Automatic volume-based frame weight distribution system and method
US-2023345859-A1 · Nov 2, 2023 · US
US12457920B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12457920-B2 |
| Application number | US-202318122195-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 16, 2023 |
| Priority date | Jul 29, 2022 |
| Publication date | Nov 4, 2025 |
| Grant date | Nov 4, 2025 |
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A system for distributing commodity across an agricultural machine includes a product storage system, including a central commodity tank and a plurality of intermediate commodity tanks positioned at various locations laterally across a frame. The system includes a movable manifold coupled to the one central commodity tank, and the manifold is adjustable by a controller to control volume of commodity distributed to the intermediate commodity tanks. Each intermediate commodity tank distributes commodity to a separate plurality of row units, which distribute commodity to the soil. Operatively coupled to the controller are one or more sensors, which measure product characteristics, such as volume of commodity in the intermediate tanks, and operational characteristics, such as downforce of the row units. The controller is configured to adjust the manifold to control distribution of commodity across the intermediate tanks based on measured values from the sensors and desired values stored in the controller.
Opening claim text (preview).
The invention claimed is: 1 . A system for distributing commodity for an agricultural machine comprising: a frame including: a center section, a first wing section pivotably coupled to the center section, and a second wing section pivotably coupled to the center section and positioned opposite the first wing section; a product storage system including: (i) at least one central commodity tank configured to store commodity usable in an operation of the agricultural machine; (ii) a first intermediate tank positioned on the first wing section of the frame and configured to receive commodity from the at least one central commodity tank; and (iii) a second intermediate tank positioned on the second wing section of the frame and configured to receive commodity from the at least one central commodity tank; a manifold coupled to the at least one central commodity tank, wherein the manifold is movable to control a volume of commodity distributed to the first intermediate tank and the second intermediate tank; a first group of row units configured to receive commodity from the first intermediate tank and to distribute the commodity to terrain traversed by the agricultural machine; a second group of row units configured to receive commodity from the second intermediate tank and to distribute the commodity to the terrain traversed by the agricultural machine; a first plurality of sensors configured to measure the downforce of the first group of row units; a second plurality of sensors configured to measure the downforce of the second group of row units; and a controller operatively coupled to the first plurality of sensors and the second plurality of sensors and configured to receive signals therefrom indicative of the measured downforce of the first group of row units and the second group of row units; wherein the controller is operatively coupled to the manifold and configured to move the manifold in response to the measured downforce of the first group of row units and the second group of row units. 2 . The system of claim 1 , wherein the controller is configured to compare the measured downforce of the first group of row units to a desired downforce of the first group of row; and wherein in response to determining that the measured downforce of the first group of row units is less than the desired downforce of the first group of row units, the controller is configured to move the manifold such that additional commodity is distributed to the first intermediate tank. 3 . The system of claim 2 , further comprising an additional sensor operatively coupled to the controller and configured to measure a volume of commodity in the first intermediate tank; wherein the additional sensor is configured to send signals to the controller indicative of the volume of commodity in the first intermediate tank; wherein the controller is configured to compare the volume of commodity in the first intermediate tank to a predetermined volume maximum of the first intermediate tank; and wherein in response to determining that the measured downforce of the first group of row units is less than the desired downforce of the first group of row units, the controller is moves the manifold such that additional commodity is distributed to the first intermediate tank only if the volume of commodity in the first intermediate tank is less than the predetermined volume maximum. 4 . The system of claim 1 , wherein the at least one central commodity tank is not positioned on the first wing section or the second wing section of the frame. 5 . The system of claim 1 , wherein the at least one central commodity tank is not positioned on the frame. 6 . The system of claim 1 , further comprising: a first main supply hose coupled at a first end to the at least one central commodity tank and at a second end to the first intermediate tank; and a second main supply hose coupled at a first end to the at least one central commodity tank and at a second end to the second intermediate tank. 7 . The system of claim 6 , further comprising: a first secondary supply hose coupled at a first end to the first intermediate tank and at a second end to a first row unit of the first group of row units; and a second secondary supply hose coupled at a first end to the first intermediate tank and at a second end to a second row unit of the first group of row units. 8 . The system of claim 1 , wherein the first intermediate tank and the second intermediate tank are included in a plurality of intermediate tanks, at least two of which are coupled together to facilitate transfer of commodity therebetween. 9 . The system of claim 1 , further comprising: a first actuator coupled to the center section and to the first wing section; a second actuator coupled to the center section and to the second wing section; wherein the controller is configured to adjust at least one of the first actuator and the second actuator to redistribute weight across the frame. 10 . The system of claim 9 , wherein the controller is configured to adjust at least one of the first actuator and the second actuator to redistribute weight across the frame based on the measured downforce of the first group of row units and the second group of row units. 11 . The system of claim 9 , wherein, based on the measured downforce of the first group of row units and the second group of row units, the controller is configured to adjust at least one of the first actuator and the second actuator to a predetermined limit to redistribute weight across the frame prior to moving the manifold. 12 . The system of claim 9 , wherein, based on the measured downforce of the first group of row units and the second group of row units, the controller is configured to move the manifold to cause commodity to be distributed to at least one of the first intermediate tank and the second intermediate tank up to a predetermined limit prior to adjusting the at least one of the first actuator and the second actuator. 13 . A system for distributing commodity for an agricultural machine comprising: a frame extending laterally across a first side and a second side; a product storage system including: (i) at least one central commodity tank configured to store commodity usable in an operation of the agricultural machine; (ii) a first intermediate tank positioned on the first side of the frame and configured to receive commodity from the at least one central commodity tank; and (iii) a second intermediate tank positioned on the second side of the frame and configured to receive commodity from the at least one central commodity tank; a manifold coupled to the at least one central commodity tank, wherein the manifold is movable between at least two positions to control a volume of commodity distributed to the first intermediate tank and the second intermediate tank; a first group of row units configured to receive commodity from the first intermediate tank and to distribute the commodity to terrain traversed by the agricultural machine; a second group of row units configured to receive commodity from the second intermediate tank and to distribute the commodity to the terrain traversed by the agricultural machine; a first sensor configured to measure the volume of commodity in the first intermediate tank; and a second sensor configured to measure the volume of commodity in the second intermediate tank; a controller operatively coupled to the first sensor and the second sensor and configured to receive signals therefrom indicative of the volume of commodity in the first intermediate tank and the volume of commodity in the second intermediate tank, respectiv
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