LiDAR, a radar system that detects the position, speed, and other characteristic quantities of a target by emitting a laser beam, is mainly composed of transmitting system, receiving system, information processing and other parts. LiDAR has the characteristics of high accuracy, long range, strong anti-interference, independent of ambient light, etc. It can effectively sense the environmental situation both day and night, thus completely liberating many devices that originally relied highly on human monitoring and control.
The 1550 nm wavelength LiDAR can operate at 10 times or even 40 times the power compared to the 905 nm wavelength. This results in higher point cloud resolution, longer detection range, and greater penetration of complex environments. To obtain better mapping for clear navigation.
High vessel in the lake causes ship accidents. LiDAR detects the vessel within 2 km at the farthest, the position and distance of the vessel can be known, and the alarm information can be issued in time to effectively avoid the collision between the ultra-high vessel and the bridge.
Cameras have poor vision in backlight or complex light conditions, millimetre-wave radar has poor recognition of static objects, and ultrasonic radar has limited measurement distance and is susceptible to bad weather. LiDAR can detect most objects (including static objects), has a relatively longer detection distance (0-300m), high accuracy (5cm), and can build 3D models of the environment with good real-time performance, making it the core sensor for advancing smart driving to L3 level and beyond.
The vehicle capture rate of the camera is as high as 99%, and the license plate recognition rate is over 98%. It can be used to detect complex road conditions, such as large traffic flow, multi-vehicle parallelism, and cross-track driving.
LiDAR’s point cloud data acquisition system, independently developed by LiDAR for geographic information collection and fast acquisition of 3D environment modelling, responds to the request of forestry investigation, topographic mapping, smart city, power inspection, emergency disaster investigation, and other surveying and mapping applications.
LSLIDAR solutions use the latest tech to make transport autonomous and better. It provides the necessary device solutions for highways, seaways, and railways transportation like ADAS technology used in cars for features such as dynamic cruise control, Pedestrian crash avoidance mitigation (PCAM), and lane change assist.
LSLIDAR offers very promising quality products with the latest tech at a cost-effective price with a mass-production perk. Contact us today!
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