Ελληνικά

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

276
2025-02-11 15:58:55
Δείτε τη μετάφραση

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

Σχετικές προτάσεις
  • Hymson acquires Leister Laser's plastic welding business, further advancing its globalization strategy

    On February 27th, Hymson and Leister Group successfully signed a strategic acquisition agreement, announcing the wholly-owned acquisition of the laser plastic welding business of Leister Group.On the same day, the two parties held a grand signing ceremony in Switzerland, which was attended by Mr. Zhao Shengyu, Chairman and General Manager of Hymson, Mr. Chen Jiewei, Director and CEO of Hymson, Mr....

    03-11
    Δείτε τη μετάφραση
  • Unsupervised physical neural network empowers stacked imaging denoising algorithm

    In view of the reconstruction problem of stack imaging technology in noisy environment, Lin Nan's team from Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, proposed an innovative method ProPtyNet based on unsupervised physical neural network, which is expected to be applied to chip CD measurement and defect detection. The article was published in Optics and lasers in engin...

    03-25
    Δείτε τη μετάφραση
  • The Asia Photonics Expo will be held in Singapore from February 26th to 28th, 2025

    The Asia Photonics Expo (APE), as an internationally leading comprehensive brand promotion and business negotiation platform for optoelectronics, will be grandly held from February 26 to 28, 2025 at the L1 exhibition hall of the Sands Expo&Convention Centre in Singapore. As the top event in the field of optoelectronics, APE Asia Optoelectronics Expo will focus on cutting-edge innovative techno...

    01-03
    Δείτε τη μετάφραση
  • The new progress of deep ultraviolet laser technology is expected to change countless applications in science and industry

    Researchers have developed a 60 milliwatt solid-state DUV laser with a wavelength of 193 nanometers using LBO crystals, setting a new benchmark for efficiency values.In the fields of science and technology, utilizing coherent light sources in deep ultraviolet (DUV) regions is of great significance for various applications such as lithography, defect detection, metrology, and spectroscopy. Traditio...

    2024-04-10
    Δείτε τη μετάφραση
  • Researchers have discovered new multiphoton effects in quantum interference of light

    An international research team from Leibniz University in Hanover and Strathclyde University in Glasgow overturned the previous hypothesis about the influence of multiphoton components in the thermal field and the interference effect of parameterized single photons. The journal Physical Review Letters published the team's research."We have demonstrated through experiments that the interference eff...

    2024-01-24
    Δείτε τη μετάφραση