The present disclosure generally relates to machine row guidance and more particularly to a device and method for sensing a crop for crop row guidance for an agricultural work vehicle or machine.
In order to maintain an agricultural work vehicle in a series of crop rows, an operator commonly has to manually steer the work vehicle or a crop feeler device can be used that outputs a non-linear signal that is interpreted to provide a steering signal to help steer the work vehicle.
In one embodiment, a crop feeler device is disclosed. The crop feeler device comprises a rod. A pivot device is coupled to the rod. A bottom plate is positioned in a facing relationship with the pivot device, the pivot device configured to pivot in two opposing directions. A pair of stretchable devices are positioned on opposing sides of the bottom plate. The stretchable devices are configured to return the rod to a central position after a pivot of the pivot device. A top plate is positioned in a facing relationship with the pivot device. A rotary sensor is positioned to measure a rotation of the pivot device or the rod as the rod moves from the central position.
In another embodiment, an agricultural work vehicle is disclosed. The agricultural work vehicle comprises a steering device configured to steer the agricultural work vehicle. A crop feeler device comprises a rod. A pivot device is coupled to the rod. The pivot device is configured to pivot in two opposing directions. A housing is positioned in a facing relationship with the pivot device. A pair of stretchable devices is positioned on opposing sides of the housing. The stretchable devices are configured to return the rod to a central position after a pivot of the pivot device. A rotary sensor is positioned to measure a rotation of the pivot device or the rod as the rod moves from the central position. A controller is communicatively coupled to the rotary sensor. The controller comprises a data storage device and an electronic data processor. The data storage device is configured for storing instructions that are executable by the electronic data processor to cause the electronic data processor to receive the signal, determine a steering output, and provide a steering signal to the steering device to steer the agricultural work vehicle.
In yet another embodiment, a method for controlling an agricultural work vehicle is disclosed. The agricultural work vehicle comprises a steering device configured to steer the agricultural work vehicle. The method comprises providing a crop feeler device comprising a rod configured to contact a crop, a pivot device coupled to the rod, a bottom plate positioned in a facing relationship with the pivot device, the pivot device configured to pivot in two opposing directions, a pair of stretchable devices positioned on opposing sides of the bottom plate, the stretchable devices configured to return the rod to a central position, a top plate positioned in a facing relationship with the pivot device, and a rotary sensor positioned to measure a rotation of the pivot device or the rod as the rod moves from the central position, and provide a signal. The method further comprises receiving the signal, determining a steering output, and providing a steering signal to the steering device to steer the agricultural work vehicle.
Other features and aspects will become apparent by consideration of the detailed description and accompanying drawings.
Before any embodiments are explained in detail, it is to be understood that the disclosure is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The disclosure is capable of other embodiments and of being practiced or of being carried out in various ways. Further embodiments of the invention may include any combination of features from one or more dependent claims, and such features may be incorporated, collectively or separately, into any independent claim.
With regards to
The agricultural work vehicle 100 can include a steering device 160 (
Referring to
With reference to
The pivot device 180 is configured to move from a central position 195, where the pivot device 180 is not pivoted, to a pivoted position 200, where the pivot device 180 is pivoted when the rod 170 is contacted by the crop 175 (
A housing 207 is coupled to the pivot device 180. The housing 207 may be configured in various forms. The depicted housing 207 may comprise a bottom plate 210 that is positioned in a facing relationship with the pivot device 180. The bottom plate 210 is depicted in a triangular shape but may comprise other shapes.
The housing 207 may also comprise a top plate 215 that is positioned in a facing relationship with the pivot device 180. The top plate 215 is depicted in a triangular shape but may comprise other shapes. The bottom plate 210 and the top plate 215 may be coupled together with fasteners 217.
A pair of stretchable devices 220, which recoil when released or not pulled, is positioned on opposing sides of the bottom plate 210. The stretchable devices 220 are configured to return the rod 170 to the central position 195 after a pivot of the pivot device 180. The stretchable devices 220 can be a spring 225 or other stretchable device 220 that recoils after a force is no longer exerted on it. The stretchable device 220 can be stretched and at least one stretchable device 220 is more stretched in the pivoted position 200 than in the central position 195. The stretchable devices 220 may be coupled to the pivot device 180 and coupled to one or more of the top plate 215 and the bottom plate 210.
A sensor 230 is positioned to measure a rotation of the pivot device 180 or the rod 170 as the rod 170 moves from the central position 195. The sensor 230 may be coupled to either the bottom plate 210 or the top plate 215 with fasteners 217. One or more gaskets or shims 232 may be positioned between the sensor 230 and the bottom plate 210 or the top plate 215. The sensor 230 may be a rotary sensor 235, which senses rotations.
The sensor 230 can provide an output that is linear with respect to movement of the rod 170 or the pivot device 180 due in part to the rigidity of the rod 170 and the overall design and configuration of the crop feeler device 165. The output linearity enables the sensor 230 to provide measurements of the work vehicle 100 relative to the crop 175 that can be used to more accurately control the work vehicle 100 because the distance from the work vehicle 100 to the crop 175 is more accurately reflected in the sensor 230 output. The sensor 230 may be positioned between the bottom plate 210 and the top plate 215 to protect the sensor 230 from extended exposure to outside elements including water, dirt, debris, and the crop 175.
The agricultural work vehicle 100 may include an additional crop feeler device 165 positioned on a side of the agricultural work vehicle 100 opposite of the crop feeler device 165 positioned on another side of the agricultural work vehicle 100 as shown in
Referring to
The controller 260 may comprise a data storage device 270 and an electronic data processor 275. The data storage device 270 can be configured for storing instructions that are executable by the electronic data processor 275 to cause the electronic data processor 275 to receive the signal, determine a steering output, and provide a steering signal to the steering device 160, or otherwise control the hydraulic cylinder 162, to steer the agricultural work vehicle 100 so that the ground engaging apparatus 115 contacts a minimum amount of crop 175 or the agricultural work vehicle 100 damages a minimum amount of crop 175. Alternatively, the steering output may be determined to steer the agricultural work vehicle 100 so that the deflection sensed by the sensor 230 of one or more crop feeler devices 165 is the same or minimized. An operator may make a settings selection using the operator interface 135. The settings selection may include sensor 230 sensitivity, how much the steering output should be affected by how far the rod 170 is deflected, or other.
With reference to
At 305, a crop feeler device 165 comprising a rod 170 configured to contact a crop 175 is provided. A pivot device 180 is coupled to the rod 170. A bottom plate 210 is positioned in a facing relationship with the pivot device 180, the pivot device 180 is configured to pivot in two opposing directions 185, 190. A pair of stretchable devices 220 is positioned on opposing sides of the bottom plate 210. The stretchable devices 220 are configured to return the rod 170 to a central position 195. A top plate 215 is positioned in a facing relationship with the pivot device 180. A rotary sensor 235 is positioned to measure a rotation of the pivot device 180 or the rod 170 as the rod 170 moves from the central position 195 and provide a signal.
At 310 a signal is received. At 315, a steering output is determined. At 320, a steering signal is provided to the steering device 160 to steer the agricultural work vehicle 100.
Various features are set forth in the following claims.