Sensor signals and trained prediction models detect tire slip during excavation, then adjust engine speed and bucket lift to protect tires and keep digging.
Image-based ground sensing detects when a utility vehicle work tool contacts the surface, improving grading accuracy and operator visibility.
Pre-heated hydraulic fluid is pressure-limited during warm-up to heat the impact device without moving accumulator separators or damaging seals.
3D sensing lets a mobile passage control unit locate itself underground, enabling flexible safety area isolation without fixed installations.
Closing-force feedback adjusts winch tension during digging, keeping a stable residual pull across changing soil conditions.
Spatial and acoustic filtering let remote work machines detect and localize component noise issues for timely operator or autonomous response.
Real-time sensor and trajectory adjustment keeps construction machine perception effective when moving mechanisms block the visual field.
Continuous adjustment of torque and rotational velocity aligns resultant forces with cutting element axes, reducing wear from misaligned impact loads.
A vertical resonance member measures settled bed height in dredging vessels using tensile force compensation.
A large transport vessel collects and moves dredged soil to reclamation sites using a buffering system.
A movable soil gathering blade deploys through a rear opening to scoop earth from beneath the bucket floor.
Excavator drive signals determine bucket weight before dumping, reducing cycle time and costs.
A submersible dredging assembly uses land-based winches and GPS feedback to maintain precise positioning during sediment removal operations.
A hydraulic ripper tool with a concave blade shears metal walls to enable rapid vertical cuts.
Interlocking undulating plastic sections retain soil without damaging lawns, eliminating the labor and mess associated with traditional tarp or plywood methods.
A controller monitors linkage angles to notify operators of optimal material penetration ranges during excavation.
A motion-control algorithm translates commands to link movements using sensor data for precise end-effector positioning.