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Multispectral camera drone
Multispectral camera drone




multispectral camera drone

  • Analyze soil water stress and surface soil shortages (N, P, K).
  • Assess the NDVI (vegetative vigor) and the RED / NIR (physiological state of the crop).
  • multispectral camera drone

    In the different plots, homogeneous zones are identified for characteristics and potential productivity and established different amounts of seed, fertilizer and plant protection products to be distributed in variable doses. They are the result of the intersection of many data deriving from force maps or production maps (obtained by point-to-point production during the previous season) and soil analysis. Indicate the amount of input to distribute in the different areas of the field. Hyperspectral mapping of the territory: obtainable by the visible (VIS) and near infrared (VNIR) bands for the detection of specific substances or components by searching for the “spectral signature” of the material of interest.

    multispectral camera drone

    Each pixel in the spectroscopic image contains a spectrum composed of a large number of bands (in radiance or reflection) that can be used to characterize objects in the scene with great precision and high degree of detail. From the analysis of the data collected by the hyperspectral sensor, even by combining the data acquired on different channels, images can be processed in false colors representative of the characteristics of the investigated surfaces. Hyperspectral radiometers measure the reflected radiation in many narrow and contiguous bands, ie for each measurement band an image is captured and for each image a pixel represents the reflectance at a precise wavelength of the ground area viewed from that pixel. The hyperspectral sensor is normally employed together with a GPS-Inertial system for georeferencing the images produced. At the base of hyperspectral remote sensing systems there is the physical property of each object to emit or reflect radiation on various bands, in addition to the visible one, with varying intensity depending on its chemical-physical characteristics. The sampled images combined with precision measurements provide a precise map of the vegetative state that helps the agricultural entrepreneur optimize irrigation, pruning, fertilization and harvesting activities. This camera lets you simultaneously sample up to 125 images unlike the 6 images available from the multispettral chambers used by competitors. Applied to Precision Agriculture, this technology allows to analyze and verify the state of crops and vegetative stress, the soil’s water status, the degree of ripening of fruit / vegetable and many other crop conditions in the field. Knowing the spectral signature of an element can be uniquely identified. The Drone Hyperspectral Sensor is the “flagship” of the Multioptic Drone, which is currently the only company in Italy to have one, and it can detect information that is not otherwise obtainable with other technologies currently in the market (multispectral).Īt the base of hyperspectral remote sensing systems there is the physical property of radiation-reflecting elements on various bands with variable intensity depending on their chemical-physical characteristics.






    Multispectral camera drone