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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 443
Updation in Route Mapping Using Videography Technology
Prof. Parveen Hussain1 , Priyanshu P. Narayane2 , Harsh S. Sahare3, Soumya P. Shrivastava4,
Abhishai E. Amair5
Assistant Professor, Department of Computer Engineering, Anjuman Polytechnic, Nagpur, Maharashtra, India1
UG Students, Department of Computer Engineering, Anjuman Polytechnic, Nagpur, Maharashtra, India 2,3,4,5
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - Visualization works from a human perspective
because we respond to and process visual data better than
any other type of data, that’s why we taught about route
mapping using videography technology. The technical
validation of videography navigate on, a new service that
makes use of the map platform, and the basis for building
multiple services in a high-accuracy positioning society. The
capacity to give real-time video information, which may be
utilized to improve navigation accuracy, is one of the main
benefits of videography navigation. Videography navigation
may be a pillar of positioning technology in the future with
more research and testing.
Key Words: Video graphic Technology, Informatory
Landmarks, Navigation, Route mapping ETC..
1. INTRODUCTION
Google Maps does not show us photographs of the sites
that will be along the road to our destination since it only
shows a visual representation of the major location that a
traveler wishes to reach. Google Maps simply provides the
turn distances. For example, if we are travelling while
there lies a turn afterward, Google Maps will inform us
that the turn is 300 meters away or something similar.
However, if someone misses a turn sometimes, Google
Maps will reroute us and show us a longer path. This issue
won't impact our maps since we give them photographs of
landmarks, allowing the user or passenger to readily
acknowledge the image included in the route and take the
turn. Additionally, our project will conserve time and
gasoline, because it enables travelers to get there more
quickly. The visualization works from a human standpoint
because we react to and absorb visual information more
quickly than any other sort of data. Visual images will play
a significant role in the future, That's why we considered
using videography technology with route mapping.
Maps is now one of the primary ways to go to the target
location due to the improvement in the quality of videos
and the increasing number of its users. This enables the
integration of Google Maps with videography technologies.
This research says that businesses that have started
applying digital maps have seen an increase in staff
productivity, improved visual communication, and a more
than 50% reduction in the cost of logistics and resource
planning. Online markets, delivery services, farming,
property management, engineering either media, power
and utilities, insurance, and architecture are just a few of
the numerous sectors that have benefited from this
technology - O.S. Asaolu et al (2018)[1]. This study says
that the availability of online mapping tools like Maps by
Google and Street View has increased. Although there are
numerous practical applications for these technologies in
daily life, law enforcement organizations have voiced
worry that they may be used by criminals to their
advantage and potentially change established patterns and
habits of criminal behavior. Despite not being designed
with scientific inquiry in mind, Maps by Google and Street
View provide intriguing opportunities for study-
Christophe Vandeviver et al (2014)[2]. Web map services
are a new type of map service that was made possible by
the use of GIS, computer, and internet technologies. This
article uses the Google Maps Application Programming
Interface (API) and XML to create a network release
mechanism for regional land use data and applies Web
map services to the distribution of land use information.
The application programming interface for Google Maps
based on its three map modes was introduced by Google.
Chenzji et al (2010)[3].
1.1 OBJECTIVES
[1] To rectify the problems faced by travelers while
travelling on routes.
[2] To collect data of main spots from the site selected of
“Nagpur”.
[3] To merge and upload the data collected in website or
application.
[4] To save traveler time and wastage of fuel by providing
shortest routes using video graphic technology.
1.2 SCOPE OF THE WORK
So our scope of the project is to make a website where user
can enter the specified location where he or she wants to
travel and then our maps will locate the place or
destination and then our map will provide the shortest
route of the destination with the visual images or videos of
the important landmarks which can be easily viewable by
traveler.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 444
The study is to make a website where each and every
Visual photos or videos of every landmarks is present not
entire the city but across the state. This is our future scope.
We also want that traveler can easily reach the destination
and also faster. Our project main scope is to reduce the
time and wastage of petroleum using videography
technology i.e. providing visual images or photos of
landmarks that are easily viewable by any person.
2. EXPERIMENTAL PROGRAM
After Mumbai, Pune and Nagpur is the third-largest city in
Maharashtra, with an estimated population of over 2.5
million.
When it comes to traffic, Nagpur is renowned for having
an effective rail, road, and air transportation
infrastructure. The city has excellent transit links to
different regions of India. Additionally, Nagpur has an
international airport that links the city to other nations.
Fig -1: Map of Nagpur city
2.1 SELECTION OF AREA FOR ROUTE MAPPING
First we will have to select a area on which we can map the
route. When selecting a route map, one of the first and
most important steps is to select an area on which to map
the route. This area should be chosen based on a variety of
factors, including the availability of data and resources and
geography of area. Data resource such as landmarks, roads
anything within the routes.
ROUTES THAT WE SELECTED
 Junction Anjuman College Nagpur
[1] Anjuman to Nagpur Airport (Sonegaon, Nagpur).
[2] Anjuman to Itwari Market (Itwari Nagpur).
[3] Anjuman to Futala University (Near Futala lake).
[4] Anjuman to Koradi Temple (Koradi road).
[5] Anjuman to Automotive metro station
(Automotive square).
2.2 SELECTION OF LAND MARKS FOR ROUTE MAPPING
The selection of landmarks for route mapping is an
essential step in creating an accurate and useful route
mapping video. It involves defining the project's objectives,
identifying the target audience, visualizable photos and the
desired outcome of the project, identifying the landmarks
that are relevant to the project, determining their visibility,
and recognizability and planning the logistics of capturing
photos and videos of them.
This includes scouting the locations to determine the best
angles and lighting conditions for capturing high-quality
footage, and coordinating with local authorities or property
owners to ensure that the capture process goes smoothly
and without interruption. The selection of landmarks for
route mapping is an essential step in creating an accurate
and useful route mapping video.
By considering factors such as the visibility and
recognizability of landmarks, their location, and their
relevance to the audience, the resulting map provides
valuable information that is easy to understand and follow.
2.3 CAPTURING PHOTOS AND VIDEOS FOR EASY
NAVIGATIONFOR ROUTE MAPPING
Capturing photos and videos of landmarks and key points
along the route is essential for creating a visual guide for
navigation and accurate mapping. GPS- enabled cameras
are expensive, so alternative methods such as manually
tagging each photo and video with location data are also
available.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 445
Fig -2: Selection of Land Marks and Capturing Photos.
It is important to focus on capturing key landmarks and
points of interest alongthe route, as well as signs and other
markers along the route. By using GPS-enabled cameras or
manually tagging each photo and video with location data,
we can create a visual guide for navigation, accurate
mapping, and sharing the route with others.
2.4 MERGING PHOTOS & VIDEO FOR MAPPING
Merging photos and videos can be a powerful way to create
a comprehensive visual record for mapping in a project. To
merge photos and videos, we need to use specialized
software that allows us to combine differentmedia types.
Once we have merged our photos and videos, we can
export the final product as a video file.
Video is an excellent tool for visualizing maps and
providing a more immersive experience for viewers. It can
capture a wide range of actions, from the subtle
movements of nature to the fast-paced action of sports,
giving viewers a more immersive and realistic experience.
Videos are an effective and engaging medium for
visualizing information, offering a unique way of conveying
information that can captivate and engage audiences.
2.5 ADDING IMAGES, VIDEO & ROUTE DATA TO
DATABASE
The most important details in this text are the steps needed
to add images and videos to a database. This can be
achieved by creating a table in the database that includes
the necessary fields for storing image and videodata, such
as file name, file type, file size, and file location.
Additionally, a server-side scripting language such as
JavaScript is used to upload the multimedia files to the
database.
Additionally, route data is stored in the database to create
interactive and informative maps for the project. Finally, a
video player library such as Video.js or Play can be used to
play videos on the website. By adding images, video, and
route data to the database, the project can greatly enhance
the functionality and appeal of the project, creating a rich
and engaging multimedia experience for the user.
3. METHODOLOGY OF EXPERIMENT
On our website, there is a page where visitors may
choose their starting place and final destination for a
journey. The page uses the responsive Bootstrap 4.3.1
framework and has a dark mode design. Two dropdown
choices on the form let you choose the beginning and
ending points, respectively. After the form is submitted, a
script is run to process the data and carry out an additional
action not mentioned in the present code.
3.1 DESIGN
The website has a slick, contemporary layout with a
dark color palette. The form's max-width and min-width
are both 500px, and it includes a border with a 1px
thickness and the color #555555. The form-group labels
are styled with a margin-bottom of 5px and a display of
block. The padding for the select elements is 12 px and 20
px, and their width is 100%. The select element's
background image is an ion icons-provided down arrow
icon. The form's background-size and appearance are set to
20px by 20px, and the submit button is 100% wide with a
background color of #00bfff and a font color of #f5f5f5. The
text-align has been set to centre, and the padding is 12px
20px. There is a transitional effect applied to the
background-color property, and the text decoration is
nonexistent. The labels for the starting point and
destination select elements are styled with a font awesome
icon of a map marker.
3.2 WORKING
For demo purpose your website is available locally and not
global so as of now people can only access this website if
they have it in their computers locally. After the website is
tested and approved the website will be making globally so
everyone can access and use our project. After the user
loads our project in their browser like chrome, brave,
internet explorer, etc. If your net speed is slow then the
website will show a loading screen till the project is not
fully loaded into the browser after the website is fully
loaded. You will see the name of the project at the center
along with a form and a map just next to the form. The form
will consist of two inputs one for the starting point and the
other for destination or end point. The starting pointinput
will be disabled because we have taken our collegeas the
center so the starting point will always be the starting
point. When click on destination point input multiple
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 446
option will appear, they are the location that the user can
go to.
After the user clicks a destination and presses go button.
The control will go to the JavaScript function which is
assigned with the form. The function will retriever the
information like the starting point and the end point and
then provides this information to the Google maps. The
Google maps will provide destination or end point
information. After this the map which was showing our
college at the start will now show the route to the
destination or end point. The form will also get changed,
now it will have two new fields one for the time required to
go to that station and the over will show the distance
between our college that is the starting point and the
destination selected by the user. After sometime a video
will be played which will show the route from the starting
point and destination orend point. After the video is played
the user will be redirected to the Google maps app for
route. Now as the user knows the route that was played in
the video, he or she will follow that route and the Google
map will adjust the route according.
Fig -3: Website UI
4. TESTS CONDUCTED
1. Checked that the starting point field is disabled
because user cannot change the starting point.
2. Checked whether the end point or destination
point field can be clicked by the user.
3. Checked whether the entire destinations are
included in the end point or destination field.
4. Checked whether the go button is clickable that is
the user can click the button.
5. Checked that after the user selected the end point
or destination and clicks the go button then the
map is updated according.
6. Checked that two new fields are visible to the user
that are time and distance after go button is
clicked.
7. Checked that the time and distance field are not
changeable and they show time and distance.
8. Checked that the map can be zoomed in and
zoomed out by the user. Checked that the video is
played.
9. Checked that after the video is played the user is
redirected to the Google maps app.
10. Checked that the correct video is played.
5. RESULTS AND DISCUSSION
1. The starting point field is disabled and the user
cannot change the starting point.
2. The user can click on the destination field and
change it.
3. The entire required destinations are included in
the end point or destination field.
4. The go button can be clicked by the user and its
calls the JavaScript function properly.
5. The map takes some time to update but it
properly updates according to the destination
specified by the user.
6. Two new fields gets displayed as the user clicks
on the go button.
7. The user cannot change the time and destination
field.
8. The map gets zoomed in after user clicks plus
button and the map gets zoomed out after user
clicks minus button.
9. The video is played automatically after go button
isplaced
10. After the video is finished the user is redirected
to Google maps app.
11. Correct video is played when user presses go
button.
5.1 ADVANTAGES
5.1.1 Wealth of Information
1. Our project provides the layout of roads, the
locations of cities and towns, state boundaries,
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 447
geographical features, restaurant reviews and
satellite images with video graphic Technology.
5.1.2 We reach our destination faster
1. Our project gives you directions for trips by car,
bike, or public transportation in shortest distance,
shortest in period of time.
2. Our project shows the shortest root for your
destination so that the user can reach his
destination as early as possible.
5.1.3 Explore Places with videos
1. Our project shows the video of the landmark while
travelling
2. It makes easy for the user for understanding the
routes and to reach his destination.
5.1.4 Easy Navigation
1. Our project makes it easy to navigate and find your
way to the destination with turn -by-turn
direction.
5.1.5 Visual Representation
1. Maps provide a visual representation of
geographic information, making it easy to
understand and analyze complex data, including
patterns, relationships, and trends.
2. It shows the proper routes and present in easy
way to user so it become easy for the user to
travel in unknown place city, state.
5.2 LIMITATIONS
5.2.1 Dependence on internet connection
1. It requires an internet connection to function
properly, which can be a problem in areas with
poor connectivity or when traveling to other
countries where roaming charges may apply.
5.2.2. Limited accessibility
1. As our project is in developing phase so it can be
access in limited areas. There is limitation in the
features, we can use only limited features because
it is in developing phase.
6. CONCLUSIONS
In conclusion, our project is a highly useful. It allows users
to easily search for locations, get directions, view satellite
imagery, and even explore new places through features
such as Street View. it is available on various devices
including desktop computers, Smartphone’s, and tablets. It
is a updating of Google maps so that it can show an
accurate direction of the location mentioned by the user,
and makes easy for the user to travel in unknown city,
state through videography technology Overall, our project
has revolutionized the way we navigate and explore the
world around us.
REFERENCES
[1] O.S. Asaolu et al (2018) - Shortest Route: A Mobile
Application for Route Optimization using Digital Map"
Published by the Faculty of Engineering, University of
Maiduguri, Maiduguri.
[2] Christophe Vandeviver et al (2014) - Applying Google
Maps and Google Street View in Criminological
Research, Vandevier Crime Science.
[3] Chenzji et al (2010) - Land Use Information Release
System Based on Google Maps API and XML", Key
Laboratory of Geo-informatics of State Bureau of
Surveying and Mapping (No.200712).
[4] SU De-guo et al (2010) - The Framework of Active
Cartography of Statistical Map", 2010 Second
International Workshop on Education Technology and
Computer Science.
[5] Alexander et al (2009) - An Expert System for Tourists
Using Google Maps API", 2009 IEEE R. Nicole, “Title of
paper with only first word capitalized,” J. Name Stand.
Abbrev, in press.

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Videography Route Mapping

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 443 Updation in Route Mapping Using Videography Technology Prof. Parveen Hussain1 , Priyanshu P. Narayane2 , Harsh S. Sahare3, Soumya P. Shrivastava4, Abhishai E. Amair5 Assistant Professor, Department of Computer Engineering, Anjuman Polytechnic, Nagpur, Maharashtra, India1 UG Students, Department of Computer Engineering, Anjuman Polytechnic, Nagpur, Maharashtra, India 2,3,4,5 ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - Visualization works from a human perspective because we respond to and process visual data better than any other type of data, that’s why we taught about route mapping using videography technology. The technical validation of videography navigate on, a new service that makes use of the map platform, and the basis for building multiple services in a high-accuracy positioning society. The capacity to give real-time video information, which may be utilized to improve navigation accuracy, is one of the main benefits of videography navigation. Videography navigation may be a pillar of positioning technology in the future with more research and testing. Key Words: Video graphic Technology, Informatory Landmarks, Navigation, Route mapping ETC.. 1. INTRODUCTION Google Maps does not show us photographs of the sites that will be along the road to our destination since it only shows a visual representation of the major location that a traveler wishes to reach. Google Maps simply provides the turn distances. For example, if we are travelling while there lies a turn afterward, Google Maps will inform us that the turn is 300 meters away or something similar. However, if someone misses a turn sometimes, Google Maps will reroute us and show us a longer path. This issue won't impact our maps since we give them photographs of landmarks, allowing the user or passenger to readily acknowledge the image included in the route and take the turn. Additionally, our project will conserve time and gasoline, because it enables travelers to get there more quickly. The visualization works from a human standpoint because we react to and absorb visual information more quickly than any other sort of data. Visual images will play a significant role in the future, That's why we considered using videography technology with route mapping. Maps is now one of the primary ways to go to the target location due to the improvement in the quality of videos and the increasing number of its users. This enables the integration of Google Maps with videography technologies. This research says that businesses that have started applying digital maps have seen an increase in staff productivity, improved visual communication, and a more than 50% reduction in the cost of logistics and resource planning. Online markets, delivery services, farming, property management, engineering either media, power and utilities, insurance, and architecture are just a few of the numerous sectors that have benefited from this technology - O.S. Asaolu et al (2018)[1]. This study says that the availability of online mapping tools like Maps by Google and Street View has increased. Although there are numerous practical applications for these technologies in daily life, law enforcement organizations have voiced worry that they may be used by criminals to their advantage and potentially change established patterns and habits of criminal behavior. Despite not being designed with scientific inquiry in mind, Maps by Google and Street View provide intriguing opportunities for study- Christophe Vandeviver et al (2014)[2]. Web map services are a new type of map service that was made possible by the use of GIS, computer, and internet technologies. This article uses the Google Maps Application Programming Interface (API) and XML to create a network release mechanism for regional land use data and applies Web map services to the distribution of land use information. The application programming interface for Google Maps based on its three map modes was introduced by Google. Chenzji et al (2010)[3]. 1.1 OBJECTIVES [1] To rectify the problems faced by travelers while travelling on routes. [2] To collect data of main spots from the site selected of “Nagpur”. [3] To merge and upload the data collected in website or application. [4] To save traveler time and wastage of fuel by providing shortest routes using video graphic technology. 1.2 SCOPE OF THE WORK So our scope of the project is to make a website where user can enter the specified location where he or she wants to travel and then our maps will locate the place or destination and then our map will provide the shortest route of the destination with the visual images or videos of the important landmarks which can be easily viewable by traveler.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 444 The study is to make a website where each and every Visual photos or videos of every landmarks is present not entire the city but across the state. This is our future scope. We also want that traveler can easily reach the destination and also faster. Our project main scope is to reduce the time and wastage of petroleum using videography technology i.e. providing visual images or photos of landmarks that are easily viewable by any person. 2. EXPERIMENTAL PROGRAM After Mumbai, Pune and Nagpur is the third-largest city in Maharashtra, with an estimated population of over 2.5 million. When it comes to traffic, Nagpur is renowned for having an effective rail, road, and air transportation infrastructure. The city has excellent transit links to different regions of India. Additionally, Nagpur has an international airport that links the city to other nations. Fig -1: Map of Nagpur city 2.1 SELECTION OF AREA FOR ROUTE MAPPING First we will have to select a area on which we can map the route. When selecting a route map, one of the first and most important steps is to select an area on which to map the route. This area should be chosen based on a variety of factors, including the availability of data and resources and geography of area. Data resource such as landmarks, roads anything within the routes. ROUTES THAT WE SELECTED  Junction Anjuman College Nagpur [1] Anjuman to Nagpur Airport (Sonegaon, Nagpur). [2] Anjuman to Itwari Market (Itwari Nagpur). [3] Anjuman to Futala University (Near Futala lake). [4] Anjuman to Koradi Temple (Koradi road). [5] Anjuman to Automotive metro station (Automotive square). 2.2 SELECTION OF LAND MARKS FOR ROUTE MAPPING The selection of landmarks for route mapping is an essential step in creating an accurate and useful route mapping video. It involves defining the project's objectives, identifying the target audience, visualizable photos and the desired outcome of the project, identifying the landmarks that are relevant to the project, determining their visibility, and recognizability and planning the logistics of capturing photos and videos of them. This includes scouting the locations to determine the best angles and lighting conditions for capturing high-quality footage, and coordinating with local authorities or property owners to ensure that the capture process goes smoothly and without interruption. The selection of landmarks for route mapping is an essential step in creating an accurate and useful route mapping video. By considering factors such as the visibility and recognizability of landmarks, their location, and their relevance to the audience, the resulting map provides valuable information that is easy to understand and follow. 2.3 CAPTURING PHOTOS AND VIDEOS FOR EASY NAVIGATIONFOR ROUTE MAPPING Capturing photos and videos of landmarks and key points along the route is essential for creating a visual guide for navigation and accurate mapping. GPS- enabled cameras are expensive, so alternative methods such as manually tagging each photo and video with location data are also available.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 445 Fig -2: Selection of Land Marks and Capturing Photos. It is important to focus on capturing key landmarks and points of interest alongthe route, as well as signs and other markers along the route. By using GPS-enabled cameras or manually tagging each photo and video with location data, we can create a visual guide for navigation, accurate mapping, and sharing the route with others. 2.4 MERGING PHOTOS & VIDEO FOR MAPPING Merging photos and videos can be a powerful way to create a comprehensive visual record for mapping in a project. To merge photos and videos, we need to use specialized software that allows us to combine differentmedia types. Once we have merged our photos and videos, we can export the final product as a video file. Video is an excellent tool for visualizing maps and providing a more immersive experience for viewers. It can capture a wide range of actions, from the subtle movements of nature to the fast-paced action of sports, giving viewers a more immersive and realistic experience. Videos are an effective and engaging medium for visualizing information, offering a unique way of conveying information that can captivate and engage audiences. 2.5 ADDING IMAGES, VIDEO & ROUTE DATA TO DATABASE The most important details in this text are the steps needed to add images and videos to a database. This can be achieved by creating a table in the database that includes the necessary fields for storing image and videodata, such as file name, file type, file size, and file location. Additionally, a server-side scripting language such as JavaScript is used to upload the multimedia files to the database. Additionally, route data is stored in the database to create interactive and informative maps for the project. Finally, a video player library such as Video.js or Play can be used to play videos on the website. By adding images, video, and route data to the database, the project can greatly enhance the functionality and appeal of the project, creating a rich and engaging multimedia experience for the user. 3. METHODOLOGY OF EXPERIMENT On our website, there is a page where visitors may choose their starting place and final destination for a journey. The page uses the responsive Bootstrap 4.3.1 framework and has a dark mode design. Two dropdown choices on the form let you choose the beginning and ending points, respectively. After the form is submitted, a script is run to process the data and carry out an additional action not mentioned in the present code. 3.1 DESIGN The website has a slick, contemporary layout with a dark color palette. The form's max-width and min-width are both 500px, and it includes a border with a 1px thickness and the color #555555. The form-group labels are styled with a margin-bottom of 5px and a display of block. The padding for the select elements is 12 px and 20 px, and their width is 100%. The select element's background image is an ion icons-provided down arrow icon. The form's background-size and appearance are set to 20px by 20px, and the submit button is 100% wide with a background color of #00bfff and a font color of #f5f5f5. The text-align has been set to centre, and the padding is 12px 20px. There is a transitional effect applied to the background-color property, and the text decoration is nonexistent. The labels for the starting point and destination select elements are styled with a font awesome icon of a map marker. 3.2 WORKING For demo purpose your website is available locally and not global so as of now people can only access this website if they have it in their computers locally. After the website is tested and approved the website will be making globally so everyone can access and use our project. After the user loads our project in their browser like chrome, brave, internet explorer, etc. If your net speed is slow then the website will show a loading screen till the project is not fully loaded into the browser after the website is fully loaded. You will see the name of the project at the center along with a form and a map just next to the form. The form will consist of two inputs one for the starting point and the other for destination or end point. The starting pointinput will be disabled because we have taken our collegeas the center so the starting point will always be the starting point. When click on destination point input multiple
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 446 option will appear, they are the location that the user can go to. After the user clicks a destination and presses go button. The control will go to the JavaScript function which is assigned with the form. The function will retriever the information like the starting point and the end point and then provides this information to the Google maps. The Google maps will provide destination or end point information. After this the map which was showing our college at the start will now show the route to the destination or end point. The form will also get changed, now it will have two new fields one for the time required to go to that station and the over will show the distance between our college that is the starting point and the destination selected by the user. After sometime a video will be played which will show the route from the starting point and destination orend point. After the video is played the user will be redirected to the Google maps app for route. Now as the user knows the route that was played in the video, he or she will follow that route and the Google map will adjust the route according. Fig -3: Website UI 4. TESTS CONDUCTED 1. Checked that the starting point field is disabled because user cannot change the starting point. 2. Checked whether the end point or destination point field can be clicked by the user. 3. Checked whether the entire destinations are included in the end point or destination field. 4. Checked whether the go button is clickable that is the user can click the button. 5. Checked that after the user selected the end point or destination and clicks the go button then the map is updated according. 6. Checked that two new fields are visible to the user that are time and distance after go button is clicked. 7. Checked that the time and distance field are not changeable and they show time and distance. 8. Checked that the map can be zoomed in and zoomed out by the user. Checked that the video is played. 9. Checked that after the video is played the user is redirected to the Google maps app. 10. Checked that the correct video is played. 5. RESULTS AND DISCUSSION 1. The starting point field is disabled and the user cannot change the starting point. 2. The user can click on the destination field and change it. 3. The entire required destinations are included in the end point or destination field. 4. The go button can be clicked by the user and its calls the JavaScript function properly. 5. The map takes some time to update but it properly updates according to the destination specified by the user. 6. Two new fields gets displayed as the user clicks on the go button. 7. The user cannot change the time and destination field. 8. The map gets zoomed in after user clicks plus button and the map gets zoomed out after user clicks minus button. 9. The video is played automatically after go button isplaced 10. After the video is finished the user is redirected to Google maps app. 11. Correct video is played when user presses go button. 5.1 ADVANTAGES 5.1.1 Wealth of Information 1. Our project provides the layout of roads, the locations of cities and towns, state boundaries,
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 05 | May 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 447 geographical features, restaurant reviews and satellite images with video graphic Technology. 5.1.2 We reach our destination faster 1. Our project gives you directions for trips by car, bike, or public transportation in shortest distance, shortest in period of time. 2. Our project shows the shortest root for your destination so that the user can reach his destination as early as possible. 5.1.3 Explore Places with videos 1. Our project shows the video of the landmark while travelling 2. It makes easy for the user for understanding the routes and to reach his destination. 5.1.4 Easy Navigation 1. Our project makes it easy to navigate and find your way to the destination with turn -by-turn direction. 5.1.5 Visual Representation 1. Maps provide a visual representation of geographic information, making it easy to understand and analyze complex data, including patterns, relationships, and trends. 2. It shows the proper routes and present in easy way to user so it become easy for the user to travel in unknown place city, state. 5.2 LIMITATIONS 5.2.1 Dependence on internet connection 1. It requires an internet connection to function properly, which can be a problem in areas with poor connectivity or when traveling to other countries where roaming charges may apply. 5.2.2. Limited accessibility 1. As our project is in developing phase so it can be access in limited areas. There is limitation in the features, we can use only limited features because it is in developing phase. 6. CONCLUSIONS In conclusion, our project is a highly useful. It allows users to easily search for locations, get directions, view satellite imagery, and even explore new places through features such as Street View. it is available on various devices including desktop computers, Smartphone’s, and tablets. It is a updating of Google maps so that it can show an accurate direction of the location mentioned by the user, and makes easy for the user to travel in unknown city, state through videography technology Overall, our project has revolutionized the way we navigate and explore the world around us. REFERENCES [1] O.S. Asaolu et al (2018) - Shortest Route: A Mobile Application for Route Optimization using Digital Map" Published by the Faculty of Engineering, University of Maiduguri, Maiduguri. [2] Christophe Vandeviver et al (2014) - Applying Google Maps and Google Street View in Criminological Research, Vandevier Crime Science. [3] Chenzji et al (2010) - Land Use Information Release System Based on Google Maps API and XML", Key Laboratory of Geo-informatics of State Bureau of Surveying and Mapping (No.200712). [4] SU De-guo et al (2010) - The Framework of Active Cartography of Statistical Map", 2010 Second International Workshop on Education Technology and Computer Science. [5] Alexander et al (2009) - An Expert System for Tourists Using Google Maps API", 2009 IEEE R. Nicole, “Title of paper with only first word capitalized,” J. Name Stand. Abbrev, in press.