A control system navigates autonomous utility vehicles through narrow transition areas using dynamic map-based routing.
Dynamic control unit adjusts lateral conveyor speed using vehicle speed sensors to prevent blockages during high-throughput harvesting operations.
Driver assistance system generates key performance indicators from operating parameters for tractor operators.
A co-planar moisture sensor uses a guard electrode to isolate the sense current from parasitic capacitive effects.
Cup-shaped flywheel on main shaft absorbs torsional vibrations from crank drive irregularities, reducing installation space requirements.
A control device stores implement position and executes a mapping travel to enable automated return for reconnection.
A lawn mower robot detects boundary wire signals to determine its position relative to the operation region.
Pendulum-mounted asymmetric mulching tool balances center of mass to reduce tilting moments, preventing deformation while lowering material costs.
A pivotable distribution hood on a crop residue spreader creates an exit gap that prevents binding from unchopped straw.
A unitary crop ramp and belt support component guides harvested material while protecting the conveyor belt from damage.
A non-contact sensor system monitors reel distance relative to the cutter bar assembly in agricultural headers.
Direct hitch attachment to the pivotable rear axle reduces chassis stress and maintains drawbar stability on uneven terrain.
Automatic travel management section determines forbiddance of automatic travel based on machine body status information.
Segmented spare parts container with fixing device organizes wear components to eliminate search time and reduce maintenance downtime.
Segmented herringbone ribs on conditioning rolls redistribute material toward the center, resolving uneven windrow accumulation from continuous spiral designs.
Processor aligns as-planted and as-harvested stalk sensor data to correct guess row harvesting errors.
A reversible shredding blade uses four laterally laminated elements with alternating sloped ends to cut and shred dense vegetation.
Segmented sensors determine target height and inclination for the harvester header, resolving adaptability versus complexity trade-offs.
A calculating means generates a scaled fill level based on an operator-defined reference point for display.
A telescopic ground height gauge assembly uses interchangeable arm lengths to maintain optimal rotational angles during header elevation changes.
Segmented inclined surfaces divert grain flow toward specific sensor locations, enabling smaller sensors to detect material across wide harvester areas.