A non-cooperative neuro-fuzzy system for integrating ATIS and ATMS decisions
This paper addresses the problem of integrating successful existing implementations of Advanced Traveler Information Systems (ATIS) and Advanced Traffic Management Systems (ATMS). The methodologies and challenges to integrate ATIS and ATMS are addressed in details. This paper discusses in details th...
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Published in | Fuzzy sets and systems Vol. 144; no. 2; pp. 313 - 343 |
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Format | Journal Article |
Language | English |
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Elsevier B.V
01.06.2004
Elsevier |
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Abstract | This paper addresses the problem of integrating successful existing implementations of Advanced Traveler Information Systems (ATIS) and Advanced Traffic Management Systems (ATMS). The methodologies and challenges to integrate ATIS and ATMS are addressed in details. This paper discusses in details the development of a rule-based neuro-fuzzy logic to integrate existing ATIS and ATMS when they operate in a non-cooperative manner. The individual existing logics are initially upgraded to the so-called ATIS and ATMS stand-alone systems, which may be regarded as bi-level optimization systems. The upper level (of the bi-level optimization system) represents an augmented process for guessing the counter system's decisions, and the lower level represents the existing logic (of ATIS or ATMS). The stand-alone systems are then replicated by simulation-based optimization algorithms, which are used to generate the training data necessary to calibrate the neuro-fuzzy logic. The role of the neural nets and the methodology of fuzzy-logic calibration are discussed in details. The effectiveness and robustness (of the neuro-fuzzy integrated ATIS/ATMS system) are assessed using simulation-based experiments with two different hypothetical networks. |
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AbstractList | This paper addresses the problem of integrating successful existing implementations of Advanced Traveler Information Systems (ATIS) and Advanced Traffic Management Systems (ATMS). The methodologies and challenges to integrate ATIS and ATMS are addressed in details. This paper discusses in details the development of a rule-based neuro-fuzzy logic to integrate existing ATIS and ATMS when they operate in a non-cooperative manner. The individual existing logics are initially upgraded to the so-called ATIS and ATMS stand-alone systems, which may be regarded as bi-level optimization systems. The upper level (of the bi-level optimization system) represents an augmented process for guessing the counter system's decisions, and the lower level represents the existing logic (of ATIS or ATMS). The stand-alone systems are then replicated by simulation-based optimization algorithms, which are used to generate the training data necessary to calibrate the neuro-fuzzy logic. The role of the neural nets and the methodology of fuzzy-logic calibration are discussed in details. The effectiveness and robustness (of the neuro-fuzzy integrated ATIS/ATMS system) are assessed using simulation-based experiments with two different hypothetical networks. |
Author | Hawas, Yaser E. |
Author_xml | – sequence: 1 givenname: Yaser E. surname: Hawas fullname: Hawas, Yaser E. email: y.hawas@uaeu.ac.ae organization: Civil Engineering Department, United Arab Emirates University, P.O. Box 17555, Al-Ain, United Arab Emirates |
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Keywords | Fuzzy logic Signal control Integration Neural nets Simulation Traffic assignment Optimization Fuzzy system Methodology Information system Optimization method Traffic Calibration Fuzzy set Algorithm Decision Implementation Engineering Traffic management Network Information processing Development Integrated system Robustness |
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SubjectTerms | Applied sciences Circuit properties Computer science; control theory; systems Control theory. Systems Digital circuits Electric, optical and optoelectronic circuits Electronic circuits Electronics Exact sciences and technology Fuzzy logic Information, signal and communications theory Integration Mathematical methods Miscellaneous Neural nets Optimization Signal control Simulation System theory Telecommunications and information theory Theoretical computing Traffic assignment |
Title | A non-cooperative neuro-fuzzy system for integrating ATIS and ATMS decisions |
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