Top PDF Design and Implementation Of Vehicle Tracking System Using GPS

Design and Implementation Of Vehicle Tracking System Using GPS

Design and Implementation Of Vehicle Tracking System Using GPS

“Surveillance system using phone line for security and tracking ”. Based on the above statement, it is targeted that this project will serve as good indication of how important it is to curb car theft in the country. Surveillance is specified to car alarm system and the means of sending the data to the owner of the vehicle using SMS when the alarm is triggered. Due to the inefficient conventional car security system, the possibility of the car can be stolen is high. The main reason is that the alarm is limited to the audible distance. Somehow if there is another way of transmitting the alarm to the car owner ,tracking the vehicle ,knowing the exactly that the car is been stolen at the same time that is not limited to the audible and line of sight, the system can be upgraded. SMS is a good choice of the communication to replace the conventional alarm, because it can be done and does not require much cost. Although most of people know GPS can provide more security for the car but the main reason people does not apply it because the cost. Advance car security system is too expensive. Cost for the gadget is too high. Beside that, people also must pay for the service monthly. Tracking systems were first developed for the shipping industry because they wanted to determine where each vehicle was at any given time. Passive systems were developed in the beginning to fulfill these requirements. For the applications which require real time location information of the vehicle, these systems can’t be employed because they save the location information in the internal storage and location information can only be accessed when vehicle is available. To achieve automatic Vehicle Location system that can transmit the location information in real time. Active systems are developed. Real time vehicular tracking system incorporates a hardware device installed in the vehicle (In- Vehicle Unit) and a remote Tracking server. The information is transmitted to Tracking server using GSM/GPRS modem on GSM network by using SMS or using direct TCP/IP connection with Tracking server through GPRS. Tracking server also has GSM/GPRS modem that receives vehicle location information via GSM network and stores this information in database. This information is available to authorized users of the system via website over the internet.
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Design and implementation of vehicle tracking system using gps-gsm technology

Design and implementation of vehicle tracking system using gps-gsm technology

This project presents a vehicle tracking system using GPS-GSM technology that can be remotely monitored by a GSM phone. It is designed to track the position of a vehicle at any period of time. It comprises of a GPS receiver, a microcontroller and a GSM module. The combination of these technologies produces a tracking system. The GPS continuously takes input data from the satellite and stores the latitude and longitude values in a Ardunio microcontroller's buffer. This basically means that if a person has to track a vehicle, a message has to be sent to a GSM device, by which it gets activated. The location of the vehicle is identified using global positioning system (GPS) and global system for mobile communication (GSM). These systems c onstantly watch a moving vehicle and report the status on demand. When theft is identified, the owner sends an SMS to the microcontroller and the microcontroller sends back a message containing the location of the vehicle in terms of latitude, longitude and time.
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DESIGN AND IMPLEMENTATION OF LOCATION AWARENESS AND SHARING SYSTEM USING GPS AND GPRS

DESIGN AND IMPLEMENTATION OF LOCATION AWARENESS AND SHARING SYSTEM USING GPS AND GPRS

Abstract: Where am I? Where am I going? Where are you? What is the best way to get there? When will I get there? GPS technology can answer all these questions. GPS satellite can show you exact position on the earth any time, in any weather, no matter where you are! GPS technology has made an impact on navigation and positioning needs with the use of satellites and ground stations the ability to track aircrafts, cars, cell phones, boats and even individuals has become a reality. There are no subscription fees or setup charges to use GPS. So we are creating an innovative application introduced along with a mobile application to connect to various users and know their respective locations. It also allows users to set alert for some specific location. The user would then be notified with this alert, whenever he/she comes within that location proximity. It also provides special functionality of tracking the user’s location history with the help of Google maps. Users can also share their location with friends and family. Further, users can take advantages of emergency features which send user’s current location to emergency numbers.
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DESIGN AND IMPLEMENTATION OF A REAL-TIME VEHICLE TRACKING SYSTEM

DESIGN AND IMPLEMENTATION OF A REAL-TIME VEHICLE TRACKING SYSTEM

Security in general is a major concern in our society today and over time, the security of vehicles has become a priority. Various inventions and technologies have been brought about to put minds at rest, but the complete eradication of theft of cars is much of a tedious task. A solution to knowing the location of vehicles either when they are stolen or for any other reasons. To know this location, it involves the installation of a vehicle tracker in a hidden position in the vehicle so that it is not easily seen while providing essential clues as to the location of the vehicle and also a remote tracking server that receives the location information of the car in longitude and latitude and converts it to a physical address and sends it to the authorized user.
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Design and Implementation of Vehicle Tracking System Using GSM/GPS Technology and Smartphone Application
B Harish Babu, Mr Shiv Kumar & Dr D Subba Rao

Design and Implementation of Vehicle Tracking System Using GSM/GPS Technology and Smartphone Application B Harish Babu, Mr Shiv Kumar & Dr D Subba Rao

The presented application is a low cost solution for automobile position and status, very useful in case of car theft situations, for monitoring adolescent drivers by their parents as well as in car tracking system applications. The proposed solution can be used in other types of application, where the information needed is requested rarely and at irregular period of time (when requested). This system is also can be interfaced with Vehicle airbag system. This enable it to monitor the accident situations and it can immediately alerts the police/ambulance service with the location of accident.
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GPS based Advanced Vehicle Tracking and Vehicle Control System

GPS based Advanced Vehicle Tracking and Vehicle Control System

The vehicle tracking system is an electronic device that tracks the vehicle‟s location. Most of the tracking systems use GPS module to locate the vehicle‟s position [1].Many systems also combines communication components such as satellite transmitters to communicate the vehicle‟s location to a remote user [2]. Google maps are used to view the vehicle‟s location. The design of the tracking system is divided into three parts; basic design, intermediate design and an advance Design. The basic design of the vehicle tracking system consists of a GSM module, a GPS module, a MCU (ATMEL), a Relay circuit and a LCD. The user sends SMS and the system responds to the user‟s request by providing the coordinates of a location in accordance to the requirements of mobile phone users through the GPRS network. The intermediate and advance design is an improvement of the basic design. There are five features introduced in the project. SMS codes are specifically assigned to each of these features. For example, if the user sends „555‟ to the tracking system. The GSM modem will receive the SMS and transmit to the MCU unit, where the SMS code will be compared against the codes stored in the library. In this project, the code ‟555‟ is assigned to find the location of a vehicle. So, the MCU will get the location from the GPS module and reply back
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Anti-Theft Vehicle Tracking System Using GPS and Location Prediction

Anti-Theft Vehicle Tracking System Using GPS and Location Prediction

used until now. However, still, cost plays a significant role for implementation. Some of the commonly used approaches are explained below. An anti-theft system could be safe from any intruders [1]. GPS/GSM technology is used in this which reduces positional errors and improves the accuracy of the position. A message is sent to the owner when the ignition is on, and if access of vehicle is illicit the owner sends a message to turn off the vehicle, and the paths are shown with the help of Google Maps. The tracking of the vehicle is done using Arduino board with Geolocation tracker, which gives a solution to avoid the car theft [2]. The system can track the position of the vehicle on Google earth using a GPS locator and sends an SMS with the location, longitude, and latitude at the moment through the GSM modem connected to the Arduino board. A Kalman filter is used to correct the GPS coordinates. The GPS module is used to get the position, and the GPRS module is used to send the HTTP request with the coordinates of the car every few seconds with data containing the position (latitude and longitude) and can show the position of the device in Google Maps. The GPRS and GPS shield is programmed in such a way that when you call to the module and your phone number is right; the GPS obtains longitude and latitude, send you an SMS with the position and send the GPS data through the Internet to the PHP script in your computer. Once the vehicle is found the Arduino board is reset for the next time. A system to trace the vehicle using GSM/GPRS was proposed [3]. Tracking server collects the vehicle position through GSM network and stores these details into the database. The device has a microcontroller and a GSM, through which the coordinates are taken
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Real Time Vehicle Tracking System using GSM and GPS Technology- An Anti-theft Tracking System

Real Time Vehicle Tracking System using GSM and GPS Technology- An Anti-theft Tracking System

Abstract- A vehicle tracking system is an electronic device installed in a vehicle to enable the owner or a third party to track the vehicle's location. This paper proposed to design a vehicle tracking system that works using GPS and GSM technology, which would be the cheapest source of vehicle tracking and it would work as anti-theft system. It is an embedded system which is used for tracking and positioning of any vehicle by using Global Positioning System (GPS) and Global system for mobile communication (GSM). This design will continuously monitor a moving Vehicle and report the status of the Vehicle on demand. For doing so an AT89C51 microcontroller is interfaced serially to a GSM Modem and GPS Receiver. A GSM modem is used to send the position (Latitude and Longitude) of the vehicle from a remote place. The GPS modem will continuously give the data i.e. the latitude and longitude indicating the position of the vehicle. The same data is sent to the mobile at the other end from where the position of the vehicle is demanded. When the request by user is sent to the number at the GSM modem, the system automatically sends a return reply to that mobile indicating the position of the vehicle in terms of latitude and longitude in real time.
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Vehicle tracking and locking system based on gsm and gps

Vehicle tracking and locking system based on gsm and gps

transmission and reception of data among the mobile unit and control stations are working successfully. These results are compatible with GPS technologies. In [3], a vehicle tracking system is an electronic device, installed in a vehicle to enable the owner or a third party to track the vehicle's place. This paper proposed to design a vehicle tracking system that works using GPS and GSM technology. This system built based on embedded system, used for tracking and positioning of any vehicle by using Global Positioning System (GPS) and Global system for mobile communication (GSM). This design will continuously watch a moving Vehicle and report the status of the Vehicle on demand. In [4], Face Detection System used to detect the face of the driver, and compare with the predefined face. The car owner is sleeping during the night time and someone theft the car. Then Face Detection System obtains images by one tiny web camera, which is hidden easily in somewhere in the car. Face Detection System compared the obtained images with the stored images.
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GPS Based Vehicle Tracking and Engine locking System

GPS Based Vehicle Tracking and Engine locking System

Security systems and navigators have always been a important part of human ‟ s life. The developments of advanced electronics have brought revolutionary changes in these fields. In this paper, we will present a vehicle tracking system that use a GPS module and a GSM modem to find the location of a vehicle and offers a range of control features. To complete the design successfully, a GPS unit , a relay, a GSM Modem and a MCU units are used. There are five features made known in the project. The purpose of this project is to remotely track a vehicle‟s location, remotely switch ON and OFF the vehicle‟s ignition system and remotely lock and unlock the doors of the vehicle. An SMS message is sent to the tracking system and the system acknowledges to the users request by performing convenient actions. Short text messages are authorized to each of these features. A webpage is specifically designed to view the vehicle‟s location on Google maps. By using relay based control concept introduced in this paper, number of control features such as turning heater on/off, radio on/off etc. can be execute in the same fashion.[1]
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Vehicle Tracking & Locking System  Using Global Positioning System (GPS)  And Global System Mobile (GSM)

Vehicle Tracking & Locking System Using Global Positioning System (GPS) And Global System Mobile (GSM)

This project is about the design and implementation of a Vehicle Tracking System using Global Positioning System (GPS) and Global System Mobile (GSM). It comprises of integration between a GPS receiver, a microcontroller and a GSM module. This combination of technologies will produce a tracking system. This tracking system integrates two systems which are the coordinates extracted from the GPS receiver and control capability using command through the GSM module. This project can be divided into two main parts which are hardware and software. The hardware includes the GPS, the microcontroller wiring connection and its integration with the GSM module. The software includes developing the microcontroller source code and GSM message command. For the end result, a user can use short messaging system (SMS) from their phone to contact and identify the location if the vehicle is stolen.
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Modeling and Simulation of GPS Positioning and Iterative Vehicle Motion Using Kalman Filter in Vehicle Tracking System

Modeling and Simulation of GPS Positioning and Iterative Vehicle Motion Using Kalman Filter in Vehicle Tracking System

The filter compares the input speed in time update prediction and measure the output of the vehicles’ unit to estimate approximations of measurement update correction. The Filter approximates by filtering the noise of the GPS receiver’s coordinates output. This is to help transmit accurate position of the vehicle on the highway. The prediction of the Kalman filter has to be able to predict the vehicle almost as the true value at which the vehicle is located after an incident signal by the driver. In designing the filter, a lot of iterations were ran to help achieve a better design with less error data transmission.
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A Review Paper on Vehicle Tracking using GPS   and GSM

A Review Paper on Vehicle Tracking using GPS and GSM

This project deals with the design & development of a theft control system for an automobile, which is being used to prevent or control the theft of a vehicle. The simulation of the circuit design and its implementation is done using PROTEUS software. This system is designed to improve vehicle security and accessibility. With the use of wireless technology vehicle owners are able to enter as well as protect their automobiles with more passive involvement. Ideally, this project could be made more convenient and secure with the use of satellite modems instead of cell phones as tracking device as the system may fail when there is no network coverage. This design can be made more enhanced in future to support camera, handset phone / hands free, mobile data LCD display, web based tracking software, also PC based stand alone software. In our project the security system is based on embedded control which provides security against theft. The GSM modem provides information to the user on his request. The owner can access the position of the vehicle at any instant. He sends a message in order to lock the vehicle. The GPS receiver on the kit will locate the latitude and longitude of the vehicle using the satellite service. This is reliable and efficient system for providing security to the vehicles through GSM, GPS and serial communication. The maximum speed according to the standard is 20kbits/sec.
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Android App Based Vehicle Tracking Using GPS And GSM

Android App Based Vehicle Tracking Using GPS And GSM

the GSM sends a message to the owner and as soon it is received it is plotted on the Google Earth. In order to identify the direction of the moving vehicle, the device is installed with a compass sensor. Also, in order to know the state of the vehicle whether it is moving or not, an accelerometer sensor is used. In [18], S. Sahitya, N. Swetha designed a tracking system, which could be used in real life scenarios. The primary components used in designing were GSM and GPS. Google Maps is used to plot and view the location of the coordinates that have been sent on a desktop or mobile device by plotting the coordinates. We have eliminated the job of manually plotting the coordinates on the map. This job is automatically done by the app itself. In [19], the existing system of using Google Maps, automatic transit direction has been replaced with RFID –radio frequency identification for safety of private and public automobiles. It is a wireless identifiaction system which can monitor any object, human or animals. RFID improves the overall performace and cost. It also speaks about the use of GSM in telling us the exact location. In [21], the system that is proposed by the authors is a real-time implementation of the website that is based on the GoogleMap. The location sending procedure involves connecting cellular antenna by the GPRS module. On receiving the location coordinates via GPS module, the position is sent to the database servers. The vehicle location is then displayed on the website after the data is received from the database servers. In [22], an experimental evaluation of GSM and GPS module has been given. It clearly gives us the details of hardware and software components of the system.The hardware design consists of the mobile unit and the control station. The software design tells the way in which GPS and mobile and GSM interacts with each other and different condition available. The difference in using ordinary and differential GPS.
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Vehicle Tracking System Using GPS Tracking Technology

Vehicle Tracking System Using GPS Tracking Technology

Information detection module consists of large-range dual-axis accelerometer MMA621010EG and small-scale three- axis accelerometer sensor MMA7260QT. MMA621010EG is a proven special car accident sensor which is integrated XY-axis accelerometer and built-in serial peripheral interface SPI bus, compatible with 3.3V and 5V voltage .The accelerometer has self-test function and circuit can be calibrated for performance before and after the installation. Advanced converter design to improve the sensor offset and over damped response, is available to increase system reliability and reduce the high frequency , high amplitude attenuation of the parasitic resonance. [6]
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Design and  Implementation of Secured Vehicle System

Design and  Implementation of Secured Vehicle System

Each satellite transmits data that indicates its location and current time. All GPS satellites synchronize operations so that these repeating signals are transmitted at the same instant. These signals moving at the speed of light arrive at the GPS receiver at slightly different times because some satellites are farther away than others. The distance to the GPS satellites can be determined by estimating the amount of time it takes for their signals to reach the receiver. When the receiver estimates the distance to at least four GPS satellites, it can calculate its position in three dimensions.
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Vehicle Tracking System Using GPS And GSM Technology

Vehicle Tracking System Using GPS And GSM Technology

There are five different cell sizes in a GSM network—macro, micro, pico, femto and umbrella cells. The coverage area of each cell varies according to the implementation environment. Macro cells can be regarded as cells where the base station antenna is installed on a mast or a building above average roof top level. Micro cells are cells whose antenna height is under average roof top level; they are typically used in urban areas. Picocells are small cells whose coverage diameter is a few dozen meters; they are mainly used indoors. Femtocells are cells designed for use in residential or small business environments and connect to the service provider’s network via a broadband internet connection. Umbrella cells are used to cover shadowed regions of smaller cells and fill in gaps in coverage between those cells.
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A Smart anti-theft system –A vehicle Tracking & locking system using GSM & GPS Technology

A Smart anti-theft system –A vehicle Tracking & locking system using GSM & GPS Technology

Currently GPS vehicle tracking ensures their safety as travelling. This vehicle tracking system found in clients vehicles as a theft prevention and rescue device. Vehicle owner or Police follow the signal emitted by the tracking system to locate a robbed vehicle in parallel the stolen vehicle engine speed going to decreased and pushed to off. After switch of the engine, motor cannot restart without permission of password. This system installed for the four wheelers, Vehicle tracking usually used in navy operators for navy management functions, routing, send off, on board information and security. The applications include monitoring driving performance of a parent with a teen driver. Vehicle tracking systems accepted in consumer vehicles as a theft prevention and retrieval device. If the theft identified, the
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Design and implementation of V2X system 
		for the autonomous vehicle using FPGA

Design and implementation of V2X system for the autonomous vehicle using FPGA

This paper presents the implementation of vehicle-to-everything (V2X) communication on an autonomous vehicle. The V2X system consists of a set of traffic lights for crossroad, cars and a road side unit (RSU) whereas the autonomous vehicle consists of an input data management system and controller for automated driving. In this project, we focus on connecting the vehicle to the network and utilizing the connectivity for non-critical message transmission. A mesh network is formed using star topology. The security of the mesh network is then enhanced with a mesh network password. Function of the RSU is to connect and act as a central unit that command the traffic light and other nodes of the network. RSU is the only unit with the authority to give commands to infrastructure of the network, for example, the traffic light. Under normal condition, the traffic light will act based on preset setting. With input from pedestrian through android application, or emergency request from autonomous vehicle, the RSU will give command and issue the traffic light to change the state.
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Design and Implementation of Tracking System

Design and Implementation of Tracking System

ABSTRACT: Locating an object of interest in continuous video frames can be termed as Object Tracking. Computer Vision is branch recently focussing on interaction between human and computer system. Continuously tracking desired object in consecutive frames is a difficult task. Tracking helps in sorting out situations such criminal incidents, traffic congestion, reckless driving and speed violation. The object in motion is detected using algorithm based on frame differencing and background subtraction. Morphological operations along with filtering are implemented to eliminate noise. The object co-ordinates are displayed along with direction of motion. It is a real time human tracking System. The same algorithm is used for color (yellow) based tracking. For vehicle tracking Simulink model is implemented in which stored video is processed using frame differencing and optical flow. Thus using this algorithm continuous monitoring and surveillance system is introduced.
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