Title :
POP-TRAFFIC: a novel fuzzy neural approach to road traffic analysis and prediction
Author :
Quek, Chai ; Pasquier, Michel ; Lim, Bernard Boon Seng
Author_Institution :
Centre for Comput. Intelligence, Nanyang Technol. Univ., Singapore
fDate :
6/1/2006 12:00:00 AM
Abstract :
Although much research has been done over the decades on the formulation of statistical regression models for road traffic relationships, they have been largely unsuitable due to the complexity of traffic characteristics. Traffic engineers have resorted to alternative methods such as neural networks, but despite some promising results, the difficulties in their design and implementation remain unresolved. In addition, the opaqueness of trained networks prevents understanding the underlying models. Fuzzy neural networks, which combine the complementary capabilities of both neural networks and fuzzy logic, thus constitute a more promising technique for modeling traffic flow. This paper describes the application of a specific class of fuzzy neural network known as the pseudo outer-product fuzzy neural network using the truth-value-restriction method (POPFNN-TVR) for short-term traffic flow prediction. The obtained results highlight the capability of POPFNN-TVR in fuzzy knowledge extraction and generalization from input data as well its high degree of prediction capability as compared to traditional feedforward neural networks using backpropagation learning.
Keywords :
fuzzy logic; fuzzy neural nets; knowledge acquisition; regression analysis; road traffic; fuzzy knowledge extraction; fuzzy logic; pseudo outer-product fuzzy neural network; road traffic analysis; road traffic prediction; statistical regression models; truth-value-restriction method; Backpropagation; Data mining; Design engineering; Feedforward neural networks; Fuzzy logic; Fuzzy neural networks; Neural networks; Roads; Telecommunication traffic; Traffic control; Density and volume prediction; fuzzy neural network; noise tolerance; pseudo outer-product-based fuzzy neural network (POPFNN); traffic analysis; traffic prediction and modeling; truth-value-restriction fuzzy inference;
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
DOI :
10.1109/TITS.2006.874712