Français

New LiDAR can 'see' faces from hundreds of meters away

278
2025-02-11 15:58:55
Voir la traduction

At a distance of 325 meters, the human eye may only be able to distinguish between a person's head and body, making it difficult to discern any other differences. But a research team including Heriot Watt University in the UK and Massachusetts Institute of Technology in the US has developed a new type of LiDAR scanner that can perform detailed analysis of a person's face from such a distance and create a 3D model of the face. This LiDAR can even capture ridges and indentations as small as 1 millimeter.

 



The relevant paper was published in the latest issue of the journal Optics. The team has designed a single photon time-of-flight lidar system. The system emits laser pulses, which reflect back to the device after colliding with objects. Lidar can determine the shape of an object by measuring the time required for each pulse to travel back and forth. The system is capable of obtaining high-resolution 3D images of objects or scenes up to a distance of 1 kilometer. Even in harsh environments or when objects are obscured by leaves or camouflage nets, it can achieve precise imaging, greatly improving security monitoring and remote sensing capabilities.

In order to achieve improved resolution, the team carefully calibrated and adjusted different components, such as the tiny parts inside the device used to guide laser pulses. In order to enable the device to distinguish individual photons, the team used a light detection sensor based on extremely fine superconducting wires, which is not commonly used in LiDAR. In addition, it is necessary to filter out sunlight that may enter the detector and reduce image quality. Tests have shown that the system captured a 3D image of a team member's face under 45 meter and 325 meter daylight conditions, distinguishing features as small as 1 millimeter and increasing depth resolution by approximately 10 times compared to their previous records. On a smaller scale, they captured images of Lego figurines from 32 meters away.

In another test, they filmed a communication tower 1 kilometer away. The excellent depth resolution of this system means that it is particularly suitable for imaging objects in cluttered backgrounds, which is a challenge for digital cameras. The team said that creating a detailed 3D map of the surrounding environment is also crucial for autonomous vehicle and even some robots.

Source: laserfair

Recommandations associées
  • Measurement of spectral line intensity of NO2 near 6.2 microns using a quantum cascade laser spectrometer

    Recently, a joint research team from the Key Laboratory of Optoelectronic Information Acquisition and Processing of Anhui University, the Laboratory of Laser Spectroscopy and Sensing of Anhui University, and Ningbo Haier Xin Optoelectronic Technology Co., Ltd. published a paper titled "Measures of line strengths for NO2 near 6.2" μ Research paper on using a quantum cascade laser spectrometer.Re...

    2024-01-02
    Voir la traduction
  • Luxium Solutions completes strategic acquisition of Inrad Optics, a leading optical materials company

    Recently, Luxium Solutions, a high-performance crystal material supplier, announced the successful completion of its strategic acquisition of Inrad Optics, a leading optical materials company. This milestone transaction not only greatly enriches Luxium's innovative product matrix, but also injects valuable resources, operational wisdom, and capital drive into Inrad Optics. Both parties will work t...

    2024-07-20
    Voir la traduction
  • Tiedra Famaceutica uses Macsa ID's SPA2 CB laser marking system

    Tiedra Famaceutica was founded by members of the Tiedra family in 2003 and is a manufacturer of contact lenses, health and ophthalmic products, as well as diagnostic instruments used in optometry and ophthalmic clinics.Before installing the SPA2 CB laser model for Macsa id, Tiedra used a pantograph, which is a quadrilateral system composed of hinged rods. This manual process provides limited marki...

    2023-12-14
    Voir la traduction
  • The researchers expect the EUV lithography market to grow from $9.4 billion in 2023 to $25.3 billion in 2028

    The researchers estimate the period from 2023 to 2028. EUV lithography will address the limitations of traditional optical lithography, which has reached its physical limits in terms of resolution. The shorter wavelength of EUV light allows for the creation of smaller features and tighter patterns on silicon wafers, enabling the manufacture of advanced microchips with greater transistor densities....

    2023-08-04
    Voir la traduction
  • An advanced laser processing laboratory for semiconductor materials and an all solid-state advanced laser research center will be established here

    On October 15th, the Laipu Technology National Headquarters and Integrated Circuit Equipment R&D and Manufacturing Base project successfully held a groundbreaking ceremony in the Chengdu High tech Zone.Project Business CardTotal project investment:1.66 billion yuanProject area:Covering an area of 39 acres, with a construction area of 65000 square metersProject Planning:Construction will begin...

    2023-10-18
    Voir la traduction