Tomato water and fertilizer integrated intelligent precision irrigation system
A precision irrigation and tomato technology, applied in control/regulation systems, non-electric variable control, instruments, etc., can solve the problems of reducing tomato productivity, inability to perform remote monitoring, inaccurate irrigation, etc., to achieve intelligent and optimized tomato Production, reduce labor and water and fertilizer input, and solve the effect of resource loss
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Embodiment 1
[0042] like Figure 1-2As shown, one embodiment of the present invention provides a tomato water and fertilizer integrated intelligent precision irrigation system, including: a sensor module 2, a controller 1, a fan and a drip irrigation system 3, a server 4, a host computer 5 (such as a mobile terminal and a computer, Wherein the mobile terminal includes a mobile phone APP, an ipad client, etc., and the mobile phone APP is preferred below for specific description).
[0043] Specifically, refer to Figure 1-2 As shown, the sensor module 2 is used to detect the environmental parameters of the external environment of the tomato growing area (such as the concentration of nitrogen, phosphorus and potassium plasma in the soil, the humidity in the soil, the temperature and humidity in the air, etc.).
[0044] Preferably, the sensor module 2 includes a soil nitrogen ion sensor 201 , a soil phosphorus ion sensor 202 , a soil potassium ion sensor 203 , an air volume sensor 204 , an in...
Embodiment 2
[0063] Another embodiment of the present invention also provides an intelligent precision irrigation method for tomato water and fertilizer integration, refer to Figure 5 , including the following steps:
[0064] Step S601: power-on self-inspection, first, the controller 1 performs self-inspection after booting;
[0065] Step S602: connect to the upper computer, and after the self-test has no problem, the controller 1 remotely connects to the upper computer 5 through the communication unit 105; sends the environmental parameter information of the external environment of the tomato growing area detected by the sensor module 2 to the upper computer 5 ;
[0066] Step S603: receiving the command from the host computer, and receiving the control command issued by the host computer 5;
[0067] Step S604: Collect nitrogen, phosphorus, potassium and temperature and humidity, using the soil nitrogen ion sensor 201, soil phosphorus ion sensor 202, soil potassium ion sensor 203, air v...
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