo motor of the WMR and robot controller design. The WMR is applied to surveillance usage, it can be controlled remotely by a smartphone via WIFI and perform indoor patrol and monitor its surroundings. The home site conditions can be clearly seen on the smartphone. Experiments show that the proposed control design and system integration of the wheeled mobile robot works well in indoor real-time surveillance.
Keywords :
Zigbee; control engineering computing; control system synthesis; fuzzy control; image colour analysis; mobile robots; object recognition; object tracking; real-time systems; robot vision; smart phones; surveillance; wireless LAN; C# language; HSV color space; WIFI; Zigbee; color feature classification; distance computation; fuzzy control algorithms; hue-saturation-value color space; image processing; realtime indoor surveillance; realtime object recognition; realtime object tracking; robot controller design; servo motor; smartphone; wheeled mobile robot; wireless communications; Cameras; Image color analysis; Mobile robots; Robot sensing systems; Surveillance; Wheels; Zigbee; autonomous mobile robot; fuzzy control; image process; smartphone; surveillance;
Conference_Titel :
Industrial Informatics (INDIN), 2012 10th IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-0312-5
DOI :
10.1109/INDIN.2012.6301053