Pepper disease and insect pest specimen observation device
An observation device and technology of pests and diseases, applied in wide-screen photography, equipment, television, etc., can solve the problems of overall control of adverse symptoms in symptomatic areas, and failure to observe damage to surrounding tissues
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Embodiment 1
[0056] Such as figure 1As shown, the embodiment of the present invention provides a kind of capsicum pest specimen observation device, comprises specimen storage case 1, a plurality of circular rings 2, a plurality of observation units and control system; The inside of described specimen storage case 1 is used to place capsicum specimen, A plurality of circular rings 2 are fixed at equal intervals longitudinally inside the specimen storage box 1; each observation unit includes a first support frame 3, a second support frame 4, and a camera 5, and the bottom of the first support frame 3 passes through the circumferential direction. The rotation mechanism is connected with the ring 2, the side wall of the first support frame 3 is connected with the side wall of the ring 2 through a sliding mechanism; the second support frame 4 is connected with the first support frame 3 through a pitch angle adjustment mechanism; The camera 5 is connected with the second supporting frame 4 throu...
Embodiment 2
[0060] This embodiment is based on Embodiment 1, and the specimen observation device further includes a control system, and the control system includes:
[0061] The GPS locator 22 is fixed on the first support frame 3 to monitor the position of each GPS locator 22;
[0062] The parameter input module is used to input the maximum observation angle of the camera 5 in the horizontal direction and the maximum observation distance of the camera 5 in the vertical direction; it is also used to input the angle observation range and the required angle of the specimen to be observed in the horizontal direction relative to the zero point angle. Observe the distance observation range of the specimen in the vertical direction relative to the zero point distance;
[0063] The number calculation module calculates the number of cameras 5 required to fully cover the range in the horizontal direction according to the maximum observation angle of the camera 5 and the angle observation range of ...
Embodiment 3
[0069] This embodiment is based on Embodiment 2. The circumferential rotation mechanism includes an annular rack 6 fixed in a groove provided inside the ring 2. The annular rack 6 meshes with a gear 7, and the center of the gear 7 is fixed with a first rotating shaft 8. The lower end of the first rotating shaft 8 runs through the bottom of the first supporting frame 3 and is connected with the first supporting frame 3 through bearings, the upper end of the first rotating shaft 8 is connected with the output shaft of the first motor 9, and the first motor is fixed in the recess provided by the ring 2 In the slot, the first motor 9 is also connected with the drive control module.
[0070] Further, the sliding mechanism includes an annular chute 10 fixed on the inner side of the ring 2, the annular chute 10 is slidably connected with the slider 11, the slider 11 is fixed on the side wall of the first support frame 3, and the slider A GPS positioning module 12 is also fixed on the...
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