Interactive projection mapping software


  • PROJECTION MAPPING
  • The ultimate video mapping tool
  • Powerful mediaserver and realtime graphics software for the professional AV market
  • Make an Affordable Interactive Videomapped Installation
  • Easily create visually stunning projection shows on your device.
  • 5+ best video mapping software
  • PROJECTION MAPPING

    Source tarballs Launching the application On macOS, open the application by either double-clicking on its icon in the Finder, or by clicking on its icon in the Dock. On Windows, click on the windows icon and type in mapmap. Click on the MapMap icon to then launch the program. Layout MapMap consists of several different windows, icons, and menu options.

    Library The Library contains the collection of sources that can be used in MapMap. Since all the layers that use that source will also be deleted, a dialog will ask you for confirmation. Layers To the right of the library tab is the layers tab. Layers are media sources that are displayed in the output editor. Layers are created when a source from the library is selected and turned into a 1.

    Layers can be rearranged by dragging them on top of or below each other. Doing this also controls the layer arrangement in the output editor. Layers add vertices to the source which allows the source to be edited in a variety of ways. Next to each layer name, there are five icons: Hide Icon: This hides or shows the layer.

    Isolate Icon: This isolates the layer selected. Delete Icon: This deletes the selected layer. Inspector Below the Library and Layers tab is the Inspector menu. This menu changes according to what is selected in the Library or Layers tab.

    Through the Inspector menu, users can modify the selected source in a variety of ways. Video sources can be changed to any source in the library via the source drop down menu. This option is very powerful as it allows the user to add additional subdivisions to the original square shape.

    X and y vertices for each point of the input shape can be modified. X and y vertices for each point of the output shape can be modified. Source location can be modified by clicking on the … button so that a source can be swapped for another or relocated on the users hard drive. When Meshes have a dimension of two by two 2x2 vertices, they are called Quads.

    When they have more than 2x2 vertices, they are called A Mesh. A Mesh is a grid of vertices that allow more flexible mapping for complex output shapes. You can also click on a vertices and use the arrow keys to make micro adjustments to its position. You can also use the number boxes in the inspector window to move the vertices manually.

    To turn a Quad into a Mesh, change its dimension changing its width, height, number boxes. Shapes can also be transformed via a set of transform controls. Click on a vertices and then use the following keyboard shortcuts to activate the controls. Then use the Toggle Full Screen icon at the top of the MapMap Menu to send the output editor content to your projector or external monitor.

    Display Controls Display Controls give the user the ability to select and move vertices both in the input and output editor menus. Click on it again to re-enable Display Controls. MapMap supports the OpenSoundControl communication protocol. Currently supported actions allow full control of existing sources and layers, such as changing a source file, adjusting opacity and visibility, changing volume, etc.

    The default OSC port can be changed from the Preferences menu. MapMap provides a flexible way to control groups of sources and layers using regular expressions.

    The ultimate video mapping tool

    With projection mapping, everyday objects from mannequins to skyscrapers can be transformed into an illusionary wonder. Any space can be turned into an awe-inspiring fantasyworld. Contact us and let us bring your vision to life. No project is too big. To put it simply, projection mapping is the art of mapping video content onto any shape or surface. While it sounds simple, the process is meticulous and software heavy.

    It gives the audience the entranced feeling that the images are real and right in front of them. Traditional video mapping involves projecting content onto a flat surface, where 3D projection mapping can be used to transform any 3D shape into a lifelike display. With traditional video mapping, we would project onto the sides separately, using a different projector for each surface of the cube.

    However, with 3D projection mapping, we would use or create custom content specifically tailored to fit the cube. This would allow us to put unique, optical illusions within the cube, such as adding a spinning ball of fire inside of it, or making the cube look as if it is melting or crumbling away.

    With 3D projection mapping, the visual possibilities are limitless. From realistic animations and video to abstract projections to entire story driven scenes, projection mapping is a canvas for your imagination. The art of projection mapping accentuates real life through video, taking a benign object and making it look however you want.

    Projection mapping can be used for essentially any purpose. While the technique has been used since the late s, projection mapping as we know it did not come about until the early s. It was first used mainly as an enhancement to live-music stages but today can be found in virtually any industry.

    From branding, product showcases, live-music events, trade shows and virtually anything that could benefit from a memorable guest experience, projection mapping takes experiential marketing to another level. Here are a couple of inspirational applications for which projection mapping can be an eye catching feature: A fashion show or window display utilizing mannequins to showcase various outfits.

    With 3D projection mapping, we could bring these mannequins to life by changing the colors of the clothing, adding facial expressions or changing outfits entirely. A building projection on a storefront, with mapped visuals enhancing products in the window display. A car show, with vehicles changing colors or wraps with the optical illusion of a holographic effect projected on the vehicle.

    With 3D projection mapping, we could even add passengers to the vehicle, simulating a family enjoying a country ride while beautiful passing landscapes can be seen through the windows.

    For example, we could program the statue to react to guests as they wave, triggering a wink and a smile and even activating a vocal response to the guest. A cinematic projection mapped time-lapse of a building under construction. Using 3D projection mapping, we could simulate the building being built in high-speed right before your eyes.

    Using a combination of a playback device, projector and a projector surface, we can take a base object, map the projection onto it, and transform it into a multidimensional video screen. The slightest error can create an uncomfortable viewer experience, so it requires pixel perfect corrections to properly match objects' surfaces or boundaries.

    Have you ever wanted to see your artwork come alive? Before the project, we installed the mural and projectors here at our workshop and set up our specialized video mapping software to calibrate our grid: First, we adjust aspect ratios so that the dimensions of the projected content matched those of the physical mural. Then, we edge-blended the map, softening the inner edges of the two projections. This process creates a gradual fade between images — flawlessly stitching them together and making any overlap unnoticeable.

    After completing a series of calibrations, we entered the mapping software and aligned our projected content with the physical mural itself. This involved selecting dozens of points across every inch on-screen to ensure accuracy in pixel by pixel adjustments for each individual point--a painstaking process that took hours but ultimately paid off when it came time show off what you just created!

    Once everything was properly gridded and we had an impeccably calibrated image, we were ready to test our content and see the mural in action. Check out our recap video below of the entire project: Exit window and return to page close close Large Scale video Projection Mapping Stage.

    Powerful mediaserver and realtime graphics software for the professional AV market

    For example, we could program the statue to react to guests as they wave, triggering a wink and a smile and even activating a vocal response to the guest. A cinematic projection mapped time-lapse of a building under construction. Using 3D projection mapping, we could simulate the building being built in high-speed right before your eyes.

    Make an Affordable Interactive Videomapped Installation

    Using a combination of a playback device, projector and a projector surface, we can take a base object, map the projection onto it, and transform it into a multidimensional video screen. The slightest error can create an uncomfortable viewer experience, so it requires pixel perfect corrections to properly match objects' surfaces or boundaries. Have you ever wanted to see your artwork come alive? Before the project, we installed the mural and projectors here at our workshop and set up our specialized video mapping software to calibrate our grid: First, we adjust aspect ratios so that the dimensions of the projected content matched those of the physical mural.

    Then, we edge-blended the map, softening the inner edges of the two projections. This process creates a gradual fade between images — flawlessly stitching them together and making any overlap unnoticeable. After completing a series of calibrations, we entered the mapping software and aligned our projected content with the physical mural itself. This involved selecting dozens of points across every inch on-screen to ensure accuracy in pixel by pixel adjustments for each individual point--a painstaking process that took hours but ultimately paid off when it came time show off what you just created!

    Once everything was properly gridded and we had an impeccably calibrated image, we were ready to test our content and see the mural in action.

    While most projection mapping is controlled by a computer, or an artist, Lumo Play-based 3D video-mapping can respond to the audience! Even small movements will throw your image out of whack. Source The basic requirements for an interactive projection display system.

    Make sure all these things are installed in their final location before you begin. Here they are: Make sure you know exactly what the final resolution of your projector is. In pixels. Go to your computer display settings and make sure your displays are mirrored the projector and the computer are showing the same thing and that they are the resolution of the projector.

    Easily create visually stunning projection shows on your device.

    Open Photoshop or whatever design software you want to use. This guy uses MS paint. Create a new image that is the exact resolution of your projector. Make the background white.

    5+ best video mapping software

    Fullscreen your image so that it takes up the whole screen. Often showcasing their clients as forward, technology and design savvy entities, the shows regularly feature groundbreaking or stunningly complex setups and infrastructures, new, often cutting edge technologies, and demanding timelines and schedules. Whether setting up a concert in torrential rain or facing a last minute re-scheduling of an interactive projection mapped keynote, the only constant seems to be that a lot of pixels need to be brought to life with absolute precision in conditions that are often unpredictable and less than ideal.

    Especially given the exposure these high-profile projects can garner, the demands for cutting edge capabilities and the constant pushing of the envelope is a constant. Simultaneously, they leave zero room for compromise in terms of reliability and quality. With the stakes and pressure always running close to the breaking point, and the show conditions inevitably bearing unexpected and often unpleasant surprises, the systems need to be reliable and flexible to the highest degree.

    New technologies and capabilities need to be able to be incorporated without breaking the mold, of course.


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