PLANTING SYSTEM FOR CONTROLLING SEED DEPTH AND METHODS OF USE
20200236843 ยท 2020-07-30
Inventors
- Jerry D. Graham (Wray, CO, US)
- Marty Graham (Naples, FL, US)
- Warren Edwin Guthrie (West Olive, MI, US)
- John Gregory Videtich (Zeeland, MI, US)
Cpc classification
International classification
Abstract
A system and methods for controlling the seed depth of a row planter utilizing sensed angle data from an angle sensor operably connected to a gauge wheel, the angle data corresponding to the height of the planter frame above the soil surface. The system comprises a piston assembly operably connected to a pump controlled by a processor. The processor is configured to actuate the pump based on the sensed angle data transmitted to the processor. The piston assembly configured to pivot the planter frame through and about a link assembly connected between the piston assembly and the planter frame. Methods for controlling seed depth utilizing sensed angle data from an angle sensor operably connected to a gauge wheel.
Claims
1. A system for planting seeds, comprising: a row unit, comprising: a front plate; a planter frame; a gauge wheel connected to the planter frame, the gauge wheel configured to engage a surface; a cutting wheel connected to the planter frame, the cutting wheel configured to form a furrow having a depth in the surface; a link assembly pivotally connecting the planter frame to the front plate; a piston assembly connected to the front plate, comprising: a pump; and a piston operably connected to the pump, the piston connected to the link assembly, wherein the piston is configured to pivot the planter frame; and an angle sensor operably connected to the gauge wheel for calculating a first distance between the planter frame and the surface; and a controller having a processor, the controller being operably connected to the piston assembly and the angle sensor; whereby the depth of the furrow is adjusted by pivoting the planter frame through actuation of the pump via the controller in response to data from the angle sensor.
2. The system of claim 1, wherein the processor is configured to: calculate an angular value corresponding to a difference between a sensed angle and a reference angle; wherein the reference angle corresponds to a predetermined depth of the furrow; and wherein the sensed angle corresponds to the first distance; and control actuation of the pump based on the angular value.
3. The system of claim 1, wherein the link assembly comprises: an upper link having a first length; and a lower link having a second length; wherein the first length and the second length are approximately equal.
4. The system of claim 3, wherein the lower link is connected to the piston; whereby movement of the piston rotates the planter frame about the upper link.
5. The system of claim 1, further comprising a transmitter configured to transmit angle data from the angle sensor to the controller.
6. A system of claim 1, wherein the row unit further comprises a closing wheel connected to the planter frame.
7. A system of claim 1, wherein the row unit further comprises a feed chute configured to dispose a plurality of seeds into the furrow.
8. A system for planting seeds, comprising: a row unit, comprising: a front plate; a planter frame; a gauge wheel connected to the planter frame, the gauge wheel configured to engage a surface; a cutting wheel connected to the planter frame, the cutting wheel configured to form a furrow having a depth in the surface; a link assembly pivotally connecting the planter frame to the front plate; the link assembly comprising: an upper link having a first length; and a lower link having a second length; wherein the first length and the second length are approximately equal; a piston assembly connected to the front plate, comprising: a pump; and a piston operably connected to the pump, the piston connected to the link assembly, wherein the piston is configured to pivot the planter frame; and an angle sensor operably connected to the gauge wheel for calculating a first distance between the planter frame and the surface; and a controller having a processor, the controller being operably connected to the piston assembly and the angle sensor; whereby the depth of the furrow is adjusted by pivoting the planter frame through actuation of the pump via the controller in response to data from the angle sensor.
9. The system of claim 8, wherein the processor is configured to: calculate an angular value corresponding to a difference between a sensed angle and a reference angle; wherein the reference angle corresponds to a predetermined depth of the furrow; and wherein the sensed angle corresponds to the first distance; and control actuation of the pump based on the angular value.
10. The system of claim 8, wherein the lower link is connected to the piston; whereby movement of the piston rotates the planter frame about the upper link.
11. The system of claim 8, further comprising a transmitter configured to transmit angle data from the angle sensor to the controller.
12. A method for adjusting a seed depth, comprising the steps of: providing a row unit, comprising: a front plate; a planter frame; a gauge wheel connected to the planter frame, the gauge wheel configured to engage a surface; a cutting wheel connected to the planter frame, the cutting wheel configured to form a furrow having a depth in the surface; a link assembly pivotally connecting the planter frame to the front plate; a piston assembly connected to the front plate, comprising: a pump; and a piston operably connected to the pump, the piston connected to the link assembly, wherein the piston is configured to pivot the planter frame; and an angle sensor operably connected to the gauge wheel for calculating a first distance between the planter frame and the surface; and a controller having a processor, the controller being operably connected to the piston assembly and the angle sensor; calculating by the processor an angular value corresponding to a difference between a sensed angle and a reference angle; wherein the reference angle corresponds to a predetermined depth of the furrow; and wherein the sensed angle corresponds to the first distance; and controlling actuation of the pump based on the angular value; whereby the depth of the furrow is adjusted through movement of the cutting wheel by pivoting the planter frame about the link assembly.
13. The method of claim 12, further comprising the step of moving the row unit across the surface.
14. The method of claim 13, further comprising the step of depositing a plurality of seeds within the furrow.
15. The method of claim 14, wherein the row unit further comprises a closing wheel configured to urge soil into the furrow.
16. The method of claim 15, further comprising the step of urging soil into the furrow after the depositing step.
17. The method of claim 12, further comprising the step of transmitting angle data from the angle sensor to the controller having a processor.
18. The method of claim 12, wherein the link assembly further comprises: an upper link pivotally connected to the front plate and the planter frame; and a lower link pivotally connected to the piston and the planter frame.
19. The method of claim 18, further comprising the step of controlling movement of the piston by the processor based on angle data generated by the angle sensor.
20. The method of claim 19, further comprising the step of adjusting the cutting wheel either upwardly or downwardly through movement of the lower link.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The present disclosed subject matter is described herein with reference to the following drawing figures, with greater emphasis place on clarity rather than scale:
[0020]
[0021]
[0022]
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[0024]
DETAILED DESCRIPTION
[0025] As required, detailed aspects of the disclosed subject matter are disclosed herein; however, it is to be understood that the disclosed aspects are merely exemplary of the disclosed subject matter, which may be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art how to variously employ the disclosed technology in virtually any appropriately detailed structure.
[0026] Certain terminology will be used in the following description, and are shown in the drawings, and will not be limiting. For example, up, down, front, back, right and left refer to the disclosed subject matter as orientated in the view being referred to. The words, inwardly and outwardly refer to directions toward and away from, respectively, the geometric center of the aspect being described and designated parts thereof. Upwardly and downwardly are generally in reference to the direction of travel, if appropriate. Said terminology will include the words specifically mentioned, derivatives thereof and words of similar meaning.
[0027] The disclosed subject matter will now be described with reference to the drawing figures, in which like reference numerals refer to like parts throughout. For purposes of clarity in illustrating the characteristics of the present disclosed subject matter, proportional relationships of the elements have not been maintained in the figures. In some cases, the sizes of certain small components have been exaggerated for illustration.
[0028] Referring to
[0029] Referring to
[0030] Referring to
[0031] The front plate 306 is configured to pull the row unit 301 in a direction of travel 310 over surface 304. A plurality of seeds 312 may be feed through a feed chute 314 and deposited into a furrow 316 created by a cutting wheel 336 connected to the planter frame 302. A closing wheel 342 may be connected to the planter frame 302; wherein the closing wheel is configured to urge soil into the furrow 316 after the plurality of seeds 312 is deposited into the furrow 316.
[0032] The cutting wheel 336 may be connected to the planter frame 302 at a second distance 338 below the planter frame 302. The furrow 316 may be formed by the cutting wheel 336 as the row until 301 moves in the direction of travel 310 through the surface 304. The furrow 316 extending a depth 340 below the soil surface 304. The depth 340 is approximately the difference between the second distance 338 and the first distance 328. The planter frame 302 may pivoted about the upper link 322 in a manner that the depth 340 may be adjusted but the cutting wheel 336.
[0033] In an embodiment of the disclosed subject matter, a piston assembly 318 may be connected to the front plate 306. The piston assembly 318 may comprise a pump (not shown) and a piston 320 operably connected to the pump; wherein the piston 320 is configured to pivot the planter frame 302 through movement of the piston 320 via the link assembly 308. For example, the lower link 324 may be moved downwardly by the piston 320 in order to pivot the planter frame 302 about the upper link 322; whereby the depth 340 of the furrow 316 is increased by driving the cutting wheel 336 deeper below the soil surface 304. Alternatively, the lower link 324 may be moved upwardly by the piston 320 in order to pivot the planter frame 302 about the upper link 322; whereby the depth 340 of the furrow 316 is decreased though upward movement of the cutting wheel 336 in the soil surface 304.
[0034] In an embodiment of the disclosed subject matter, the row unit 301 may comprise a gauge wheel 326 connected to the planter frame 302, wherein the gauge wheel 326 is configured to engage the soil surface 304, and wherein the gauge wheel 326 is further configured to move towards or away from the planter frame 302. A first distance 328 is defined between the soil surface 304 and planter frame 302. In some embodiments, a gauge member 330 may be rotatably connected to the gauge wheel 326 and the planter frame 302 at the opposite distal ends of the gauge member 330, so that an angle is formed between the gauge member 330 and a reference line 332. Since the gauge member 330 connects the gauge wheel 326 and planter frame 302, angle is proportional to the first distance 328, and angle may be used to calculate the first distance 328.
[0035] In an embodiment of the disclosed subject matter, the row unit 301 may comprise an angle sensor 334 operably connected to the gauge wheel 326 for sensing the angle and calculating the first distance 328 between the planter frame 302 and soil surface 304. The sensed angle data 350 corresponding to the angle may be transmitted to a controller 352 via a transmitter 354 for processing by a processor 356.
[0036] In an embodiment of the disclosed subject matter, the processor 356 is configured to calculate an angular value corresponding to a difference between a sensed angle corresponding the sensed angle data 350 and a reference angle; wherein the reference angle corresponds to a depth 340 of the furrow 316; and wherein the sensed angle corresponds to the first distance 328; and control actuation of the pump via the controller in response to the angular value.
[0037] Referring to
[0038] Referring to
[0039] Although the subject matter has been disclosed with reference to various particular embodiments, it is understood that equivalents may be employed and substitutions made herein without departing from the scope of the disclosed subject matter as recited in the claims.
[0040] It is to be understood that while certain aspects of the disclosed subject matter have been shown and described, the disclosed subject matter is not limited thereto and encompasses various other embodiments and aspects.