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    RGB Symbology

    sarabertozzi
    By sarabertozzi,
    Hi, it's the first time I write here, and I apologize immediately for my english not so good. I would like to do something that I don't know if it is practicable ... I have created a polygon feature from a 3 band raster through the tool "conversion from raster to polygon" and "dissolve" by value of each band, and then "intersect" the three shapefiles to make a unique layer with 3 fields (Value R, Value B, Value . Now I would like to simbolize my layer using these three fields (I think by "unique

    Conversion of 16 bit image to 8 bit using linear stretching?

    emani
    By emani,
    Is it wise to convert 16 into 8 bit as it would increase ur processing speed.....does any one know some advantages regarding the conversion? Any research paper would also be helpful in this topic

    2D to 3D Polyline by Start/End Elevations

    Amit
    By Amit,
    Hi   I need to convert 2D to 3D Polyline by specifying Start/End Elevations. The intermediate points should get automatically calculated. Carlson software has exactly the same utility, but I do not have this software. I have ArcGIS, AutoCAD, MapInfo.   Below is the link to the functionality I want:   http://files.carlsonsw.com/mirror/manuals/Takeoff_R1/online/source/Elevate/2D_to_3D_Polyline_by_StartEnd_Elevations/2D_to_3D_Polyline_by_StartEnd_Elevations.htm   Would appreciate any help.

    ArcGIS Engine 10.2 - Arc object With Qt

    Amir 2010a
    By Amir 2010a,
    hi is it posible To Write GIS Custom Application With Qt   instead of Arc GIS Engine for  Microsoft  DotNet   Framework without any limitation ?  I'm  hate of  Microsoft Technology

    Artificial Intelligence and Remote Sensing Applications

    Prasalvi
    By Prasalvi,
    According to a research made recently, it was discovered that there are some of the Artificial Intelligence products which could prove more beneficial when applied to remote sensing applications. Those tools are:-  knowledge-based systems, fuzzy logic concept, automatic data acquisition, neural networks, genetic algorithms, case-based reasoning, and Ambient-intelligence Find more about remote sensing applications here:- http://www.rolta.com/americas/industries/government/solutions/digit

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    • Sometimes you need to create a satellite navigation tracking device that communicates via a low-power mesh network. [Powerfeatherdev] was in just that situation, and they whipped up a particularly compact solution to do the job. As you might have guessed based on the name of its creator, this build is based around the ESP32-S3 PowerFeather board. The PowerFeather has the benefit of robust power management features, which makes it perfect for a power-sipping project that’s intended to run for a long time. It can even run on solar power and manage battery levels if so desired. The GPS and LoRa gear is all mounted on a secondary “wing” PCB that slots directly on to the PowerFeather like a Arduino shield or Raspberry Pi HAT. The whole assembly is barely larger than a AA battery. It’s basically a super-small GPS tracker that transmits over LoRa, while being optimized for maximum run time on limited power from a small lithium-ion cell. If you’re needing to do some long-duration, low-power tracking task for a project, this might be right up your alley. https://hackaday.com/2024/10/17/tiny-lora-gps-node-relies-on-esp32/
    • Multiple motors or servos are the norm for drones to achieve controllable flight, but a team from MARS LAB HKU was able to a 360° lidar scanning drone with full control on just a single motor and no additional actuators. Video after the break. The key to controllable flight is the swashplateless propeller design that we’ve seen a few times, but it always required a second propeller to counteract self-rotation. In this case, the team was able to make that self-rotation work so that they could achieve 360° scanning with a single fixed LIDAR sensor. Self-rotation still needs to be slowed, so this was done with four stationary vanes. The single rotor also means better efficiency compared to a multi-rotor with similar propeller disk area. The LIDAR comprises a full 50% of the drone’s weight and provides a conical FOV out to a range of 450m. All processing happens onboard the drone, with point cloud data being processed by a LIDAR-inertial odometry framework. This allows the drone to track and plan its flight path while also building a 3D map of an unknown environment. This means it would be extremely useful for indoor or underground environments where GPS or other positioning systems are not available. All the design files and code for the drone are up on GitHub, and most of the electronic components are off-the-shelf. This means you can build your own, and the expensive lidar sensor is not required to get it flying. This seems like a great platform for further experimentation, and getting usable video from a normal camera would be an interesting challenge.   Single Rotor Drone Spins For 360 Lidar Scanning | Hackaday
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