Real-time control of liquid fertilizer injection hole fertilizer applicator by automatic driving
A technology of real-time control and automatic driving, which is applied in the field of agricultural machinery, can solve the problems of unable to drive automatically, unable to control the posture of the needle body in real time, and the needle body is easy to be blocked, so as to save manual labor, improve the efficiency and quality of fertilization, and avoid The effect of soil clogging
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Embodiment 1
[0023] Embodiment 1, the present invention is an automatic driving real-time control liquid fertilizer jet hole fertilizer machine, including a small crawler tractor 1, and the small crawler tractor 1 can independently select the manual traction in the prior art or the autonomous traction that can realize automatic driving. Selected as the prior art, the main improvement point is that a machine tool 2 is connected to the right side of the small crawler tractor 1. The machine tool 2 includes two frames 3, and the frames 3 are placed at the right end of the machine tool 2. The end is rotatably connected with a rotating rod 4, the two rotating rods 4 are connected by a cross rod 5, a fixed block 6 is sleeved on the cross rod 5, and an electric telescopic cylinder 7 is installed above the fixed block 6, and the telescopic cylinder 7 Controlled by the control box 37 or installed with a telescopic rod, which requires manual control, the telescopic cylinder 7 is rotated and installed ...
Embodiment 2
[0037] In the second embodiment, a GPS vehicle-mounted mobile station 39 is installed on the upper right end of the small crawler tractor 1, and a GPS reference station 40 is installed at the operating point, which refers to the end of the farmland during operation.
[0038] The GPS reference station 40 and the GPS vehicle-mounted mobile station 39 of the present invention constitute an automatic driving system. The liquid fertilizer pump 36 is connected with the liquid fertilizer tank 35 and the solenoid valve 34 and the fertilizer spray needle 32 to form a fertilizer spray system. The valve 34, the solenoid valve 34 is connected with the fertilizer spray needle 32 through the fertilizer delivery pipe 33, and the solenoid valve 34 is connected with the control box 37 through the wire. Before the machine tool 2 operates, the GPS reference station 40 needs to be installed in an open place near the work site. After the installation is completed, the staff needs to manually input ...
Embodiment 3
[0040] In the third embodiment, the control of the solenoid valve 34, the laser sensor 38, and the liquid fertilizer pump 36 all need to be controlled by the single-chip microcomputer in the control box 37. The following is the control circuit diagram of the single-chip microcomputer. The pin 1 of the diode D2 is connected to the negative pole of the diode D2, the relay K1, and the pin 37 of the microcontroller. The positive level of the diode D2 and the relay K1 are connected to the ground GND. One end of the relay K1 is connected to the pin 2 of the solenoid valve, and the pin 1 of the solenoid valve is connected to the power supply. VCC and the positive pole of the polar capacitor C4, and the other end of the polar capacitor C4 is grounded to GND.
[0041] The pin 10 of the microcontroller is connected to the negative electrode of the polar capacitor C5 with a capacitance of 10uF, the positive electrode of the polar capacitor C5 is connected to the power supply VCC and the s...
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