Utilizing 3D Lidar, a large amount of information can be obtained, and multi-dimensional images of the target can be generated.
By adopting infrared cameras, the radar scanning path can be visualized.
A wide range of measurement samples are provided to assist students in completing experiments and enabling them to independently explore and conduct extension experiments.
The software is highly functional, capable of analyzing and measuring the distance, reflection intensity, etc. of the target object, as well as measuring the vertical resolution and horizontal resolution.
Understand the fundamental principles of Lidar imaging.
Perform 3D object recognition using the experimental setup.
Learn Time-of-Flight (TOF) measurement principles, including target position (distance) and relative distance between multiple objects.
Master various methods for measuring Lidar’s vertical angular resolution.
Measure the horizontal angular resolution of Lidar at different rotation speeds.
Evaluate Lidar target discrimination capability at varying distances.
Study the algorithms used for calculating target spatial coordinates in Lidar.
Observe the effects of different media on Lidar imaging performance.
NO. | Part Name | Main Parameter |
1 | Lidar Apparatus | Radar: Adjustable height range: up to 120mm Scanning window size (horizontal): 90mm Laser wavelength: 905nm |
2 | Measuring Assembly | Including the measuring plate, the fixed base and the ranging plate |
3 | Adjustable Slit and Base | With a width adjustable continuously from 0 to 100mm |
4 | Measuring Accessory | Samples with various shapes of diffuse reflection, high reflection and specular reflection. |
NO. | Part Name | Model | Qty. |
1 | Lidar Apparatus | BEM-5741 | 1 |
2 | Lidar Controller | BEM-5736 | 1 |
3 | Measuring Assembly | BEM-5744 | 1 |
4 | Adjustable Slit and Base | BEM-5745 | 1 |
5 | Measuring Accessory | BEM-5746 | 1 |
6 | Power cable | BC-105075 | 1 |
7 | USB cable | BC-105080 | 1 |
8 | M12 data connection cable | BC-105320 | 1 |
9 | Tape | SEM-5801 | 1 |
