The Blue Marble Desktop is now the Geographic Calculator. The modules such as Geographic Transformer and Spatial Connect have been incorporated into Calculator and all functionality from them are available in the Calculator. There is also no more versioning for the Geographic Calculator, it will now be released annually with service packs between releases.
If you have a Geographic Transformer license, you now will be able to access and use all functionality in the Calculator jobs and vice versa with a current license. Contact sales to upgrade and get more information. Powerful geospatial data conversion and translation made easy! Believe it or not, it's true.
For decades, Blue Marble has provided trusted software solutions that have simplified a not-so-simple part of GIS work, accurate data conversion. Ask around, our geodetic parameter data source is one of the most comprehensive and recognized in the GIS world. When your transformations have to be correct, consistent and certifiable, it has to be Blue Marble. With this release the Geographic Calculator will be replacing the Blue Marble Desktop in name and functionality. All previous features available in the separate modules of the Blue Marble Desktop, ( Geographic Calculator, Geographic Transformer and Spatial Connect) are now available with a license of Geographic Calculator 2013. Geographic Calculator 2013 also introduces a new streamlined license manager tool with automatic online licensing, the BMG Reprojector for the FME Workbench (additional license required), a new quick launch for Google Earth and support for the Finland Geiod FIN2000N00. Features: Interactive conversion Point database conversion Seismic survey conversion Vector data conversion Raster format support Georeferencing - reference point selection Raster reprojection.
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The Geographic Calculator, from Blue Marble Geographics, is the kind of utility program that allows the average surveyor to swim around in the geodetic pool without drowning. They might have called it the geodetic surveying calculator.
I have been using the Geographic Calculator for many years and found it not only extremely easy to use, but very reliable. Every time I review a program that purports to do geodetic transformations, I check it out with The Geographic Calculator. The Geographic Calculator used to be handy for those few who were required to step into things like the State Plane Coordinates. Now, with the increasing use of municipal GIS and the increasing use of dual frequency GPS RTK systems, the Geographic Calculator needs to be in the hands of the great majority of surveyors. Important tools have been added to the calculator with each new addition.
The most recent of these is a new Graphical User Interface (GUI) for Windows XP users. There is a new polynomial best-fit method for transforming local or non-standard coordinates to any standard coordinate system (such as NAD83) stored in the geocalc.dat database. This includes a 'display registration errors' graph that displays your best-fit accuracy. In addition, the Geographic Calculator can handle vertical transformations from any ellipsoidal height to orthometric (sea level) heights using GEOID99, GEOID96 and AusGeoid98, which are available as free downloads from the website. They have added Eckert IV and Eckert VI world projections and the Michigan GeoRef coordinate system.
There are some very technical tools dealing with the International Terrestrial Reference Frame (ITRF). Because the earth wobbles, True North is never exactly the same.
In order to have an orderly coordinate system, True North has to be constant so it is fixed at a particular date. Measurements must be corrected back to that date. If you have been using a Continuously Operating Reference Station (CORS), then you may have had to deal with this problem. Figure 1 shows the basic window. There is a Menu Bar and a Power Bar under which are three tabs: Interactive Conversions (shown), Point Database Conversions and Map Conversion. You can define any two systems and convert forward or backward. You can set the units, the input formats for latitude and longitude and the vertical reference.
You get the NGS data in latitudes, longitudes, and ellipsoidal heights in meters. You need to have the data in State Plane Coordinates and orthometric (sea level) heights and in US Feet. You do not even have to type in anything but the coordinates.
Geography Calculator
The rest of the stuff you just select from a drop down list. You can always convert in either direction. If both points are in the same system, you can do an inverse if you are in a State Plane Coordinate system or if you are in latitudes and longitudes. You get geodetic distance, geodetic azimuths forward and back, grid distance and grid azimuth forward and back. You can also do what geodesists call a Forward calculation (what we surveyors call a traverse). Put in the coordinates of the Station and click on Forward and it will ask you for a distance and an azimuth. You check whether it is Grid or Geodetic.
You can actually run a traverse because you can do a Forward in either direction. Figure 2 shows the Tab: Point Database Conversion. This allows batch conversions of entire databases and is customizable to just about any format. Better than that, you convert a whole directory of files with a single key stroke. You can save each format you use in a file so that you only have to define each format once.
Name the file and recall it when you want to convert another database in that format. There is a very interesting function in the Geographic Calculator that allows you to make custom conversions. The function is correctly called Rubber Sheeting. Most every surveyor I know has a lot of work in Local Coordinates (such as 10000, 10000).
In order to take advantage of GIS technology, or to integrate your work into a single standard projection, or simply just to satisfy the local authority who is trying to build and maintain a GIS, this function is marvelous. You need to have a minimum of three points with local coordinates and standard coordinates such as State Plane coordinates in an Excel file (you can use as many as you have). The Geographic Calculator creates a Best Fit set of conversion parameters which you can then use to convert all the local coordinates on that job into State Plane Coordinates. Figure 3 shows the table read into the Geographic Calculator. There is a B order station (AIR), some first order stations, and a manhole (MH) (navigation coordinates from a handheld GPS).
I created the local coordinates for the control station from the coordinates on the MH. Figure 4 shows the geodetic coordinates and the errors in Northing and Easting as well as latitudes and longitudes. You can see how the navigation coordinates warp the conversion. When I left the M H out of the conversion factor, the fit was slightly improved, but remember that the local coordinates were based off the MH navigation coordinates. Figure 5 shows the file conversion.
The first BM is the navigation position and the conversion shifted it about 10 feet north and 10 feet east, closer to the true State Plane position. Now that you have created the conversion parameters for this job, you can use it in all three tabs, Interactive Conversions, Point Database Conversions and Map conversions. Each conversion file you create is added to the list of standard conversions so when you come back to it, you just pick it off of the list. Figure 6 shows the Tab: Map File Conversion. This allows you to convert an AutoCAD drawing in one coordinate system to an AutoCAD drawing in another coordinate system. I love to use my navigation handheld GPS receiver for preliminary work, but the coordinates come out in latitudes and longitudes in decimal degrees. I can output a DXF file but it is a bother to try to import other survey data or images.
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It is very simple, however, to convert the AutoCAD DXF or DWG to State Plane Coordinates. You can also convert to and from in Blue Marble Layer files (.bml), and ESRI Shapefiles (.shp). This gives you tremendous power. For instance, my City and County GIS is by ESRI and many shape files are available. The ability to convert AutoCAD drawings from your local coordinate system to WG S84 latitudes and longitudes and then to any standard coordinate system using your custom transformation parameters makes it possible to bring all of your previous work into a single standard projection.
There is now available a simple GIS for surveyors that allows you to create a real GIS of all of your work. That makes all of your work instantly available for research, for re-issue to client or agency, or just to review how your business is progressing. The File Menu drop down list shows: Open Coordinate Systems Settings, Save Coordinate Systems Settings, Record Interactive Conversions, Print, Open Point Database Settings, Save Point Database Settings, Exit and License manager. You download the Geographic Calculator for free and if you like it, you can call and get a key and use the License Manager to create a fully licensed copy from the downloaded version.
The Options Menu drop down list shows: Unit Display settings (which brings up a sub-menu allowing you to configure the units and display type of all of the various types of information), Linear Unit Definitions, Angular Unit Definitions, Ellipsoid Definitions, Datum Definitions, Coordinate System Definitions, Text File Schemes and Preferences (General, File Folders, Point Database for custom conversions and selecting the various editions of AutoCAD for conversion). The Windows Menu drop down list shows: File Viewer and Best Fit Plot. The File Viewer is a generic viewer that allows you to view AutoCAD drawings and E S RI Shapefiles. The Best fit plot plots the errors in the custom conversion file. You can select to have it plot automatically each time you make a custom conversion.
The Help Menu drop down list shows: Contents (F1), License Manager Help, Obtaining Technical Support, Blue Marble Geographics on the Web, Download the Latest Version, Online support and About the Geographic Calculator. The Power Bar Icons (from left to right) show: Print, Define Coordinate System, Define Datum, Define Linear Units, Define Ellipsoids, Define Angular Units, Define Text Schemes, Display Vector File Viewer, Display Error Plot and Show Help Contents. The only limitation I could discover is that AutoCAD map conversion does not yet work with AutoCAD 2004.
A nice addition would be to convert between the different map formats instead of conversions limited to within a single format (i.e., AutoCAD to Shapefiles). Needless to say, this is one of my favorite workhorse programs.
It won't cost a cent to download it and see for yourself. Joe Bell is licensed in California and New Mexico. He has been reviewing software for surveyors since 1982.
A 2.954Mb PDF of this article as it appeared in the magazine—complete with images—is available by clicking.
Geographic Calculator 2017 Free Download Latest Version for Windows. It is full offline installer standalone setup of Geographic Calculator 2017 for 32/64. Geographic Calculator 2017 Overview Geographic Calculator 2017 is a handy application which will provide different means for converting, translating and working with geospatial data. With Geographic Calculator 2017 you can easily perform Point Database, Seismic Survey as well as Vector Data conversions. You can also download. Geographic Calculator 2017 has come up with a very catchy and intuitive user interface which will let you insert the data you have and lets you extract the one you need. You can also organize as well as share your projects as it will offer you a project manager.
The data processing type is simple and all you have to do is to select the input data, operation type and then simply click on the Calculate button. Geographic Calculator 2017 lets you use major GIS formats like Mapinfo Table, Enhanced Compressed Wavelet (ECW), ESRI World, BMP, JPG2000 and GeoTIFF etc. You can edit the geodetic data sources and import the information from new ones. This application will also let you edit as well as convert SEG, UKOOA and SPS files. You can transform several different images and also can create custom processing templates which can use for repeating projects. It has also got viewer which will let you check the data prior to conversion. All in all Geographic Calculator 2017 is a handy application which work with geographic, vector and seismic information.
Geographic Calculator Software
You can also download. Features of Geographic Calculator 2017 Below are some noticeable features which you’ll experience after Geographic Calculator 2017 free download. Handy application which provides different means for converting, translating and working with geospatial data. Can easily perform Point Database, Seisimic Survey and Vector Data Conversions. Got a catchy and intuitive user interface. Can organize and share your projects with a project manager. Lets you use major GIS formats like Mapinfo, Table, Enhanced Compressed Wavelet (ECW), ESRI, World, BMP, JPG2000 and GeoTIFF etc.
Lets you edit and convert SEG, UKOOA and SPS files. Can transform several different images and can create custom processing templates. Got viewer which will let you check the data prior to conversion.
What is the fourth largest island in the world and the world's second largest producer of vanilla? Suppose that the sun is represented by a 1/2' marble. At this scale, how far would it be from the sun to the three stars of the Alpha Centauri star system and their planets? View GeoMidpoint tools Let's Meet in the Middle finds the ideal restaurant or other point of interest halfway between two or more addresses. Meet your friend halfway for lunch.
Random Point Generator The generates one or more points at random locations on the surface of the earth. You can throw one or more virtual darts at a Google map and see where they land. Google Maps Javascript is required to use the calculator and view answers to Geo Challenge questions.
Find your halfway point Here are a few of the many possible uses for the calculator:. Find your personal center of gravity. Select all cities or addresses where you have lived, then view those places on a map along with a marker pointing at your exact average location. Find the midpoint of a flight between two cities.
For example, the point that lies halfway between Chicago and Los Angeles is located 22 miles (35 km) southwest of Limon, Colorado. Trip planning-find a central hub for places you are going to visit. Find a center location for a convention or family reunion that will be fair and equitable for those who are traveling. Find a central place for a new business or facility that will serve surrounding population centers. Midpoint locations can be visited using GPS devices. Please read these before you start your trip.
Using the midpoint calculator Add each of your addresses or other locations to the map. See for detailed instructions. Use the 'Address' option to enter your addresses or other locations one by one. 'Multiple input' lets you copy and paste a list of addresses from a spreadsheet or other program. Address formats 350 Fifth Ave, New York, NY 10 Downing St, London, UK Atlanta, GA Sydney, Australia Locations can also be specified by latitude and longitude using one of the.
Weight by time and other weight You can use 'Weight by time' to weight your places for the personal center of gravity calculation. Enter the amount of time you have spent in each place. If you leave the years, months, and days boxes blank then all of your places will be weighted equally for the calculation. As an alternative, you can use 'Other weight' to enter population or other weighting factors for each location. Calculation methods Three different are available for calculating the midpoint, each of which is useful in different situations. There are one method over another. How the calculator works The calculator calculates the geographic midpoint based on the assumption of a spherical earth.
The geographic midpoint for any two points on the earth's surface is located halfway along the great circle route which is the shortest route that runs between both points, and would be like stretching a string between the two points on a world globe then finding the middle of the string. The geographic midpoint for three or more points on the earth's surface is the center of gravity (center of mass or average location) for all of the points. To help visualize the concept of center of gravity, imagine that a small weight is positioned at the location of various cities on a world globe.
Now imagine that the globe is allowed to rotate freely until the most heavily weighted part of the globe is pulled by gravity until it is facing downward. The lowest (and heaviest) part of the globe is the center of gravity and the geographic midpoint for all of the weighted cities. See for a detailed description. Map projections A lot of distortion occurs when the earth is projected onto a flat surface, for instance, a map using the Mercator Projection. Because of this distortion, if you plot two points on a flat map along with the corresponding calculated midpoint, you will find that the midpoint is often far out of alignment with the two points. This can be easily illustrated by an example.
If you place a ruler on a flat wall map between Phoenix, Arizona and Kabul, Afghanistan, the midpoint for the two cities will appear to be in the Atlantic Ocean a few hundred miles off the tip of Portugal. However, the Geographic Midpoint Calculator gives the true midpoint coordinates of latitude 88.9300 North longitude 171.1427 West, which is 72 miles (116 km) from the North Pole. You can verify this by stretching a string between the two cities on a world globe.
In general, a true midpoint in the Northern Hemisphere will be farther north than you might expect it to be when viewed on a flat map, and conversely, a true midpoint in the Southern Hemisphere will be farther south than you might expect it to be. For cities that are close together this apparent difference between a spherical earth and a flat map is only slight, but the difference can be great for cities with a lot of longitude separation, such as cities on different continents. Also, there tends to be more distortion in the polar regions than near the equator. So if your calculated midpoint is farther north than you expect it to be, this is the explanation. Usually, if you take a look at a world globe it will begin to make sense. Miscellaneous GeoMidpoint is asking you to on a web page or blog.
Calculators: Geography Horizontaal what time is it?