Shadowed type 2 fuzzy-based Markov model to predict shortest path with optimized waiting time
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geometry and Topology,Theoretical Computer Science,Software
Link
https://link.springer.com/content/pdf/10.1007/s00500-020-05194-y.pdf
Reference21 articles.
1. Ajao LA, Ajao FJ, Adegboye MA, Ismail AA (2018) An embedded fuzzy logic based application for density traffic control system. Int J Artif Intell Res 2(1):6–13
2. An J, Fu L, Hu M, Chen W, Zhan J (2019) A novel fuzzy-based convolutional neural network method to traffic flow prediction with uncertain traffic accident information. IEEE Access 7:20708–20722
3. Chandel S, Yadav S, Yadav S (2018) Modern traffic control system. Malaya J Mat MJM S:22–25
4. Chatterjee K, De A, Chan FT (2019) Real time traffic delay optimization using shadowed type-2 fuzzy rule base. Appl Soft Comput 74:226–241
5. Chen W, An J, Li R, Fu L, Xie G, Bhuiyan MZA, Li K (2018) A novel fuzzy deep-learning approach to traffic flow prediction with uncertain spatial–temporal data features. Future Gener Comput Syst 89:78–88
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