The global Pulse based Scanning market size was USD 4.45 Billion in 2021 and is expected to register a revenue CAGR of 7.7% over the forecast period, according to the latest report by Reports and Data.
Rapid growth of IN GNSS applications is a key factor driving revenue growth of the market. Other factors expected to drive the revenue growth of the market are increasing adoption of Software as a Solution (SaaS) and increasing use of LiDAR. Pulse based Scanning is a type of 3D scanning that uses a tripod-mounted laser scanner to scan large objects or environments. This method is commonly used in the fields of forestry, surveying and construction.
Often referred to as long range laser scanning, TLS requires the scanner to be placed in a fixed position. Unlike other laser scanners, it can be mounted on a vehicle or used as a handheld device to capture data from different angles. TLS scanning is slower and easier to use, but more accurate than mobile scanning. In the last 30 years of scanning equipment development, laser scanning has been integrated into surveying professionals. Currently, one of the most efficient ways to collect spatial data and create 3D models is laser scanning technology. The efficiency of spatial data collection makes Pulse based Scanning superior to traditional geodetic approaches. It is increasingly used in many related fields such as surveying, civil engineering, economics, architecture and archeology.
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TLS (Terrestrial Laser Scanning) technology indeed offers numerous benefits in the construction industry, as you have outlined. Here are some key advantages of TLS in construction:
Quick and Affordable Documentation: TLS enables the efficient and cost-effective documentation of the entire construction project. By capturing high-resolution 3D scans, it provides a comprehensive record of the construction process from start to finish.
Accurate Dimensional Checking: Complex components, such as free-form shape elements, can be accurately measured and checked using TLS. The detailed point cloud data obtained from scans allows for precise dimensional analysis and verification.
Deformation Processes and Countermeasure Monitoring: TLS can document deformation processes over time, providing valuable insights into structural changes and deformations. It also enables the monitoring of countermeasures implemented to address any issues or deviations.
Project Coordination and Collaboration: TLS aids in improved multi-trade project collaboration by preventing conflicts between various systems. By capturing the as-built conditions, including plumbing, ventilation, electrical systems, and more, potential clashes can be identified and resolved before they become costly issues.
Seamless Capture and Monitoring: TLS facilitates seamless capture and monitoring of construction progress. Regular scans at different stages of the project help track milestones, identify deviations, and ensure work is being carried out according to specifications.
Final Building Inspections: The comprehensive documentation provided by TLS can be particularly useful during final building inspections. It allows inspectors to review the entire construction process and verify that the final structure meets the required standards and regulations.
Remote Collaboration: TLS data can be easily shared between project stakeholders, enabling remote cooperation and coordination. This is especially beneficial when working with geographically dispersed teams or when involving external consultants or clients.
Problem Identification and Documentation: TLS assists in quickly identifying problems and documenting their location within the construction project. By visualizing and analyzing the point cloud data, project teams can efficiently address issues and avoid costly mistakes.
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Key Regional Markets Covered in the Report:
· North America (U.S., Canada, Mexico)
· Europe (U.K., Italy, Germany, Spain, France, BENELUX, Rest of Europe)
· Asia Pacific (India, Japan, China, South Korea, Australia, Rest of Asia Pacific)
· Latin America (Chile, Brazil, Argentina, Rest of Latin America)
· The Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of Middle East & Africa)
Top Companies Operating in the Global Pulse based Scanning Market:
Hexagon Geosystems, Trimble, Teledyne Technologies, Faro Technologies, Riegl Laser Measurement Systems, Creaform (Ametek), 3D Digital Corporation, Maptek, Carl Zeiss Optotechnik, Basic Software Inc.
Some Key Highlights from the Report
· The Asia-Pacific market accounted for the largest share of sales in 2021. Increasing demand in the region's thriving construction industry is a key driver of growth. Strong demand for terrestrial laser scanners in China, Australia, Malaysia, and the rapidly growing construction industry in these countries is driving the Asia-Pacific market for these devices. Besides being home to many major market players, the Asia-Pacific region has also shown a surge in demand for terrestrial 3D laser scanners, which companies will capitalize on to secure demand in the near future. There is a particularly strong demand for terrestrial solid-state laser scanners from India, Japan and Australia, and a large demand for terrestrial diode laser scanners from China.
· In May 2021, Faro technologies invested in present4D GmbH, a specialist solution provider for virtual reality. The partnership brings together software across a broad spectrum of market-leading products.
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Overall, TLS technology in construction offers significant advantages in terms of documentation, dimensional checking, coordination, collaboration, milestone tracking, problem identification, and remote cooperation. It enhances project efficiency, reduces rework, and supports better decision-making throughout the construction lifecycle.
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