Development of neuro fuzzy techniques for traffic conditions

The transport system in Singapore is well developed. Singapore is facing a first world public transport and is critically suffering due to increase in congestion, overcrowding and crowd bottle neck. In many developed countries, the major challenge faced is the monitoring efficiently and control of t...

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Main Author: Chandrasekaran, Dikshita
Other Authors: Er Meng Joo
Format: Final Year Project
Language:English
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/10356/61515
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-615152023-07-07T16:57:07Z Development of neuro fuzzy techniques for traffic conditions Chandrasekaran, Dikshita Er Meng Joo School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Control engineering The transport system in Singapore is well developed. Singapore is facing a first world public transport and is critically suffering due to increase in congestion, overcrowding and crowd bottle neck. In many developed countries, the major challenge faced is the monitoring efficiently and control of the traffic of the city. The conventional method of using a pre-timed controller at signalized intersection, cycle timing preset along with closed loop sensors are no longer efficient in effectively managing the traffic conditions. This facilitates the need to employ intelligent techniques to model the traffic conditions to achieve efficient and effective control and management of the traffic resources. To overcome this problem, this project suggests an alternative fuzzy neural networks learning memory techniques to design intelligent controllers. The learning algorithm to generate fuzzy rules using the Generalised Dynamic Fuzzy Neural Network(GDFNN) is studied and a Matlab code is developed for the neural network. An online open source signalised traffic intersection simulator is observed and an isolated traffic signal light intersection is designed. The extension of signal timing at the intersection is predicted using fuzzy logic. The traffic light intersection data thus generated is used as inputs to evaluate the performance of training and testing the architecture. Another fuzzy neural network architecture, DENFIS, Dynamic Evolving Neural Fuzzy Inference system is studied and used to benchmark the performance of GDFNN. The prediction of signal timing extension is obtained from the fuzzy logic controller designed for an isolated signalized intersection. The performance of both the architectures is found be promising for the traffic data collected from simulation and prediction timing. Performance is based on the mean number of rules, mean training time and the prediction error of the outputs. GDFNN produced good results with generation of a compact fuzzy rule base and low prediction error of outputs. DENFIS architecture generated fuzzy rules at lower computational time. Bachelor of Engineering 2014-06-11T03:00:05Z 2014-06-11T03:00:05Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/61515 en Nanyang Technological University 83 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Control engineering
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Control engineering
Chandrasekaran, Dikshita
Development of neuro fuzzy techniques for traffic conditions
description The transport system in Singapore is well developed. Singapore is facing a first world public transport and is critically suffering due to increase in congestion, overcrowding and crowd bottle neck. In many developed countries, the major challenge faced is the monitoring efficiently and control of the traffic of the city. The conventional method of using a pre-timed controller at signalized intersection, cycle timing preset along with closed loop sensors are no longer efficient in effectively managing the traffic conditions. This facilitates the need to employ intelligent techniques to model the traffic conditions to achieve efficient and effective control and management of the traffic resources. To overcome this problem, this project suggests an alternative fuzzy neural networks learning memory techniques to design intelligent controllers. The learning algorithm to generate fuzzy rules using the Generalised Dynamic Fuzzy Neural Network(GDFNN) is studied and a Matlab code is developed for the neural network. An online open source signalised traffic intersection simulator is observed and an isolated traffic signal light intersection is designed. The extension of signal timing at the intersection is predicted using fuzzy logic. The traffic light intersection data thus generated is used as inputs to evaluate the performance of training and testing the architecture. Another fuzzy neural network architecture, DENFIS, Dynamic Evolving Neural Fuzzy Inference system is studied and used to benchmark the performance of GDFNN. The prediction of signal timing extension is obtained from the fuzzy logic controller designed for an isolated signalized intersection. The performance of both the architectures is found be promising for the traffic data collected from simulation and prediction timing. Performance is based on the mean number of rules, mean training time and the prediction error of the outputs. GDFNN produced good results with generation of a compact fuzzy rule base and low prediction error of outputs. DENFIS architecture generated fuzzy rules at lower computational time.
author2 Er Meng Joo
author_facet Er Meng Joo
Chandrasekaran, Dikshita
format Final Year Project
author Chandrasekaran, Dikshita
author_sort Chandrasekaran, Dikshita
title Development of neuro fuzzy techniques for traffic conditions
title_short Development of neuro fuzzy techniques for traffic conditions
title_full Development of neuro fuzzy techniques for traffic conditions
title_fullStr Development of neuro fuzzy techniques for traffic conditions
title_full_unstemmed Development of neuro fuzzy techniques for traffic conditions
title_sort development of neuro fuzzy techniques for traffic conditions
publishDate 2014
url http://hdl.handle.net/10356/61515
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