GPS TRACKING SYSTEM

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GPS Tracking System Using Car Charger

GPS Tracking System Using Car Charger

Abstract GPS is Global Positioning System; a space-based satellite navigation system that provides location and time information in all weather conditions, anywhere on or near the Earth where there is an unobstructed line of sight to four or more GPS satellites. GPS tracking system is a software system which allows you to track the route from any source to destination. But GPS tracking system using car charger is a modify concept of tracking system using GPS. This concept is to get a current location of a moving car which is driven by a common man and its user friendly. GPS tracking system using car charger uses car charger as power source for the system. It also displays latitude and longitude along with map.
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GPS tracking system for airship

GPS tracking system for airship

In Autonomous GPS Controlled Vehicle Project developed by Rudy Manzano and Kelly Matsumo[2] a device that will move to a specified waypoint guided by a GPS receiver was built. The project is broken into several parts including GPS module, Microcontroller module, C Code module and Remote Control Car module. The GPS receiver provides a lot of information to user in several protocols. The most widely used protocol is the NMEA (National Marine Electronics Association) protocol. There are also many standards in this protocol itself. Only two of the standards are used in this project. The two standards are the RMC and RMB. These two sentences will give the instantaneous position, range and true bearing to the destination. The data that is used to determine the range and true bearing to destination are illustrated in Figure 2 in bold.
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Attendance Monitoring System of Students Based on Biometric and GPS Tracking System

Attendance Monitoring System of Students Based on Biometric and GPS Tracking System

and public sectors, the ghost worker syndrome which has become a menace across all tiers of government, employers concerns over the levels of employee absence in their workforce and the difficulty in managing student attendance during lecture periods. Fingerprints are a form of biometric identification which is unique and does not change in one’s entire lifetime. This paper presents the attendance management system using fingerprint technology in a university environment. It consists of two processes namely; enrolment and authentication.

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LandAirSea 3100 GPS Tracking System. Version 6.4

LandAirSea 3100 GPS Tracking System. Version 6.4

The LandAirSea 3100 is a high-precision, low-cost digital travel recording and review system. Using a satellite-based radio positioning network (GPS) cross referenced with digital street maps of the continental USA, the LandAirSea 3100 GPS unit and computer software can be used to accurately evaluate travel activities, with proof of exact date, time, speed, and location down to the street level.

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GPS Tracking System for Public Transport

GPS Tracking System for Public Transport

This system is combination of one-way and two- way communication system in which information through display screen uses one-way communication whether information through SMS uses two-way communication. In display screen phase only centralized system is involved which continuously send information to receiving device on bus stop. Device on bus stop partially acts as a client which only accepts information to traveller. But in the case of information through SMS two entities are involved. Traveller sends a request SMS to centralized system and centralized system sends reply SMS to traveller’s number including information of buses. It performs operation of two- way communication. Whether in the communication between GPS device in bus and centralized system, it performs two-way communication. Centralized system requests GPS device to send current location in the form of latitude and longitude. GPS system sends its current location continuously to system. This is how centralized system gets all updated information of buses. Information is further used for entire information sharing process. Once this system is applied then there’s no any requirement of changes. We can add more entities to it just by configuring centralized system.
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Vehicle Tracking System Using GPS Tracking Technology

Vehicle Tracking System Using GPS Tracking Technology

ABSTRACT: In present days all the students are using a vehicle and mobile phones. These are necessary for any person in case of medical emergencies . MEMS Sensor automatically gives command to the controller and then SMS will send to the authority person via GSM. In the SMS Content is the position of that person in latitude and longitude. Then the authorized person enters into a danger zone depends upon with the GPS Tracking system latitude and longitude.

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GSM & GPS Based School Kids Tracking System

GSM & GPS Based School Kids Tracking System

In this chapter, the method and theory will be discussed regarding to this project which reveals the knowledge that gained via resources such as reference book, newspaper, journal, articles and documentations regarding application and research work. The study is very essential in order to get more understanding in embedded system, GPS tracking system, PIC (Peripheral Intelligent controller), GSM modem and GPS modem. Besides that, the theory understanding is very vital which lead to this project and the project would relate into research and available theory and application.
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GPS & GSM based vehicle tracking andsecurity system

GPS & GSM based vehicle tracking andsecurity system

In the last few years, India has progressed at such a great rate that many companies have strongly established themselves. These companieshas huge amount of workforce with them. Arranging transportation to such huge mass is a cumbersome task involving many complexities. Generally, this transport is arranged through the local transport vendors on a yearly contract basis. The development of satellite communication technology is easy to identify the vehicle locations. Vehicle tracking systems have brought this technology to the day-to-day life of the common person. Today GPS used in cars, ambulances, fleets and police vehicles are common sights on the roads of developed countries. All the existing technology support tracking the vehicle place and status. The GPS/GSM Based System is one of the most important systems, which integrate both GSM and GPS technologies. This system designed for users in land construction and transport business, provides real- time information such as location, speed and expected arrival time of the user is moving vehicles in a concise and easy-to-read format. This system may also useful for communication process among the two points.
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GPS And GSM Based Livestock Tracking System Using Arduino

GPS And GSM Based Livestock Tracking System Using Arduino

There are many traditional ways to protect the livestock from the factors that mentioned above, such as maintain good records of the cattle, make sure all the cattle have their own identification (tags), do a regular physical count, keep an eye out for any suspicious activity and many more. But these methods will consume time and energy of the livestock owners. Instead of doing that, in many western countries advanced tracking system was developed to track the livestock. But in our country, this system is still not practice widely in farming sector. Therefore, the need for constant human observation to tracks or monitors animals, people, vehicles and other objects can be eliminates.
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Vehicle Tracking System Using GPS And Android Based Smartphone

Vehicle Tracking System Using GPS And Android Based Smartphone

Problem statement of this project is once the vehicle is being stolen, owner cannot track their vehicle. They do not know where to find the vehicle and the chances to get their vehicle back is very low. It makes so hard to track the vehicle when there is no evidence. So this system will track and monitor the vehicle’s location. But how can the location of a vehicle be tracked using Android application?

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GPS And IoT Based Soldier Tracking & Health Indication System

GPS And IoT Based Soldier Tracking & Health Indication System

This paper has an idea of tracking the soldier and navigation between soldier-to-soldier such as knowing their speed, distance, and height as well as health status of them during the war, which enables the army personnel to plan the war strategies. This system enables GPS (Global positioning systems) tracking of these soldiers. It is possible by M-Health. The M-health can be defined as mobile computing, medical sensors and communication technologies for health care. This device will improve, not only for the host, but also for placed together/correctly arranged military personnel who will exchange information using wireless networks. One of the basic challenges in military operations lays that the soldiers are not able to Communicate with control room station.
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GPS GSM Based Tracking System for Special user Groups

GPS GSM Based Tracking System for Special user Groups

recorded. Push button and selection button is used to record a message. While still holding selection button, it can record 5 sec message. To hear recorded message press and hold selection button so that message is replayed. The second phase deals with receiving signal from GPS receiver and actuating voice module using microcontroller. Switch ON the power supply and show the GPS to open sky, so satellite signal could be received by the GPS, then the latitude and longitude of the current location is displayed on LCD. If data received is active data yellow LED glows, if it is void then red LED glows. Active means current location value whereas void is previous data. PIC compiler is software in which the machine language code is written & compile. After compilation the machine source code is converted to hex code. Compilers can efficiently implement normal constructs, input/output operations and bit twiddling operations. All normal C data types are supported along with pointers to constant arrays, fixed point decimal and array of bits.
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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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GPS Based Vehicle Tracking and Engine locking System

GPS Based Vehicle Tracking and Engine locking System

So this will be helpful to report any accidents occurring at night. Thus we use this sensor for security of rider. There are two threshold values one to detect intrusion and another to detect accidents. In the security system piezoelectric sensor is used. It is generated by pressure on certain crystals which will develop a potential difference or voltage on the crystal face. If the crystal oscillates, an AC voltage is formed. The sensor is modelled as a charge supply with a shunt capacitor and resistor, or as a voltage source with series capacitor and resistor.[9]
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GPS AND GSM SYSTEM FOR THE DEVELOPMENT OF CAR TRACKING APPLICATION

GPS AND GSM SYSTEM FOR THE DEVELOPMENT OF CAR TRACKING APPLICATION

The system proposed in the present paper meets all these requirements and is done with the modules at hand in a laboratory specialized in electronics and computers. As GSM modems we used two regular phones connected via Bluetooth interface. This choice has the following advantages : low price, the use of mobile for the purpose for which they were designed, easy manual issue of an SMS (requirement imposed by European regulations) in case of accident, possibility of changing the SMS destination number (other number than 112).

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Android Based Women Tracking System  Using GPS and GSM

Android Based Women Tracking System Using GPS and GSM

GPS exploration arrangement is extensively adopted for pursuing nowadays. It is chiefly utilized to assist the caretakers to trail the locale of the victim’s alongside turn-by-turn instructions. It can additionally be utilized in pursuing a person and how long the she stayed at every single location. These purposes permit users to monitor the victim’s locale and intimate the caretaker’s in case of emergency.

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Bus Tracking and Management System Using GPS and RFID Technologies

Bus Tracking and Management System Using GPS and RFID Technologies

The system is based on Radio Frequency Identification (RFID) technology and consists of a passive RFID tag. The passive micro information about the Tag ID and sends this information to the base station. The base station receives, decodes transponder tag collects power from the 125 KHz magnetic field generated by the base station, gathers and checks the information available in its Database and used to send those information. The system performed as desired with a 10cm diameter antenna attached to the transponder. RFID Reader Module, are also called as interrogators. They convert radio waves returned from the RFID tag into a form that can be passed on to Controllers, which can make use of it. RFID tags and readers have to be tuned to the same frequency in order to communicate. RFID systems use many different frequencies, but the most common and widely used Reader frequency is 125 KHz.
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GPS and GSM based vehicle tracking system using arduino

GPS and GSM based vehicle tracking system using arduino

Under this system, an exact location on the earth's surface can be acted as a set of numbers. The location may also be expressed only number format, per: 40.748440, -73.984559. Thus, the first number indicating latitude, and the second number representing longitude. Being numeric-only, the second means of notation is the most commonly used for inputting positions into Global Positioning System devices.

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Vehicular Monitoring and Tracking system using GSM and GPS Technologies

Vehicular Monitoring and Tracking system using GSM and GPS Technologies

The Global Positioning System (GPS) is the only fully functional Global Navigation System (GNSS). The GPS uses a constellation of between 24 and 32 Medium Earth Orbit satellites that transmit precise microwave signals that enable GPS receivers to determine their location, speed, direction, and time. A GPS receiver receives the signals from at least three satellites to calculate distance and uses a triangulation technique to compute its two dimension (latitude and longitude) position or at least four satellites to compute its three dimension (latitude, longitude and altitude) position. Therefore GPS is a key technology for giving device its position. GPS was developed by the United States Department of Defense. Its official name is NAVSTAR-GPS. It is originally used in military services but later allowed the system available free for civilian use as a common good. Since then, GPS has become a widely used aid to navigation worldwide, and a useful tool for map-making, land surveying, commerce, and scientific uses In This device we use a GPS receiver of HOLUX GR-67 series.
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CO-GPS: Energy Economical GPS tracking with IoT

CO-GPS: Energy Economical GPS tracking with IoT

GPS is a satellite based positioning and navigation system which is used to locate GPS receiver: (i) Almost Sixteen Monitor stations are distributed around the world that collect transmissions from the GPS satellites continuously and send them to the Master control station. (ii) The Master control station, which are located at Colorado Springs, USA, computes satellite orbits (called ephemerides) and clock errors to generate the Navigation message. (iii) Four Ground antennas, located at North America, Atlantic Ocean, Indian Ocean, and Pacific Ocean, upload the Navigation message to each satellite three times a day (or once a day) (iv)Thirty satellites orbit Earth twice a day. These satellites continuously and simultaneously broadcast the Navigation message. (v) A mobile device (GPS receiver) determines its position information from Navigation messages received from the satellites. Each Navigation message consist of five sub frames which are of 300 bits long and are transmitted over a very slow link such as 50bps, one complete transmission ma take 30 seconds. The first frame (sub frame 1 in Fig. 2) consist of timing information, the next two frames (sub frame 2 & 3) consist of ephemeris data which refers to the satellite’s precise orbit and is valid for about 30minutes. The last two frames (sub frame 4 & 5) consist of almanac data which refers to satellite’s coarse orbit and status information of all satellites, it may be valid up to several months. The whole almanac data may take about 25 frames or at least 12.2 minutes as there are number of satellites around the world. GPS receiver may see only few satellite but still it needs 12.2 minutes because it has to tune to each frequency/codes. When a mobility device is started or if it does not have location information already stored, TTFF (timeto-first- fix) would be at least 12.2 minutes because it has to identify its current position (Cold start).But normally, mobile devices have some localization data received from GPS in recent past which make it possible to
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