Agriculture management and control system based on augmented reality
An augmented reality, management and control system technology, applied in the control/regulation system, transmission system, non-electric variable control and other directions, can solve the problems of intelligence, low degree of automation, inability to realize user virtual information interaction, etc., to achieve refinement The effect of agricultural control
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specific Embodiment approach 1
[0017] Specific implementation mode one: as figure 1 and 2 As shown, the augmented reality-based agricultural management and control system described in this embodiment is applied in at least one monitoring area, which includes an intelligent mobile terminal with an augmented reality providing system, a server, an agricultural information collection device, and an environmental regulation device; The intelligent mobile terminal providing the system communicates with the server through the wireless network;
[0018] The agricultural information collection device includes multiple camera equipment and hyperspectral imaging spectrometers, and multiple sets of environmental parameter monitoring sensors. The multiple camera equipment and hyperspectral imaging equipment can be fixed or mobile;
[0019] A plurality of camera equipment and hyperspectral imaging equipment are evenly distributed in the monitoring area and cover the entire monitoring area, each camera equipment is used ...
specific Embodiment approach 2
[0031] Specific embodiment two: the agricultural management and control system based on augmented reality described in this embodiment, the fusion display is used for the visualization of crop growth information in augmented reality, and its specific process is:
[0032] Step 1: Dynamically acquire images of crops and hyperspectral parameters of plant growth stages;
[0033] Step 2: extracting the boundary line area and the filling area of the image;
[0034] Step 3: Obtain the current growth state information and predicted growth state information of the crops through pattern matching according to the image and the hyperspectral image;
[0035]Step 4: color the boundary line area with a first color according to the current growth state information, and color the filled area with a second color according to the predicted growth state information to obtain a colored image, the The shaded image has a shaded border region and a shaded fill region;
[0036] Step 5: Displaying ...
specific Embodiment approach 3
[0039] Specific implementation mode three: as figure 1 As shown, the augmented reality-based agricultural management and control system described in this embodiment is characterized in that, in step 1, the Kalman filter model is used to obtain images of the crops every predetermined number of frames;
[0040] Step 4 further includes: coloring the boundary line region with a first color according to the current growth state information and the color of the filled region, and coloring the boundary line region according to the predicted growth state information and the color of the filled region Filled areas are shaded with a secondary color. The contours of the images of the crops obtained by using the Kalman filter model are clearer. Others are the same as in the first or second embodiment.
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