Showing posts with label gps tracking device. Show all posts
Showing posts with label gps tracking device. Show all posts

Thursday, October 24, 2013

Do you really know where your Mobile Workforce or Children are?

GPS tracking, mobile GPS and cell phone track applications are gaining focus from potential buyers, mobile phone businesses and software makers. The most popular cell phones integrate GPS location functionality to track telephone position.


 Mobile Tracker


GPS receivers, irrespective of whether inside of a smart phone, or perhaps a specific Portable gps tracking device, compute specific location through process of precisely timing the signals sent by GPS satellites. This critical information comes with the moment the message was sent, precise orbital details (technically referred to as the ephemeris), as well as the basic system status and projected orbits of all GPS satellites (technically referenced as the almanac). GPS receivers sometimes take longer to become ready to use after being turned on because it must acquire some basic information in addition to finding GPS satellite signals. This slow start is sometimes caused if the GPS mobile phone has been unused for days or weeks, or has been moved a far distance while unused for. The GPS must update its almanac and ephemeris data and store it in memory. The GPS almanac is a set of data that every GPS satellite transmits. When a GPS receiver has current almanac data in memory, it can acquire signals and find i


nitial position more quickly.


GPS Hot Start means whenever the GPS enabled device keeps its last calculated position, the satellites that had been in view before, as well as the almanac information in memory, and tries to obtain the same satellites and compute a fresh location based upon the previous information. This is almost always the quickest GPS lock but Hot Start only works if the phone is generally in the same location as when the GPS was last switched off. GPS Warm Start is whenever the GPS enabled smartphone remembers its last known position, and almanac used, but not which satellites were in range. It resets and attempts to connect to satellite signals and calculates the latest location. The GPS receiver has a general idea of which satellites tolook for because it saved its last known location and the almanac data helps determine which satellites are visible in the sky. The Warm Start is going to take longer compared to Hot Start although not as long as a Cold Start. With GPS Cold Start, the device deletes all the previous info


rmation, and tries to find satellites and accomplish a GPS lock. This normally takes longer than other methods because there is no known reference data. The GPS enabled mobile phone receiver must attempt to lock onto a satellite signal from any available satellites.


So that you can have better GPS lock times cellular phone manufacturers and wireless operators developed Assisted GPS technology. It downloads the ephemeris and helps triangulate the device basic location. GPS Receivers can get a faster lock at the expense of a few kilobytes of data transmission. Assisted GPS, also referred to as A-GPS or AGPS, improves the performance of standard GPS in handsets connected to the cell network. In America Sprint, Nextel, Verizon Wireless, and Alltel all use AGPS. This is a method of utilizing the cell network to speed up finding of GPS satellites.


A-GPS assists location tracking performance of cell phones (and also other related devices) in a couple of ways:


One method is by assisting to acquire a faster “time to first fix” (TTFF). A-GPS acquires and stores data in relation to satellite position using the cellular network and so the location information does not require to be downloaded from the the satellite.


The next technique is by assisting locate cell phones when GPS signals are weak or not available. Due to the fact GPS satellite signals may be impeded by tall buildings, and do not go through building interiors well Assisted GPS makes use of proximity to cellular towers to calculate location when GPS signals are not accessible.


If satellite signals are not readily available, or accuracy and precision is less important than life of the battery, using Cell-ID is a good substitute to GPS mobile phone location. The location of the cell phone might be approximated by the cellular network cell id, that pinpoints the cell tower the smartphone is connected to. By having the location of this tower, you may know roughly where the mobile phone is. Still, a tower can cover a large area, from a couple of hundred meters, in high populationdensity zones, to a few kilometers in lower density areas. This is the reason location CellID accuracy is less than than GPS accuracy. Having said that tracking via CellID still offers quite a helpful alternative.


Another method of calculating handset position is Triangulation or Mobile Location Services (MLS). Cell Tower Triangulation utilizes signal analysis data to determine the time it takes signals to travel from your telephone to a minimum of 3 cell towers to determine location.


Do you really know where your Mobile Workforce or Children are?

Friday, October 18, 2013

Discussion about Cell Phone Track Solutions

Cell tracking, mobile GPS and cell phone track software applications are undoubtedly securing notice from potential buyers, mobile phone businesses and software developers. The most up-to-date mobiles contain GPS location capabilities to track telephone position.


 Phone Tracker


GPS receivers, no matter whether inside a smartphone, or a specific Gps tracking device, compute location through process of precisely timing the signals sent by GPS satellites. This data contains the time the message was sent, precise orbital data (technically referenced as the ephemeris), and the overall system state and estimated orbits of all GPS satellites (technically called the almanac). GPS receivers often take a long time to become ready to use after it’s turned on because it must acquire some basic information in addition to finding GPS satellite signals. This slow start can be caused if the GPS cell phone has been turned off for days or weeks, or has been transported a far distance while turned off for. The GPS must update its almanac and ephemeris data and store it in memory. The GPS almanac is a set of data that every GPS satellite transmits. When a GPS receiver has current almanac data in memory, it can acquire signals and calculate initial location more quickly.


GPS Hot Start is whenever the GPS enabled handset recalls its last calculated position, the satellites that had been in view before, as well as the almanac information in memory, and makes an attempt to connect to the same satellites and compute a fresh position based upon the previous information. This is almost always the quickest GPS lock but Hot Start only works if the phone is generally in the same location as when the GPS was last switched off. GPS Warm Start means when the GPS enabled cell phone keeps its last calculated position, and almanac used, but not which satellites were in view. It resets and tries to find satellite signals and computes a whole new location. The GPS receiver narrows the choice of which satellites toseek since it stored its last known location and the almanac data helps identify which satellites are visible in the sky. The Warm Start will need more time compared to Hot Start although not as long as a Cold Start. With GPS Cold Start, the device dumps all the previous data, and at


tempts to find satellites and obtain a GPS lock. This normally takes longer than other methods because there is no known reference data. The GPS enabled handset receiver has to try to lock onto a satellite signal from any accessible satellites.


In order to get improved GPS lock times mobile phone manufacturers and system providers developed Assisted GPS technology. This downloads the ephemeris and helps triangulate the device general location. GPS Receivers can get a quicker lock in return for a few kilobytes of data transmission. Assisted GPS, also referred to as A-GPS or AGPS, boosts the performance of normal GPS in smartphones connected to the cell network. In America Sprint, Nextel, Verizon Wireless, and Alltel all use A-GPS. Which is a means of using the cell network to speed up acquisition of GPS satellites.


A-GPS assists location tracking performance of mobile phones (along with other related devices) in two ways:


One method is by assisting to obtain a faster “time to first fix” (TTFF). AGPS receives and stores data in relation to satellite location using the cellular network and so the location data does not need to be downloaded via the satellite.


The other technique is by helping position devices when GPS signals are weak or blocked. Because GPS satellite signals may be interfered with by tall structures, and do not pass through building interiors well A-GPS makes use of distance to cellular towers to estimate position when GPS signals are not obtainable.


If satellite signals are not obtainable, or accuracy is less important than life of the battery, utilizing Cell-ID is a viable alternative to GPS mobile phone location. The position of the handset may be approximated by the cellular network cell id, that identifies the cell tower the cellphone is using. By knowing the location of this tower, then you can know roughly the spot where the mobile phone is. Still, a tower can cover a huge area, from a couple of hundred meters, in high populationdensity regions, to several kilometers in lower density zones. For this reason location CellID precision is less than than GPS accuracy. Nonetheless location using CellID still can provide a truly viable alternative.


Another way of determining device position is Triangulation or Mobile Location Services (MLS). Cell Tower Triangulation utilizes signal analysis data to calculate the time it takes signals traveling from the smartphone to no less than 3 cell towers to judge position.


Discussion about Cell Phone Track Solutions