An intelligent agricultural monitoring platform based on the Internet of Things
A monitoring platform and Internet of Things technology, applied in the field of agricultural Internet of Things, can solve the problems of manual soil excavation, low work efficiency, and the inability of the greenhouse to perform a uniform and effective all-round temperature and humidity, so as to ensure the temperature and humidity and speed up the air flow. Effect
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Embodiment 1
[0021] see figure 1 , 2 , 3, 5, a kind of intelligent agricultural monitoring platform based on Internet of Things, comprises scaffolding 10, roofing 11, monitoring station 13; Described roofing 11 is set to the top that arc structure is fixedly connected on scaffolding 10, roofing There are multiple groups of solar panels 12 evenly installed on the left and right sides of the top of the roof 11, and a group of monitoring platforms 13 are fixedly installed on the inner top of the roof 11. The left and right sides of the monitoring platform 13 are fixedly installed with solar panels 12. The battery assembly 14 is connected to each other, and a control device is arranged inside the monitoring platform 13, which is used to process and control the input information. The middle part of the scaffold 10 is provided with two groups of tube holders 42 spliced into a closed ring structure. The left, right, front and rear middle parts of the tube holders 42 are fixedly connected to th...
Embodiment 2
[0023] refer to Figure 4 , the bottom of the gear 18 is fixedly installed with a group of main helical teeth 2 28 arranged inside the fixed cavity 25, the left and right sides of the fixed cavity 25 are upwardly connected to the left and right side walls of the monitoring platform 13 through the support rod 16 fixed support, the main The bottom of the second helical tooth 28 moves downwards and passes through the bottom of the fixed cavity 25. A group of locking grooves 29 are fixedly installed, and a group of bayonet pins 30 that are mutually locked with the bayonet grooves 29 are arranged at a position directly below the bayonet grooves 29. The bayonet pins 30 A set of threaded barrels 32 are fixedly connected to the bottom of the threaded barrel downwards through connecting rods, and a set of vertical threaded rods 31 are connected to the lower side of the threaded barrels 32. The bottom of the threaded rods 31 is fixedly equipped with a drill bit 33. When the pins 30 are ...
Embodiment 3
[0025]On the basis of Embodiment 1 and Embodiment 2, two sets of auxiliary helical teeth 38 arranged vertically are meshed on the left and right sides of the main helical gear 2 28, and the outer fixed rotation shafts of the auxiliary helical teeth 2 38 are rotationally connected There is a fan 39, the middle part of the rotating shaft is connected to the bottom of the fixed cavity 25 through the support frame 41, and the auxiliary helical gear 2 38 is driven to rotate through the main helical gear 2 28, thereby driving the fan 39 to rotate, and then the air in the scaffold 10 is Increase the speed of flow. A circle of fan frame 40 for protecting the fan 39 from damage is arranged on the outer side of the fan 39 .
[0026] The working principle of the present invention is: when in use, at first the temperature sensor 36 and the humidity sensor 37 electrically connected with the monitoring platform 13 are installed on the bottom of the monitoring board 35, then the servo motor ...
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