MOWER COMBINATION
20210185929 · 2021-06-24
Inventors
Cpc classification
A01D43/077
HUMAN NECESSITIES
A01D34/64
HUMAN NECESSITIES
International classification
A01D34/64
HUMAN NECESSITIES
Abstract
A mower combination including an agricultural vehicle and a front mowing unit as well as two lateral mowing units located behind and to the sides of the front mowing unit. Each of the lateral mowing units has a conveyor unit to deposit cut crop as a swath. A control unit receiving a plurality of signals from the combination including signals representing a steering angle of the agricultural vehicle, a speed of operation of each conveyor unit and a lateral displacement of each conveyor unit and comparing them against a predetermined set of values. As required the control unit adjusts the speed of operation of at least one conveyor unit based on this comparison. Swaths produced by towed rear mowing units are controlled, in particular to enable aligned curved swaths to be produced when the mower combination is turned, or to enable a narrow swath to be produced when the mower combination is turned.
Claims
1. A mower combination comprising an agricultural vehicle and a number of mowing units suitable for cutting a standing crop connected to the agricultural vehicle, including a front mowing unit and two lateral mowing units located behind and to the sides of the front mowing unit, each of the lateral mowing units being provided with conveyor units to deposit cut crop as a swath, the mower combination further comprising: a control unit receiving a plurality of signals, the signals representing a steering angle of the agricultural vehicle, a speed of operation of each conveyor unit and a lateral displacement of each conveyor unit, the control unit being configured to receive the plurality of signals and compare the signals for the steering angle of the agricultural vehicle, the speed of operation of each conveyor unit and the lateral displacement of each conveyor unit against a predetermined set of values and as required to adjust the speed of operation of at least one conveyor unit based on the comparison.
2. The mower combination according to claim 1, wherein the control unit is configured to additionally adjust the lateral displacement of the at least one conveyor unit based on the comparison.
3. The mower combination according to claim 1, wherein the control unit is configured to additionally adjust the lateral displacement of at least one of the lateral mowing units based on the comparison.
4. A method of operating a mower combination according to claim 1, to produce swathes of uniform width while the mower combination is turned comprising: providing a predetermined set of values to the control unit; monitoring the steering angle of the agricultural vehicle, the displacement of each of the conveyor units and the speed of operation of each of the conveyor units; providing signals representative of the steering angle of the agricultural vehicle, the speed of operation of each of the conveyor units and the displacement of the conveyor units to the control unit; the control unit comparing the signals representing the steering angle of the agricultural vehicle, the speed of operation of each conveyor unit and the lateral displacement of each conveyor unit against the predetermined set of values; and as required, signalling at least one conveyor unit to adjust the speed of operation of the at least one conveyor unit based on the comparison.
5. A method of operation of a mower combination according to claim 1, to produce a swath of narrow width while the mower combination is turned comprising: providing a predetermined set of values to the control unit; monitoring the steering angle of the agricultural vehicle, the displacement of each of the conveyor units and the speed of operation of each of the conveyor units; providing signals representative of the steering angle of the agricultural vehicle, the speed of operation of the conveyor units and the displacement of the conveyor units to the control unit; the control unit comparing the signals representing the steering angle of the agricultural vehicle, the speed of each conveyor unit and the lateral displacement of each conveyor unit against the predetermined set of values; and as required signalling at least one conveyor unit to adjust the speed of operation of the at least one conveyor unit based on the comparison.
6. The method according to claim 4, further comprising the control unit additionally adjusting the lateral displacement of the at least one conveyor unit based on the comparison.
7. The method according to claim 4, further comprising the control unit additionally adjusting the lateral displacement of at least one of the lateral mowing units based on the comparison.
8. A computer implemented method comprising a control unit receiving a plurality of signals, the signals representing the steering angle of an agricultural vehicle, a lateral displacement of each of a pair of conveyor units and a speed of operation of each of the conveyor units, the control unit being configured to receive the plurality of signals and compare the signals for the steering angle of the agricultural vehicle, the speed of each conveyor unit and the lateral displacement of each conveyor unit against a predetermined set of values and as required to adjust the speed of operation of at least one conveyor unit based on the comparison.
9. A computer implemented method according to claim 8, wherein the control unit additionally adjusts the lateral displacement of the at least one conveyor unit based on the comparison.
10. A computer implemented method according to claim 8, further comprising the control unit additionally adjusting the lateral displacement of at least one of the lateral mowing units based on the comparison.
11. A computer readable program comprising instructions that cause one or more processors to implement the method of claim 4.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The invention will now be described, by way of example only, with reference to the accompanying drawings, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION OF SPECIFIC EMBODIMENTS
[0028] The invention will now be described in the following detailed description with reference to the drawings, wherein preferred embodiments are described in detail to enable practice of the invention. Although the invention is described with reference to these specific preferred embodiments, it will be understood that the invention is not limited to these preferred embodiments. But to the contrary, the invention includes numerous alternatives, modifications and equivalents as will become apparent from consideration of the following detailed description.
[0029] Reference to terms such as longitudinal, transverse and vertical are made with respect to a longitudinal vehicle axis which is parallel to a normal forward direction of travel. Inward refers to movement relative to a central longitudinal axis. Associated terms such as outward should be construed accordingly.
[0030] In
[0031] A mower combination 2 comprises an agricultural vehicle 4 such as a tractor and a number of mowing units 6,8,10 suitable for cutting a standing crop, such as grass, the mowing units 6,8,10 being connected to the agricultural vehicle. The mowing units include a front mowing unit 6 located to the front of the agricultural vehicle 4 and two lateral mowing units 8,10 located behind and to the sides of the agricultural vehicle 4, each of the mowing units 6,8,10 being adapted to cut the standing crop. The front mowing unit 6 is conveniently mounted on a front hitch 12 of the agricultural vehicle 4. The two lateral mowing units 8,10 are conveniently mounted on a central chassis supported from a rear hitch 14 of the agricultural vehicle 4.
[0032] The lateral mowing units 8,10 are supported from a central chassis by hydraulic apparatus 16,18. Each hydraulic apparatus 16,18 may be used to move a respective lateral mowing unit 8,10 from a working position to a transport position. A headland position may be defined between the working position and the transport position. In the working position the height of each of the lateral mowing units 8,10 above the ground surface may be further controlled by operation of the hydraulic apparatus 16,18. Additional hydraulic apparatus 20,22 (not shown in
[0033] In the illustrated embodiment of
[0034] The conveyor units 24,26 are mounted to be displaceable with respect to the lateral mowing units 8,10. The conveyor units 24,26 may be displaced by hydraulic apparatus 28,30 (not shown in
[0035] In the illustrated example of
[0036] The conveyor units 24,26 can comprise conveyor belts or conveyor screws. The speed of operation of the conveyor units may also be controlled. By way of example, increasing the speeds of the conveyor units 24,26 will result in displacement of the generated swaths 62,64 toward the central swath 60.
[0037] An operator can control operation of the front and rear mowing units 6,8,10 from within the agricultural vehicle 4 by use of a suitable user terminal 32 (
[0038] The user terminal 32 communicates with an electronic control unit 34. The electronic control unit 34 may provide signals to control operation of the front and rear hitches 12,14 of the agricultural vehicle 4 and provides signals to control operation of the mowing units 6,8,10 and the conveyor units 24,26. Conveniently the signals are provided by way of a suitable data communication network 38 such as one compliant with the ISOBUS standard (a network in conformance to ISO 11783).
[0039] The electronic control unit 34 may conveniently comprise a single processor located on the agricultural vehicle or its functions may be split between a processor located on the agricultural vehicle and one or more additional processors located on the mowing units 6,8,10, the additional processor(s) being in electronic communication with the first processor.
[0040] The electronic control unit 34 is also able to access a suitable memory 36. The memory 36 may take any suitable form and is in electronic communication with the electronic control unit 34. The memory 36 is adapted to store, in any suitable manner such as a database or look up table, reference values for the steering angle of the agricultural vehicle, the speed of operation of each conveyor unit and the lateral displacement of each conveyor unit.
[0041] The mower combination 2 further comprises a plurality of sensors adapted to provide input signals to be received by the electronic control unit 34.
[0042] A signal 40 representing the steering angle of the agricultural vehicle can be provided from a suitable sensor mounted within the agricultural vehicle. A speed signal 42 representative of the forward velocity of the agricultural implement may be provided from the agricultural vehicle.
[0043] Suitable lateral displacement sensors mounted on the mower combination 2, for example on the mowing units 8,10 can provide input signals representative of the lateral displacement of the mowing units 8,10. The displacement may be measured from any suitable reference point.
[0044] Suitable sensors 46 mounted on the mower combination 2, for example on the conveyor units 24,26, can provide input signals representative of the speed of operation of each conveyor unit 16,18. A further sensor or sensor 48 mounted, for example, on the conveyor units 24,26 can provide input signals representative of the displacement of each conveyor in either the active or inactive position.
[0045] A mower combination in accordance with the present invention is directed within a field, for example, either driven by a driver or directed by an autonomous control system) (step 100,
[0046] While the mower combination 2 is being directed with the field, the control unit receives a plurality of signals, including signals representative of the direction of steering and speed of the agricultural vehicle, and the position of each mowing unit and its associated conveyor as well as the speed of operation of the conveyor (step 102). A comparison of the input signals received by the electronic control unit 34 is made with the reference values stored in the memory 36 (step 104). The electronic control unit 34, as appropriate, then causes a change of speed of operation of at least one conveyor unit 16,18 (step 106) such that the desired swath pattern is produced.
[0047] The electronic control unit 34 may additionally cause a change in the lateral displacement of one or both of the conveyor units 24,26 and/or a change in the lateral displacement of one or both of the lateral mowing units 8,10.
[0048] In a first embodiment of the invention, as shown for example in
[0049] It will be understood that when steering to the left, the speed of operation of the right hand conveyor unit in increased, while the speed of operation of the left hand convenor unit is increased.
[0050] The control unit may also contain reference values relating to a desired lateral displacement of each lateral mowing unit 8,10, and monitor the lateral displacement of these mowing units such that each lateral mowing unit may also additionally be laterally displaced as required.
[0051] In a second embodiment of the invention, the left hand mowing unit and associated conveyor generate a swath 62 to the right of the mowing unit adjacent the swath 60 generated by the front mowing unit, while the right hand mowing unit and associated conveyor generate a swath 64 to the right of the mowing unit adjacent the swath 60. While the mower combination is directed on a straight heading, a single swath 60′ of triple width may be produced. Similar problems arise as before when the mower combination is turned, in that the inner edge moves into the curve and the outer end moves outward, though generally a single triple width swath 60′, albeit uneven is produced.
[0052] However, as illustrated in
[0053] To overcome this problem, whether the agricultural vehicle 5 is steered to the right, as in the illustrated embodiment, or to the left, the lateral mowing units and the associated conveyor units are configured to move the deposited swathes inward, by increasing the speed of operation of the left and right hand conveyor units 24,26. Each conveyor unit 16, 18 and/or the mowing unit 6,8 may also be additionally displaced inward. In this way the depositing of the swathes produced by the lateral mowing units 6,8 are directed inwardly to produce a single swath 60″ of narrower width during turning.
[0054] As shown in
[0055] From reading the present disclosure, other modifications will be apparent to persons skilled in the art. Such modifications may involve other features which are already known in the field of mowers and component parts therefore and which may be used instead of or in addition to features already described herein.