Statistical analysis of the queuing system in a bus terminal (a case study of Nekede bus terminal)
...Making Research more of a fun
Putting smiles in the face of Students
Writing your project with precision
AFRICA'S LARGEST ONLINE
PROJECT ARCHIVES
Search Projects materials, seminars, assignments etc.
Get Professional help. Access 10000+ Works,
Over 300 Software Implementations.
...Get It Done In Record Time
DEPARTMENTS
agricultural education proje ... 0
accounting project topics 669
accounting projects topics & m ... 70
agricultural education project ... 13
agricultural engineering proje ... 33
applied biochemistry projects ... 6
banking and finance project to ... 196
biochemistry project topics an ... 2
biology education project topi ... 12
building technology project to ... 3
business administration projec ... 458
business education project top ... 5
business management project to ... 448
chemical engineering 22
chemical pathology projects to ... 6
chemistry project topics and m ... 17
co-operative and rural develop ... 99
co-operative economic and mana ... 99
computer science project topic ... 351
crop science project topics & ... 1
education project topics and m ... 319
education projects topics and ... 38
electrical and electronic proj ... 54
english language and literatur ... 7
estate management project topi ... 25
fashion design technology proj ... 12
fashion design technology proj ... 10
food science project topics an ... 199
geoinformatics and surveying p ... 4
home economics education proje ... 6
igbo language education projec ... 3
industrial chemistry project t ... 15
industrial chemistry projects ... 29
information technology project ... 2
insurance project topics 63
international relation project ... 26
introductory technology educat ... 1
latest mathematics education p ... 10
library and information scienc ... 2
list of chemistry science educ ... 8
list of computer science educa ... 45
list of economics education pr ... 16
list of english language educa ... 29
list of integrated science edu ... 25
marketing project topics 285
mass communication project top ... 272
mathematics projects topics an ... 1
mba projects topics and materi ... 81
mechanical engineering project ... 128
medical laboratory projects to ... 10
medical radiography and radiol ... 8
microbiology projects topics a ... 104
nursing project topics and mat ... 4
nursing projects topics and ma ... 15
nutrition and dietetics projec ... 22
office technology and manageme ... 128
peace studies and conflict res ... 19
philosophy projects topics and ... 7
physical and health education ... 5
physics options project topics 17
physis education project topic ... 2
physology project topics 3
political science project topi ... 6
printing technology projects t ... 2
projects topics and materials ... 2
purchasing and supply project ... 43
quantity surveying project top ... 1
sociology & psychology project ... 4
sociology and anthropology pro ... 17
statistics project topics and ... 52
thesis topics & materials for ... 11
thesis topics materials for fa ... 0
Select Department
Statistical analysis of the queuing system in a bus terminal (a case study of Nekede bus terminal)
Get the complete project material now!

User Guide before placing order for complete project topics and materials:

It is important that the researcher knows exactly what he is go to do so that I could be done effectively.Make sure you update any research work you purchased on our website. Do not copy word for word. Using our research is legal. Our aim is to provide project topics and materials for easy access to information and to reduce stress of moving from one book stop or library to another in the name of sourcing for one research textbook or research materials. We do not encourage any form of plagiarism. Our aim is to generate research project ideas for students. The contents of the project material provide will help students to generate new ideals. Every researcher must look around him in his immediate environment and beyond to improve the work. To order the below complete project materials, Make payment deposit or cash transfer into any of the following banks:

GTBANK

Account Name: Chi E-Concept Intl, Account Number: 0115939447

Other payment options

We accept cash deposit, cash transfer and Bitcoin.

Click on download to complete your order.Call or Whatsapp +23408063386834

CLICK HERE TO CHAT WITH OUR CUSTOMER SUPPORT TEAM ON WHATSAPP

TABLE OF CONTENTS

CHAPTER ONE

  1. Introduction    -      -      -      -      -      -      -      1-7
    1. Statement of the Problem     -      -      -      -      8-9
    2. Aims and Objectives      -      -      -      -      -      -      9-10
    3. Research questions -      -      -      -      -      -      10
    4. Statements of Hypothesis      -      -      -      -      10
    5. The significance of the Study -      -      -      -      10-11
    6. The Scope of Study -      -      -      -      -      -      11
    7. Definition of Terms -      -      -      -      -      -      11-13

CHAPTER TWO    

Literature Review    -      -      -      -      -      -      -      14-19

CHAPTER THREE

3.0  Data Collection and Method of Analysis -      -      20

3.1  Data Collection and Limitation       -      -      -      -      20-21

3.2  Method of Analysis  -      -      -      -      -      -      21-23     

3.2.1 Data Presentation  -      -      -      -      -      -      23-26

3.3  Validity of Instrument    -      -      -      -      -      26-31

CHAPTER FOUR

  1. Data Analysis and Interpretation   -      -      -      32

4.1  Data Analysis  -      -      -      -      -      -      -      32-34     

4.2  Interpretation of Results -      -      -      -      -      35

CHAPTER FIVE

5.0  Conclusion and Recommendation  -      -      -      36

5.1  Conclusion      -      -      -      -      -      -      -      36

5.2  Recommendation    -      -      -      -      -      -      37

       References      -      -      -      -      -      -      -      38-39

       Appendix -      -      -      -      -      -      -      -      40-48

 

 

 

 

 

 

 ABSTRACT 

       The need to reduce the length of queue (waiting time) forms the basis of this research. This project work centers on the queuing system witnessed at the Nekede bus terminal; and a single serve queuing system was adopted in the analysis. The basic aim and objectives of this research is to identify the distribution of the arrival and service and finding out if increasing the number services (terminal) would tend to reduce the waiting time in the system. Different probability distribution where used to analyze the data which lead to the computing of the queuing statistics with busy time to be 0.73 and idle time to be 0.27, number of vehicle in the system to be 3, number vehicle in queue to be 2, expected waiting time in system to be 0.23 mins and expected waiting time in queue to be 0.17 mins. And also the total number of vehicle served to be 190 within 695 minutes. In conclusion, the researcher finds out that the arrival of buses follows a Poisson distribution as well as exponential service times. And also since there is almost 0 queue (i.e. ρ<1), there is no need for more servers in the system. 

 

CHAPTER ONE

1.0  INTRODUCTION

       Waiting in lines is a part of our everyday life.  Waiting in lines may be due to the demand at any one time may be more than the capacity of service (over crowded), overfilling or due to congestion. Any time there is more customer demand for a service than can be provided, a waiting lines forms. We wait in lines at the movie theatre, at the bank for a teller, at hospital (s) for diagnosis and treatment at a grocery store. Wait time is depends on the number of people waiting before you, the number of servers serving line, and the amount of service time for each individual customer. Customers can be humans or an object such as customer orders to be process, a machine waiting for repair. Matte analytical method of analyzing the relationship between congestion and delay caused by it can be modelled using queuing analysis. Queuing theory provides tools needed for analysis of system of congestion. Mathematically, systems of congestion appear in many diverse and complicated ways and can vary in extent and complexity.

        A waiting line system or queuing system is defined by two important elements: the population source of its customers and the process or service system. The customer population can be considered as finite or infinite. The customer population is finite when the number of customers affects the potential new customers for the service system already in the system. When the number of customers waiting in line does not significantly affect the rate at which the population generates new customers, the customer population is considered infinite. Customer behaviour can change and depends on waiting line characteristics. In addition to waiting, a customer can choose other alternative. When a customer enters the waiting line but leaves before being serviced, process is called Reneging. When customers changes one line to another to reduce wait time, process is called jockeying. Balking occurs when a customer do not enter waiting line but decides to come back later. Another element of queuing system is service system. The number of waiting lines, the number of services, the arrangement of the services, the arrival and service patterns, and the service priority rules characterized the service system. Queue system can have channels or multiple waiting lines. Examples of single waiting line are bank counter, airline counters, restaurants, amusement parks etc. In these examples multiple servers might serve customer. In the single line multiple servers has better performance in terms of waiting times and eliminates jockeying behaviour than the system with a singe line for each server. System serving capacity is a function of the number of service facilities and severs proficiency. In queuing system, the terms server and channel are used interchangeable. Queuing systems are either single server or multiple servers. Single server examples includes gas station food mart with single checkout counter, a theatre with a single person selling ticket and controlling admission into the show. Multiple server examples include gas station with multiple gas pumps, grocery stores with multiple cashiers, and multiple tellers in a bank. Services require single activity or services of activities called phases. In a Single-phase system, the service is completed all at once, such as a bank transaction or grocery store checkout counter. In a multiple phase system, the service is completed in a series of phases, such as at fast food restaurant with ordering, pay, and pick up windows. Queuing system is characterised by rate at which customers arrive and served by service system. Arrival rate specifies the average number of customers per time period. The service rate specifies the average number of customer that can be served during a time period.

The service rate governs capacity of the service system.

It is the fluctuation in arrival and service patterns that causes wait in queuing system. Waiting line models assume that customers arrive according to a Poisson probability distribution, and service times are described by an exponential distribution. The poisson distribution specifics the probability that a certain number of customers will arrive in a given time period. The exponential distribution described the service times as the probability that a particular service time will be less than or equal to a given amount of time. A waiting line priority rule determines which customer is served next. A frequently used priority rule is first come first served. Other rules include best customers first, high-test profit customer first, emergencies first, relatives and friends first, closest units first, last in first served, quickest to service first, Elderly people, women and children first, random order, very important person (VIPS) first and  so on. Although each priority rule has merit, it is important t use the priority rule that best supports the overall organization strategy. The priority rule used affects the performance of waiting line system.

ASSUMPTION INHERENT IN QUEUING SYSTEM

       Basic single server model assumes customers are arriving at poisson arrival rate with exponential service times and first come, first services queue discipline, and infinite queue length, and infinite calling population. By adding additional resources to single server system either service rate can be decreased with additional cost overhead. In single server single-phase system, customer is served once completed.

Common examples of single server singe-phase are teller counter in a bank, a cashier counter in super, market, automated ticketing machine at rain station. In single server queuing system wait time or performance of system depend on efficiency of serving person or service machine. Single server single-phase queuing system is most commonly automated system found in our regular life. For examples many superstores have replaced manual counters with automated machines. Single server multiple-phase incorporates division of work into phase to keep waiting line  moving as completion of whole complete operation might increase wait in a line. Common examples of the these systems are automatic or manual car wash drive through restaurants.

 

 

QUEUING THEORY

Queuing Theory is the mathematical study of waiting lines (or queues).

       The theory enables mathematical analysis of several related processes including arriving at the (back of the) queue, waiting in the queue (essentially a storage process), and being served by the servers at the front of the queue. Theory permits the derivation and calculation of several performance measures including the average waiting time in the queue or the system, the expected number waiting or receiving and the probability of encountering the system in certain states, such as empty full, having an available server or having to wait a certain time to be served.

       Queuing theory is generally considered a branch of operations research because the results are often used when making business decisions about the resources needed to provide service. It is applicable in a wide variety of situations that they may be encountered in business, commerce, industry, public service and engineering. Applications are frequently port and telecommunication. Queuing theory is directly applicable to intelligent transportation systems, call centers, and traffic flow.

ELEMENTS OF A QUEUING MODEL

       The principal actors in a queuing situation are the customer and the server. Customers are generated from a source. On arrival at a service facility, they can start service immediately or wait in a queue if the facility is busy.  When a facility completes a service, it automatically “pulls” a waiting customer, if any, from the queue. If the queu

Get the complete project material now!

CUSTOMER'S REVIEW
blessing
I so much appreciate, keep the good work on.
excellent customer support
I am happy, my project was great.
ohikhueme sylvanus
Please i need theses on Leadership and good governence in nigeria: Imperative of security in nigeria, please i would glad if my message is answered immediatly. Thanks
Tony
This site have all scholars needs for their project, i can testify to that.
Rita
A site with great relief to scholars.
1 - 5 of 96 Reviews
PROJECT INFO

UID : 11105 PRICE : 5,000.00

Download Now
Related Topics
rehabilitation of institute’s group bus.
the importance of studying principles and economics of co-operative as a qualifying subject for the award of ond in business studies (bus 123)
construction of a potable electric operated with radio control (wireless remote) motor vehicle for long danza bus
the importance of studying principles and economics of co-operative as a qualifying subject for the award of ond in business studies (bus 123)
review of the course contents of bus 213 co-operative development (a case study of co-operative economics)
review of the course contents of bus 213 co-operative development (a case study of co-operative economics)
application of queuing models to customer’s management in the banking system
design and implementation of simulation of a queuing system (a case study of trans sport firm)
statistical analysis of the federal government’s expenditure and revenue
statistical analysis of road accidents (a case in your state from 2000 – 2008)


Payment Name Phone Number
Email Address Payment Date
Gender Payment method