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RIEGL BathyCopter

RIEGL's BathyCopter is a UAV-based surveying system for hydrographic applications ideally suited for generating profiles of inland water bodies.

The roboust and reliable platform design of RIEGL's remotely piloted RiCOPTER now integra…

  • RIEGL BathyCopter
RIEGL
Riedenburgstrasse 48
3580 Horn
Austria
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Description

RIEGL's BathyCopter is a UAV-based surveying system for hydrographic applications ideally suited for generating profiles of inland water bodies.

The roboust and reliable platform design of RIEGL's remotely piloted RiCOPTER now integrates the new RIEGLBDF-1, a compact and lightweight bathymetric depth finder comprising of tilt compensator, an IMU/GNSS unit with antenna, a control unit and up to two external digital cameras. The BDF-1 can optionally be equipped with a miniVUX-1UAV LiDAR sensor.

The device sends out laser pulses at a rate of 4 kHz. The echo signal of each laser pulse is digitized and recorded for the entire range gate of 50m. That means, that predetection averaging of the waveforms can be performed in post processing, increasing the depth performance.

Subsequently the waveforms are processed by RIEGL's new and patented hydrographic full waveform processing algorithm based on exponential decomposition. Finally data sets with high accuracy, high range resolution, and hydrography-specific attributes are provided which support point classification.

Specifications

  • Year of last update
    2017
  • Typical applications
    Generation of profiles of inland water bodies
  • Brand
    RiCOPTER
  • Max. payload [kg]
    14
  • Max. stay in the air [min]
    30
  • Max. speed [km/h]
    60
  • Propulsion
    electric
  • Platform
    Copter
  • ø / wingspan [cm]
    192
  • Height [cm]
    47
  • Weight [kg]
    9
  • Weight of battery [kg]
    8
  • Number of rotors
    8
  • Transport on human back
    Y
  • Min. operation temperature [°C]
    -5
  • Max. operation temperature [°C]
    40
  • Max. wind speed [m/sec]
    8
  • Min. ø of launch/landing site [m]
    4
  • Launching method
    vertical take-off and landing
  • Automatic launch and landing
    Y
  • Training provided
    Y
  • Collision avoidance systems (CAS)
    Y
  • Onboard imaging/scanning devices
    Lidar
  • Type of Camera
    Sony Alpha 6000
  • Type of Lidar
    RIEGL BDF-1
  • Build-in Stablilsation
    N
  • Exchangeable
    Y
  • Sensor tilting to allow oblique views
    Y
  • Sensor control
    Y
  • Real time image and video download link
    Y
  • Point could processing software
    RiPROCESS
  • Type of software included
    Flight planning, Point cloud processing software
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