Patent classifications
A01D41/141
SYSTEMS AND METHODS FOR PREDICTIVE END DIVIDER CONTROL
A map is obtained by an agricultural system. The map maps values of a characteristic to different geographic locations in a field. A control system generates a control signal to control operation of one or more end dividers on an agricultural harvester based on the map.
Systems and methods for limiting reel adjustment in an agricultural header
An agricultural system includes a frame, a cutter bar assembly configured to move relative to the frame during an operation of the agricultural system, a reel assembly configured to guide crops to the cutter bar assembly during the operation of the agricultural system, and a controller. The controller is configured to receive feedback indicative of a profile of the cutter bar assembly, set a position boundary of the reel assembly based on the feedback, and block movement of the reel assembly to a position beyond the position boundary of the reel assembly.
Harvesting header multi-sensor height control
Method and apparatus for controlling the height of a header for use with an agricultural harvester. The header height is controlled by receiving orientation values from a first set of sensors representing orientation of respective support arms of the header, receiving height values from a second set of sensors representing height of the respective support arms with respect to ground, combining the height values and orientation values for each support arm to create a respective multi-sensor value, and controlling the position of the header with respect to the agricultural harvester responsive the multi-sensor value.
Crop moisture map generation and control system
One or more information maps are obtained by an agricultural work machine. The one or more information maps map one or more agricultural characteristic values at different geographic locations of a field. An in-situ sensor on the agricultural work machine senses an agricultural characteristic as the agricultural work machine moves through the field. A predictive map generator generates a predictive map that predicts a predictive agricultural characteristic at different locations in the field based on a relationship between the values in the one or more information maps and the agricultural characteristic sensed by the in-situ sensor. The predictive map can be output and used in automated machine control.
Method for measuring combine header center of gravity and mass
An agricultural combine having a chassis, an intermediate member connected to the chassis, a first actuator connecting the chassis to the intermediate member, a first gauge configured to measure a first force generated by the first actuator, a header movably connected to the intermediate member, a second actuator connecting the header to the intermediate member, a second gauge configured to measure a second force generated by the second actuator, and a processing unit operatively connected to the first gauge and to the second gauge and comprising a processor and a memory, the memory storing computer readable instructions that, when executed by the processor, are configured to evaluate the first force and the second force to determine a position of a center of gravity of the header relative to the chassis. A method for determining the position of the center of gravity and weight of the header are also provided.
METHOD AND SYSTEM FOR OPTICAL YIELD MEASUREMENT OF A STANDING CROP IN A FIELD
An data processor is configured to identify the component pixels of a harvestable plant component within an obtained image data of plant pixels of the one or more target plants. An edge, boundary or outline of the component pixels is determined. The data processor is configured to detect a size of the harvestable plant component based on the determined edge, boundary or outline of the identified component pixels, along with an adjustment based on analysis of any exposed portions of the harvestable plant component. A user interface is configured to provide a yield indicator based on the detected size of the harvestable plant component.
AGRICULTURAL HARVESTING MACHINE CUTTER HEIGHT CONTROL
A method of controlling an agricultural harvesting machine having a harvesting device configured to engage and cut crop on a field. The method includes receiving an indication of field topography in a first area of the field prior to the first area being harvested, controlling a position of the harvesting device to harvest the crop in the first area based on the indication of field topography in the first area, receiving in-situ data from the first area of the field after the first area is harvested by the harvesting device, receiving an indication of field topography in a second area of the field prior to the second area being harvested, and controlling the position of the harvesting device to harvest the crop in the second area based on the in-situ data and the indication of field topography in the second area.
METHOD AND APPARATUS FOR DETERMINING AND MAPPING CROP HEIGHT
A method for mapping a height of a crop in a field divided into a plurality of areas includes determining a height of a cutting bar of an agricultural machine and receiving data from a crop height sensor. The height of crops sensed by the crop height sensor is determined based on the height of the cutting bar and data from the crop height sensor. The crop height is then associated with one of a plurality of areas of the field based on a location of the crop height sensor. In one embodiment, the height of a reel of the agricultural machine is also used in determining the height of crops. The crop height data is used to generate a field map that is used to generate a field treatment plan.
AUTOMATED HEADER FLOATATION ADJUSTMENT SYSTEM FOR AN AGRICULTURAL MACHINE
An agricultural machine includes a controller disposed in communication with a implement linkage system, an output, and an input. The controller is operable to identify a selected work implement from a plurality of different work implements. A desired operating condition is then solicited from an operator via the output. A selection command is received from the operator via the input indicating which of a float operating condition and a fixed height operating condition is the desired operating condition. The controller may then automatically determine a recommended operating setting for the implement linkage system for the selected work implement and the desired operating condition and notify the operator of the recommended operating setting for the implement linkage system for the selected work implement and the desired operating condition via the output.
WINDROWER HEADER FLOATATION SYSTEM HAVING ASSISTED DOWNFORCE CONTROL
An agricultural machine includes a float cylinder interconnecting a header linkage system and a frame. A rod side accumulator is in fluid communication with a rod side fluid port of the float cylinder. A float control valve is selectively controllable between an open position allowing fluid communication between a pressure source and the rod side accumulator, and a closed position blocking fluid communication between the pressure source and the rod side accumulator. A downforce accumulator is in fluid communication with a piston side fluid port of the float cylinder. A downforce control valve is selectively controllable between an open position allowing fluid communication between the pressure source and the downforce accumulator, and a closed position blocking fluid communication between the pressure source and the downforce accumulator.