Load Sensor for an Agricultural Baler
US-2016120129-A1 · May 5, 2016 · US
US11089734B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11089734-B2 |
| Application number | US-201715599424-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 18, 2017 |
| Priority date | May 18, 2016 |
| Publication date | Aug 17, 2021 |
| Grant date | Aug 17, 2021 |
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A rectangular baler including a bale chamber having a plurality of walls including a movable wall section, an actuator for exerting a pressure on the movable wall section, a plunger for compressing crop material, and a control system configured to control the plunger to perform cyclic plunger strokes such that in each stroke the plunger force (F) exerted by the plunger on the crop material increases to reach a maximum plunger force (Fmax) to compress a newly inserted slice of crop material. The control system includes a first module to measure, at consecutive moments during a plunger stroke, a plurality of first values for the plunger force exerted by the plunger and/or for the pressure (Pd) in the actuator; and a control module to control at least one baling setting influencing the compressing of the crop material in the bale chamber as a function of the plurality of first values.
Opening claim text (preview).
The invention claimed is: 1. A control system for a rectangular baler comprising a bale chamber delimited by a plurality of walls including a movable wall section, at least one actuator connected to and configured for exerting a pressure on the movable wall section, a plunger for compressing crop material in the bale chamber, the crop material comprising a newly inserted slice of crop material and a previously inserted slice of crop material, the control system for controlling the plunger to perform cyclic plunger strokes such that in each stroke a plunger force exerted by the plunger on the crop material increases to compress the crop material, the control system comprising: a first module configured to measure, during a plunger stroke at consecutive moments in time, a plurality of first values for at least one of pressure in the at least one actuator and the plunger force exerted by the plunger, the first module further configured to measure the plurality of first values during a portion of a plunger stroke cycle before the plunger force reaches a maximum during the plunger stroke cycle; and a controller configured to control at least one baling setting influencing compression of the crop material in the bale chamber as a function of the plurality of first values, the at least one baling setting comprising a set stationary pressure in the at least one actuator, the controller further configured to control the at least one baling setting to reduce energy consumed during a portion of the plunger stroke cycle in which the plunger has started compressing the crop material and in which the crop material starts moving in the bale chamber, the set stationary pressure in the at least one actuator being constant during a least a portion of time while the plunger is moving. 2. The control system of claim 1 , further comprising a second module configured to measure, at the consecutive moments in time, a plurality of second values for at least one of: the position of the plunger, the movement of a bale in the bale chamber, and the time; wherein the controller is further configured to control the at least one baling setting influencing the compression of the crop material in the bale chamber as a function of the plurality of second values. 3. The control system of claim 1 , wherein the at least one baling setting further comprises any one or more of the following settings: a driving speed of the baler, and a setting for controlling an expansion limiting device configured for limiting the expansion of crop material in the bale chamber. 4. The control system of claim 2 , wherein the controller is further configured to control, based on the plurality of first values and the plurality of second values, the at least one baling setting such that energy consumed in a phase of the plunger stroke cycle in which the plunger has started compressing at least one of the newly inserted slice of crop material and the previously inserted slice of crop material and in a phase of the plunger stroke cycle in which the previously inserted crop material starts moving in the bale chamber is limited. 5. The control system of claim 2 , wherein the controller is further configured to control the at least one baling setting such that the pressure in the at least one actuator in a position where the first values start to increase at a slower rate as a function of the second values, are controlled. 6. The control system of claim 1 , wherein the controller is further configured to control the at least one actuator within a single plunger stroke of the cyclic plunger strokes. 7. The control system of claim 1 , wherein the first module comprises a load measurement cell configured for measuring a load on the plunger. 8. The control system of claim 1 , wherein the second module comprises a distance measurement sensor configured for measuring at least one of a position of the plunger and a sensor for measuring an angular position of a crank arm of the plunger. 9. A control method for controlling compressing of crop material in a rectangular baler comprising a bale chamber delimited by a plurality of walls including a movable wall section, at least one actuator connected to and configured for exerting a pressure on the movable wall section, and a plunger for compressing crop material in the bale chamber, the method comprising: controlling the plunger to perform cyclic plunger strokes, such that in each stroke the plunger force exerted by the plunger on the crop material increases to compress the crop material; measuring, at consecutive moments during a plunger stroke, a plurality of first values for at least one of the plunger force exerted by the plunger and the pressure in the at least one actuator, the measuring performed during a portion of a plunger stroke cycle before the plunger force reaches a maximum during the plunger stroke cycle; and controlling at least one baling setting influencing compression of the crop material in the bale chamber as a function of the plurality of first values, the at least one baling setting comprising a set stationary pressure in the at least one actuator, the controlling further comprising controlling the at least one baling setting to reduce energy consumed during a portion of the plunger stroke cycle in which the plunger has started compressing a newly inserted slice of material and previously inserted crop material and in which the crop material starts moving in the bale chamber, the set stationary pressure in the at least one actuator being constant during a least a portion of time while the plunger is moving. 10. The control method of claim 9 , further comprising: registering, at the consecutive moments during the plunger stroke, a plurality of second values for at least one of the position of the plunger and for the movement of a bale in the bale chamber and time, wherein the controlling of the at least one baling setting is based on the plurality of first values and the plurality of second values. 11. The control method of claim 9 , wherein the at least one baling setting comprises any one or more of the following settings: a driving speed of the baler, and a setting for controlling an expansion limiting device configured for limiting the expansion of crop material in the bale chamber. 12. The control method of claim 10 , wherein the controlling of the at least one baling setting, based on the plurality of first values and the plurality of second values, further comprises controlling the at least one baling setting such that energy consumed in a first phase of the plunger stroke cycle when the plunger is compressing at least one of the newly inserted slice of crop material and the previously inserted slice of crop material and a second phase of the plunger stroke cycle when the previously inserted crop material starts moving in the bale chamber, is limited. 13. The control method of claim 9 , wherein the controlling of the at least one baling setting further comprises controlling the at least one baling setting such that the pressure in the actuator in a position where the rate in increase of the first values, as a function of the second values, starts to slow, is controlled. 14. The control method of claim 10 , wherein the controlling of the at least one baling setting based on the plurality of first values and the plurality of second values, further comprises controlling the at least one baling setting such that a measure for a surface area below a curve obtained when plotting the plurality of first values as a function of the plurality of second values, is limited. 15. The control system of claim 1 , wherein the controller is co
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