Patent classifications
A01B33/16
System for conducting an agricultural operation using an autonomous vehicle
The present invention provides a system for conducting agricultural operations in a field using one or more autonomous vehicles in which the agricultural operations may be optimized during run time. The system includes providing a mission plan for an autonomous vehicle, receiving progress updates from the vehicle as it conducts an agricultural operation according to the mission plan, and monitoring for event conditions which may be reported by the vehicle. Event conditions may include, for example, detection of an obstacle, or an oncoming vehicle, or a disablement of the vehicle. Upon receiving an event condition, the system may revise the mission plan to resolve the event condition while providing an optimization based on current agricultural conditions.
DISC BLADE ANGLE CONTROL SYSTEM FOR AN AGRICULTURAL IMPLEMENT
A disc blade angle control system for a tillage implement includes a disc blade angle adjustment assembly configured to adjust an angle of a disc blade of the tillage implement relative to a horizontal plane of the tillage implement. The disc blade is configured to engage soil and to break up a top layer of the soil.
DISC BLADE ANGLE CONTROL SYSTEM FOR AN AGRICULTURAL IMPLEMENT
A disc blade angle control system for a tillage implement includes a disc blade angle adjustment assembly configured to adjust an angle of a disc blade of the tillage implement relative to a horizontal plane of the tillage implement. The disc blade is configured to engage soil and to break up a top layer of the soil.
APPARATUS, SYSTEM AND METHOD FOR MONITORING SOIL CRITERIA DURING TILLAGE OPERATIONS AND CONTROL OF TILLAGE TOOLS
A tillage implement comprising a frame operably supporting tillage tools, and a soil monitoring system comprising instrumentation operably supported from the frame and disposed to detect soil criteria before, after, or before and after the soil is tilled by the tillage tools. The soil criteria detected is at least one of surface residue criteria, soil clod size criteria and soil shatter criteria.
Apparatus, system and method for monitoring soil criteria during tillage operations and control of tillage tools
A tillage implement comprising a frame operably supporting tillage tools, and a soil monitoring system comprising instrumentation operably supported from the frame and disposed to detect soil criteria before, after, or before and after the soil is tilled by the tillage tools. The soil criteria detected is at least one of surface residue criteria, soil clod size criteria, and soil shatter criteria.
Apparatus, system and method for monitoring soil criteria during tillage operations and control of tillage tools
A tillage implement comprising a frame operably supporting tillage tools, and a soil monitoring system comprising instrumentation operably supported from the frame and disposed to detect soil criteria before, after, or before and after the soil is tilled by the tillage tools. The soil criteria detected is at least one of surface residue criteria, soil clod size criteria, and soil shatter criteria.
DRUM STYLE ROTARY TILLER
A rotary tiller comprises a frame, a cylindrical drum rotatable relative to the frame, a plurality of tines extending from the cylindrical drum, a motor at least partially disposed within the cylindrical drum, wherein the motor is configured to rotate a motor output member, and a transmission at least partially disposed within the cylindrical drum and configured to engage the motor output member. The transmission is operable to drive rotational movement of the cylindrical drum.
DRUM STYLE ROTARY TILLER
A rotary tiller comprises a frame, a cylindrical drum rotatable relative to the frame, a plurality of tines extending from the cylindrical drum, a motor at least partially disposed within the cylindrical drum, wherein the motor is configured to rotate a motor output member, and a transmission at least partially disposed within the cylindrical drum and configured to engage the motor output member. The transmission is operable to drive rotational movement of the cylindrical drum.
Residue monitoring and residue-based control
An agricultural machine includes a set of ground engaging elements that perform a ground engaging operation. The agricultural machine includes a rearward sensor mounted to the agricultural machine to sense an area of ground behind the agricultural machine and generate a rearward sensor signal. The agricultural machine includes rearward zone generator logic that determines a first zone and a second zone, wherein the first zone and the second zone represent portions of the area of ground behind the agricultural machine. The agricultural machine includes rearward residue generator logic configured to receive the rearward sensor signal and determine a first residue metric indicative of the amount of residue in the first zone. The agricultural machine includes control logic that controls one or more aspects of the ground engaging operation on the area of ground based on the first residue metric.
SIDE TILT COUNTERACTING SYSTEM AND STEERING SYSTEM FOR AGRICULTURAL APPARATUSES
Orientation signals from a ground surface orientation sensor are received at a control system. The signals are indicative of a side tilt angle of a sideways sloped ground surface. Based on the signals the control system, the control system causes a side tilt counteracting mechanism to operate to counteract the sideways acting force acting an agricultural apparatus associated with the side tilt angle. A steerable wheel of an agricultural apparatus is pivotable about a steering axis, and an actuation system is operable to adjust a steering angle of the steerable wheel about the steering axis. The steering angle of the steerable wheel may produce a steering direction that counteracts the side force acting on the tillage apparatus.