Hybrid MIMO radar and beam steering enable accurate low-cost 3D stockpile volume measurement on irregular surfaces in dusty environments.
A hybrid MIMO radar and beam-steering phased array enables accurate 3D stockpile measurement on uneven, dusty surfaces at low cost.
Real-time gas density and corrected expansion rates estimate actual tank volume, helping adjust hydrogen filling speed to avoid overheating.
A movable membrane separates gases of different densities, creating a flat interface for precise gas volume measurement in storage tanks.
A water-only pump stays isolated from the strong-base carbon dioxide absorbent, reducing deposition and supporting accurate residual gas volume measurement.
Separating pressurization water from the carbon dioxide absorbent protects the pump while enabling accurate residual gas volume measurement.
Lidar and laser sensors detect container fullness levels to replace manual monitoring, reducing sortation bottlenecks.
A laser measurement device acquires internal point cloud data to calculate oil tank volume through multi-segment fitting.
A sensor apparatus measures air and atmospheric pressure to calculate liquid depth in a drum without direct contact.
A pressure sensor measures hydrostatic changes to calculate liquid volume in containers without manual density input.
A volume determination system calculates product levels in segmented holding tanks using pressure measurements from vehicle suspension assemblies.
A tire pressure monitoring unit selects a low-pressure probability threshold based on the detected tire type to improve detection accuracy.
Segmented counterweight segments distribute weight along the halyard to prevent flag fraying and reduce stress on the fabric hem.
A variable scale system with an adjustable shaft and visual indicators measures container fill levels.
A pool device injects a chemical tracer into water to calculate volume using sensor measurements.
A laser measurement apparatus uses an external optic deflector to scan container interiors without inserting electronics.
Integrated overhead bin sensor detects lithium battery outgassing via VOC analysis to prevent in-flight fire propagation.