Polski

A New RIEGL Laser Scanning Solution for Drone Data Acquisition

164
2023-12-01 15:01:23
Zobacz tłumaczenie

With its latest developments, RIEGL once again emphasizes its pioneering role as a supplier of high-performance LiDAR sensors and integrated systems with UAS. The continuous trend in the drone system industry requires measurement level laser scanners that match the integrated performance of compact multi rotor and high-speed vertical takeoff and landing or fixed wing drone platforms.

RIEGL has recognized this trend and adjusted its product range in this direction. The typical accuracy/precision and multi-target capability of RIEGL, combined with excellent measurement range, wide field of view, extremely high laser pulse repetition rate, and fastest production line speed, are the foundation of user success. These key attributes allow the drone system to fly at the maximum possible operating altitude, thereby achieving the highest possible area coverage. The on-site time and collection flight time are greatly reduced, thereby reducing overall costs and improving the safety of drone system applications. At the same time, more accurate point cloud data can be obtained and comprehensive coverage can be achieved. This increases the flexibility of the platform used for the project, and most importantly, improves efficiency.

The new RIEGL VUX-18024 provides a wide field of view of 75 degrees and an extremely high pulse repetition rate of up to 2.4 MHz. These features, combined with a scanning speed of up to 800 lines per second, make it highly suitable for high-speed measurement tasks and applications that require optimal line and point distribution. Typical applications include surveying and monitoring of key infrastructure such as power lines, rails, pipelines, and runways. The RIEGL VUX-18024 provides mechanical and electrical interfaces for IMU/GNSS integration, as well as up to 5 external cameras, reflecting the overall dimensions of the VUX-160. To achieve smooth and direct data storage, an internal SSD memory with 2 TByte storage capacity and a removable CFast storage card can be used. This sensor further supplements RIEGL's mature VUX-12023, VUX-160 type 23, and VUX-24024 series, and can be used as an independent sensor or in various fully integrated laser scanning system configurations, equipped with IMU/GNSS systems and optional cameras.

RIEGL VUX-24024 is a new enhanced version of the mature RIEGL VUX-240, which now offers higher pulse repetition rates and faster scanning speeds to further improve on-site performance and workflow efficiency. This sensor has a wide field of view of 75 degrees and an extremely fast data acquisition rate of up to 2.4 MHz, achieving a measurement rate of up to 2 million measurements per second, making it very suitable for high-density applications such as power line, track, and pipeline detection. Its scanning speed of up to 600 lines per second not only allows for operations on fast flying drones, but also allows for the operation of small helicopters, rotorcraft, and other manned aircraft at altitudes of up to 4700 feet.

The mechanical and electrical interfaces allow for optional integration of IMU/GNSS systems and up to 4 cameras. The data can be stored in the internal 2 TByte SSD memory, or can be stored using a removable CFAST storage card to transfer the data to a PC.
In addition to independent versions of the RIEGL miniVUX-1UAV and miniVUX-3UAV LiDAR sensors, RIEGL also offers system solutions for IMU/GNSS systems and cameras.

Now, RIEGL provides RiLOC, an integrated component used to supplement RIEGL's kinematic LiDAR system for locating and orienting LiDAR data in a reference coordinate system. This fully integrated subsystem has a compact and lightweight appearance, directly connected to the casing of the miniVUX-1UAV or miniVUX-3UAV, and the total weight of the system is only 1.75 kg. RiLOC itself consists of one or two GNSS receivers, an inertial measurement unit, and a data acquisition controller with accompanying software. It utilizes tight coupling to handle inertia, GNSS, and LiDAR data, providing a new entry-level choice for RIEGL's cost-effective UAS LiDAR system solution.

Source: Laser Net

Powiązane rekomendacje
  • Munich Shanghai Light Expo and Light Academic Publishing Center further strengthen cooperation

    In November 2024, based on the mutual trust and cooperation over the past years, the Munich Shanghai Optical Expo and the Light Academic Publishing Center of the Changchun Institute of Optics, Precision Mechanics and Physics, Chinese Academy of Sciences (hereinafter referred to as the "Light Center") reached a consensus on further strategic development as they ushered in the year of disruptive sci...

    2024-12-05
    Zobacz tłumaczenie
  • Dr. Gu Bo, a renowned expert in the laser industry, has been elected as a member of the Canadian Academy of Engineering

    On May 7, 2024, the official website of the Canadian Academy of Engineering announced that Dr. Gu Bo, a renowned expert in the laser industry, has been elected as a member of the Canadian Academy of Engineering.Dr. Gu BoAcademician of the Canadian Academy of EngineeringFounder/President of Bose Photonics, USADr. Gu Bo is recognized as a pioneer and academic leader in the global field of fiber lase...

    2024-05-07
    Zobacz tłumaczenie
  • Shanghai University of Technology publishes the latest Nature paper

    With the increasing demand for human data, the requirements for data storage methods are also increasing. Optical Data Storage (ODS) is a light based storage method commonly used in DVDs, which is low-cost and very durable. But ODS usually stores data in a single layer, and the amount of data that can be stored is limited. Gu Min, academician of Shanghai University of Technology, Wen Jing, and Rua...

    2024-02-26
    Zobacz tłumaczenie
  • Four ways researchers harness the power of lasers to achieve manufacturing excellence

    The use of industrial lasers has become a viable option for many manufacturing processes. It enables workers to simplify steps, improve precision and benefit from the benefits associated with output. Decision makers will get the best results when they consider the specific possibilities of using lasers in manufacturing. Here are some options.Improved cleaning and texturing methodsMany man...

    2023-08-04
    Zobacz tłumaczenie
  • Shanghai Optics and Machinery Institute has made progress in the development of picosecond reflectors based on composite materials

    Recently, the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made progress in the research of picosecond reflectors based on composite materials. The relevant research results are titled "Hybrid material based mirror coatings for picosecond laser applications" and published in Optics and Laser Techn...

    2024-06-12
    Zobacz tłumaczenie