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International Journal of Ethics in Engineering & Management Education 
Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) 
Congestion control using Image Processing 
21 
Nagaraj Eshwaraj 
Computer Science Engineering 
Appa Institute of Engineering & Technology 
Gulbarga, India 
inagarajeashwaraj@gmail.com 
Jagdish Mulge 
Computer Science Engineering 
VTU Regional 
Bangalore, India 
jaggumulge@gmail.com 
Abstract—Traffic means the congestion of vehicles on the roads. 
Congestion may result due to heavy traffic at a junction. In 
developing cities, traffic management is becoming important 
issue day by day due to rapid increase in number of vehicles. Lot 
of man-hours is being wasted in traveling due to bad traffic 
management. 
Index Terms—Image processing, traffic management, vehicle 
management 
I. INTRODUCTION 
Traffic means the congestion of vehicles on the roads. 
Congestion may result due to heavy traffic at a junction. In 
developing cities, traffic management is becoming important 
issue day by day due to rapid increase in number of vehicles. 
Lot of man-hours is being wasted in traveling due to bad 
traffic management. To avoid traffic there are so many 
congestion management techniques available. Even though 
many companies are working on traffic management over 
years, no technique is perfect by itself as the real time 
situations are generally continuously changing and the system 
has to adapt itself to change in the continuously changing 
circumstances. In the rapidly growing cities due to lack of 
adaptive congestion management system, traffic management 
is not effective and incapable of avoiding congestions. 
Congestion may result in traffic jams at junctions. In 
developing cities like Bangalore traffic management is 
becoming important issue day by day due to rapid increase in 
number of vehicles. Lot of man-hours is being wasted in 
traveling due to bad traffic management. We have to make an 
attempt to provide some congestion management strategies 
which are self adaptive in nature, so as to fit in to continuously 
changing real time traffic scenarios. 
II. STATEMENT OF THE PROBLEM 
The problem statement of our project can be brought to 
points as below. 
 In the rapidly growing cities due to lack of adaptive 
traffic management system, traffic management is not 
effective and incapable of avoiding congestions which 
would have been avoided with better congestion 
management system. 
 For different real time traffic situations, the approach of 
the system is not different, in currently working traffic 
management systems, which may lead to bad congestion 
management. 
III. THE SOLUTION 
We have made an attempt to provide some traffic management 
strategies which are self adaptive in nature, so as to fit in to 
continuously changing real time traffic scenarios. 
For the Junction at which rate of change of average traffic 
density is less we have provided strategy called Gradual 
Adaptation and for the Junctions at which average traffic 
density varies drastically with respect to time we have provided 
a strategy which we have named On-Situation scheduling. In 
exceptional situations we have provided option for manual 
traffic control. 
Image Processing: 
An Image is rectangular graphical object. Image 
processing involves issues related to Image representation, 
compression techniques and various complex operations, 
which can be carried out on the image data. 
Traffic density of lanes is calculated using image 
processing which is done of images of lanes that are captured 
using digital camera. We have chosen image processing for 
calculation of traffic density as cameras are very much cheaper 
than other devises such as sensors. 
 Image processing is done by using images of lanes 
that are captured using digital camera. 
 Image processing involves image representation, and 
some operations which can be carried out on the 
image data. 
 The operations under image processing are 
enhancement operations such as sharpening, blurring, 
brightening, edge detection etc. 
We have provided an attractive graphical user interface to the 
user through which he can communicate with our system. The 
various technologies used in the implementation of our project 
are Java Swings and AWT to provide the graphical user 
interface to the user. 
IV. OBJECTIVES OF PROJECT 
Our main objective is to design a system that adopts 
itself to real time changing environments and that should gain 
us maximum benefits.
International Journal of Ethics in Engineering  Management Education 
Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) 
22 
· To develop a unique technique that can manage traffic 
problem effectively. 
· To avoid congestion and efficiently manage emergency 
situations. 
· To encourage effective products in the area of traffic 
management. 
· In exceptional situations we have provided option for 
manual traffic control. 
· For the Junction at which rate of change of average traffic 
density is less we have provided strategy called “Gradual 
Adaptation” 
· For the Junctions at which average traffic density varies 
drastically with respect to time we have provided a 
strategy which we have named “On-Situation 
scheduling”. 
V. SCOPE 
In a software development project errors can be injected at any 
stage during the development. During testing the program 
tested is executed with a set of test cases and output of the 
program is evaluated to determine if the program is performing 
as it is expected to. 
For each phase of development, different techniques for 
detecting and eliminating errors that originate in that phase are 
used. This is done so that the errors from a module do not carry 
on, into the system affecting further development. 
VI. ARCHITECTURE 
Figure 1: Architecture of traffic management System. 
Traffic Management 
Gradual Adaptation 
 Round Robin 
 Better Suited for junction at which the rate of 
change of traffic density is low. 
 Timing display is provided 
 The change descriptions (Green Signal 
Duration) are deployed when the lane is 
switching from green signal to red signal. 
On-Situation Scheduling 
 Scheduling is based on weight age of lanes 
calculated using Traffic density and 
waiting time. 
 Better Suited for junction at which the rate of 
change of traffic density is high 
 Timing display not possible since the 
algorithm is dynamic. 
Manual 
 An operator has to manage depending on 
situation. 
 Best suited in exceptional cases such as 
arrival of VIPs, Accidents etc. 
VII. RESULT 
This chapter deals with the obtained results from our 
system. Let us see some of the results with examples. 
Traffic Density calculation 
Scheduling is based on weightage of lanes calculated 
using Waitage to Traffic density (TD), Waitage to waiting 
time and Waitage to rate of change of traffic density 
(RCTD). 
Weightage = TrafficDensity*WaitageToTD+RCTD * 
waitageToRCTD + waited*WaitageToW 
Image Operation GUI 
Figure 2: Image operations GUI 
Manual Operation 
Figure 3: Manual operation
International Journal of Ethics in Engineering  Management Education 
Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) 
23 
Gradual Adaptation 
Figure 4: Gradual Adaptation GUI 
On-Situation Scheduling 
Figure 5: On-Situation Scheduling snapshot 
VIII. ADVANTAGES AND LIMITATIONS 
Advantages 
· Employing this new system can be useful in traffic 
management system, as it is capable of avoiding 
congestions and ensures better traffic management 
system. 
· For different real time traffic situations, the approach of 
the system is different, in currently working traffic 
management systems we don’t find such adoptions to 
different circumstances. 
· As it is designed and developed by using minimal 
resource, it acts as a cost-effective product amongst the 
traffic management systems. 
Limitations 
· It is important to critically evaluate the results and the 
whole study. 
· The present study has certain limitations that need to be 
taken into account when considering the study and its 
contributions. 
· Some of these limitations can be seen as fruitful avenues 
for future research under the same theme. 
· Phenomenon that is a very extensive and major one. 
The selection of the case studies naturally brings forth 
many limitations as far as the generalization of the results of 
the study is concerned. 
REFERENCES 
[1] Ralf Steinmetz  Klara Nahrstedt, Media Coding and Content 
Processing, Volume 1, Prentice-Hall of India pvt Ltd, 2005 
[2] Rafael C.Gonzalez  Richard E.Woods, Digital Image 
Processing,Addision Wesley Longman, Fourth Edition, 2000 
[3] Maher A. Sid-Ahmed, Image Processing: Theory, Algorithms, and 
Architectures, McGraw-hill Publications, 1995 
[4] Patrick Naughton  Herbert Schildt, Java 2: The Complete Reference, 
Tata McGraw-Hill Ltd, Third Edition, 2000. 
[5] Kathy Sierra  Bert Bates, Head First Java Second Edition, O’Reilly 
and SPD distributors’ Pvt Ltd., 2005.

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  • 1. International Journal of Ethics in Engineering & Management Education Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) Congestion control using Image Processing 21 Nagaraj Eshwaraj Computer Science Engineering Appa Institute of Engineering & Technology Gulbarga, India inagarajeashwaraj@gmail.com Jagdish Mulge Computer Science Engineering VTU Regional Bangalore, India jaggumulge@gmail.com Abstract—Traffic means the congestion of vehicles on the roads. Congestion may result due to heavy traffic at a junction. In developing cities, traffic management is becoming important issue day by day due to rapid increase in number of vehicles. Lot of man-hours is being wasted in traveling due to bad traffic management. Index Terms—Image processing, traffic management, vehicle management I. INTRODUCTION Traffic means the congestion of vehicles on the roads. Congestion may result due to heavy traffic at a junction. In developing cities, traffic management is becoming important issue day by day due to rapid increase in number of vehicles. Lot of man-hours is being wasted in traveling due to bad traffic management. To avoid traffic there are so many congestion management techniques available. Even though many companies are working on traffic management over years, no technique is perfect by itself as the real time situations are generally continuously changing and the system has to adapt itself to change in the continuously changing circumstances. In the rapidly growing cities due to lack of adaptive congestion management system, traffic management is not effective and incapable of avoiding congestions. Congestion may result in traffic jams at junctions. In developing cities like Bangalore traffic management is becoming important issue day by day due to rapid increase in number of vehicles. Lot of man-hours is being wasted in traveling due to bad traffic management. We have to make an attempt to provide some congestion management strategies which are self adaptive in nature, so as to fit in to continuously changing real time traffic scenarios. II. STATEMENT OF THE PROBLEM The problem statement of our project can be brought to points as below. In the rapidly growing cities due to lack of adaptive traffic management system, traffic management is not effective and incapable of avoiding congestions which would have been avoided with better congestion management system. For different real time traffic situations, the approach of the system is not different, in currently working traffic management systems, which may lead to bad congestion management. III. THE SOLUTION We have made an attempt to provide some traffic management strategies which are self adaptive in nature, so as to fit in to continuously changing real time traffic scenarios. For the Junction at which rate of change of average traffic density is less we have provided strategy called Gradual Adaptation and for the Junctions at which average traffic density varies drastically with respect to time we have provided a strategy which we have named On-Situation scheduling. In exceptional situations we have provided option for manual traffic control. Image Processing: An Image is rectangular graphical object. Image processing involves issues related to Image representation, compression techniques and various complex operations, which can be carried out on the image data. Traffic density of lanes is calculated using image processing which is done of images of lanes that are captured using digital camera. We have chosen image processing for calculation of traffic density as cameras are very much cheaper than other devises such as sensors. Image processing is done by using images of lanes that are captured using digital camera. Image processing involves image representation, and some operations which can be carried out on the image data. The operations under image processing are enhancement operations such as sharpening, blurring, brightening, edge detection etc. We have provided an attractive graphical user interface to the user through which he can communicate with our system. The various technologies used in the implementation of our project are Java Swings and AWT to provide the graphical user interface to the user. IV. OBJECTIVES OF PROJECT Our main objective is to design a system that adopts itself to real time changing environments and that should gain us maximum benefits.
  • 2. International Journal of Ethics in Engineering Management Education Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) 22 · To develop a unique technique that can manage traffic problem effectively. · To avoid congestion and efficiently manage emergency situations. · To encourage effective products in the area of traffic management. · In exceptional situations we have provided option for manual traffic control. · For the Junction at which rate of change of average traffic density is less we have provided strategy called “Gradual Adaptation” · For the Junctions at which average traffic density varies drastically with respect to time we have provided a strategy which we have named “On-Situation scheduling”. V. SCOPE In a software development project errors can be injected at any stage during the development. During testing the program tested is executed with a set of test cases and output of the program is evaluated to determine if the program is performing as it is expected to. For each phase of development, different techniques for detecting and eliminating errors that originate in that phase are used. This is done so that the errors from a module do not carry on, into the system affecting further development. VI. ARCHITECTURE Figure 1: Architecture of traffic management System. Traffic Management Gradual Adaptation Round Robin Better Suited for junction at which the rate of change of traffic density is low. Timing display is provided The change descriptions (Green Signal Duration) are deployed when the lane is switching from green signal to red signal. On-Situation Scheduling Scheduling is based on weight age of lanes calculated using Traffic density and waiting time. Better Suited for junction at which the rate of change of traffic density is high Timing display not possible since the algorithm is dynamic. Manual An operator has to manage depending on situation. Best suited in exceptional cases such as arrival of VIPs, Accidents etc. VII. RESULT This chapter deals with the obtained results from our system. Let us see some of the results with examples. Traffic Density calculation Scheduling is based on weightage of lanes calculated using Waitage to Traffic density (TD), Waitage to waiting time and Waitage to rate of change of traffic density (RCTD). Weightage = TrafficDensity*WaitageToTD+RCTD * waitageToRCTD + waited*WaitageToW Image Operation GUI Figure 2: Image operations GUI Manual Operation Figure 3: Manual operation
  • 3. International Journal of Ethics in Engineering Management Education Website: www.ijeee.in (ISSN: 2348-4748, Volume 1, Issue 10, October 2014) 23 Gradual Adaptation Figure 4: Gradual Adaptation GUI On-Situation Scheduling Figure 5: On-Situation Scheduling snapshot VIII. ADVANTAGES AND LIMITATIONS Advantages · Employing this new system can be useful in traffic management system, as it is capable of avoiding congestions and ensures better traffic management system. · For different real time traffic situations, the approach of the system is different, in currently working traffic management systems we don’t find such adoptions to different circumstances. · As it is designed and developed by using minimal resource, it acts as a cost-effective product amongst the traffic management systems. Limitations · It is important to critically evaluate the results and the whole study. · The present study has certain limitations that need to be taken into account when considering the study and its contributions. · Some of these limitations can be seen as fruitful avenues for future research under the same theme. · Phenomenon that is a very extensive and major one. The selection of the case studies naturally brings forth many limitations as far as the generalization of the results of the study is concerned. REFERENCES [1] Ralf Steinmetz Klara Nahrstedt, Media Coding and Content Processing, Volume 1, Prentice-Hall of India pvt Ltd, 2005 [2] Rafael C.Gonzalez Richard E.Woods, Digital Image Processing,Addision Wesley Longman, Fourth Edition, 2000 [3] Maher A. Sid-Ahmed, Image Processing: Theory, Algorithms, and Architectures, McGraw-hill Publications, 1995 [4] Patrick Naughton Herbert Schildt, Java 2: The Complete Reference, Tata McGraw-Hill Ltd, Third Edition, 2000. [5] Kathy Sierra Bert Bates, Head First Java Second Edition, O’Reilly and SPD distributors’ Pvt Ltd., 2005.