Intelligent water and fertilizer integrated system and method based on automatic driving inspection device
An automatic driving, water and fertilizer technology, applied in the direction of liquid fertilizer adjustment system, service based on specific environment, pressurized and spread method of liquid fertilizer, etc., can solve the problem of low utilization rate of agricultural water resources and chemical fertilizers, and large gap in combination of growth needs , high planting costs and other problems, to achieve the effect of reducing planting costs, reducing equipment investment, and reducing redundancy
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Embodiment 1
[0051]In the technical solutions disclosed in one or more embodiments, such as figure 1 As shown, the intelligent water and fertilizer integration system based on the automatic driving inspection device includes the automatic driving inspection device, the planting area information collection system, the integrated water and fertilizer mixed application device and the monitoring background;
[0052] Automatic driving inspection device: used to collect image samples of crops in the planting area by means of inspection.
[0053] Planting area information collection system: used to detect the environmental information and soil information of the crops in the planting area.
[0054] The monitoring background is wirelessly connected with the automatic driving inspection device, and the monitoring background is respectively connected with the collection control cabinet of the planting area information collection system and the control cabinet of the integrated water and fertilizer m...
Embodiment 2
[0070] This embodiment provides a working method of an intelligent water and fertilizer integration system based on an automatic driving inspection device, including the following steps:
[0071] Step 1 generates an inspection path based on the obtained configuration information, and sends the inspection path to the automatic driving inspection device; the configuration information can be the observation location setting, inspection times, inspection frequency, etc. input by the user.
[0072] Step 2. Obtain the image samples of the crops in the planting area collected by the automatic driving inspection device, and obtain the environmental information and soil information of the crops;
[0073] Step 3. Determine the current growth cycle and growth environment of the crops based on the acquired crop image samples, environmental information and soil information, and generate a water and fertilizer mixed application plan according to the growth cycle and growth environment.
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