Title :
Space invariant vehicle recognition for toll plaza monitoring and auditing system
Author :
Rafique, Saima ; Iqbal, Mahboob ; Habib, Hafiz Adnan
Author_Institution :
Dept. of Comput. Eng., Univ. of Eng. & Technol., Taxila, Pakistan
Abstract :
Space invariant object recognition is one of the difficult problems of pattern recognition and has many potential applications. In this paper, a vehicle recognition system is proposed for toll plaza monitoring and auditing. This system recognizes the type of approaching vehicle such as truck, bus, car etc. irrespective of geometrical distortion of vehicles such as scale and rotation. Maximum Average Correlation Height (MACH) filter is used to obtain out-of-plane rotation invariance and Log r-o Mapping is employed to achieve in-plane and scale invariance. Five classes of vehicles are defined: trucks, buses, wagons, cars and motorcycles. MACH filter is trained on log r-o maps of each class of vehicles for range of orientation and correlated sequentially with the log r-o map of region of interest. The type of vehicle is recognized from correlation results. The system analyzes the real time toll plaza video and generates audit report indicating the total count of each type of vehicles during a specified time and the resulted toll collection according to their respective charges. The system also generates monitoring alerts as per given decision rules.
Keywords :
auditing; computerised monitoring; correlation methods; filters; object recognition; road vehicles; audit report; auditing system; buses; cars; geometrical distortion; log r-o mapping; maximum average correlation height filter; motorcycles; out-of-plane rotation invariance; pattern recognition; plaza video; space invariant object recognition; space invariant vehicle recognition; toll plaza monitoring system; trucks; wagons; Cameras; Filters; Image edge detection; Monitoring; Pattern recognition; RFID tags; Space technology; Space vehicles; Support vector machines; Vehicle detection; Log r-o Mapping; MACH Filter; Space Invariant Object Recognition; Toll Auditing;
Conference_Titel :
Multitopic Conference, 2009. INMIC 2009. IEEE 13th International
Conference_Location :
Islamabad
Print_ISBN :
978-1-4244-4872-2
Electronic_ISBN :
978-1-4244-4873-9
DOI :
10.1109/INMIC.2009.5383107