VeriDaaS was born out of opportunity, evolution, and experience. Our roots are deep in the Geospatial community and combine aerospace, engineering, networking, aviation, and other backgrounds in a team hungry to find a better way to meet emerging opportunities affecting the industry and those who work within it.
The VeriDaaS team recognized that, although existing Geospatial providers have steadily evolved to meet the needs of current challenges, the market has been slow to adopt breakthrough technologies that have long-lasting transformational impact. VeriDaaS understood that the lack of incentive to disrupt existing methodologies were not only impacting existing customers, they were also constraining the development of new markets, such as 5G and autonomous vehicles, as well as reducing access to new customers in traditional markets.
From this realization, VeriDaaS was born, focused on combining the best in Geiger-Mode LiDAR, an unmatched acquisition fleet, and a massive IT infrastructure to process and serve data at speeds that make data truly usable for all. By deploying these market-first technologies, VeriDaaS has driven down the cost of the data while expanding accessibility, functionality, and data effectiveness … an opportunity stitched together by our team, well-versed in challenges facing the Geospatial market and aware of its need to undergo a radical evolution.
Contact Details:
VeriDaaS Corporation
6200 S Syracuse Way Suite 485 Greenwood Village, CO 80111 USA
720-912-3787
Website: https://veridaas.com/
Google Site: https://sites.google.com/view/veridaascorporation
Google Folder: https://mgyb.co/s/rvvJB
Attempting to map out an entire project, forest, or mountainous area can be a challenge from the ground. Even if you had the latest equipment and an experienced team, data collection would still take weeks or months to ensure that you have mapped what is required.
Even then, there are many facets that may have been missed. To avoid repeat field site visits airborne LiDAR may be an option. Airborne LiDAR systems combine a scanning laser, GPS, and an inertial measurement unit.
Laser pulses are directed towards the ground usually by a moveable reflecting surface, which orients the individual pulses into a scanning swath pattern. Processing and integrating ground based and airborne GPS data with inertial and laser range data produces a 3D data set called a LiDAR Point Cloud. The resulting detailed data yields many benefits for businesses and organizations.
Applications areas are for projects where detailed accurate terrain information is required to make critical informed decisions. LiDAR provides the means to see the bare earth ground surface aiding planning and operation decisions.
Spatial analysis is as diverse as the user's skill and imagination. This gives the user the ability to conduct analysis with the entire project perspective in mind. LiDAR applications can be broken into wide area and corridor mapping projects.
Wide area projects include topological mapping, flood plane modeling, urban area GIS, exploration area modeling, resource management, agricultural monitoring, and infrastructure modeling.
Corridor projects can vary from transportation mapping, pipeline route mapping, estuary environmental modeling, and transmission line thermal rating to name a few.
As an example LiDAR for road design allows various best route scenarios to be run in road engineering software to select optimal road alignment. Road design parameters are accurately transferred to the field.
An accurate centre line determination and the measure of cuts and fills can be determined. Other benefits include the best stream crossing locations with their profiles and accurate grade determinations.
For a mining company an initial ground subsidence pilot project turned into a yearly LiDAR survey. LiDAR accuracy and repeatability allowed a comparison of year over year to model subsidence and compute the volume of tailings.
LiDAR helps to yield important mission-critical data for users. Using LiDAR is a cost effective and timely way to survey an area for geographical knowledge. Instead of using manpower, money, and other resources, a LiDAR survey can map more detailed aspects of the terrain compared to other remote sensing tools.
You have the ability to view every nook and cranny of the terrain through the use of LiDAR technology. Imagine the time and resources saved and the many discoveries that await your next project.
Mapping land companies utilize 3D technology to provide an impressive record or display of your project site, using either LIDAR (Light Detection and Ranging) or aerial photography. Digital surveying includes collating and collecting the earth's surface data from distant sensing, which is arranged into a raster and/or vector file that can be seen using appropriate software. The key role of 3D surface in surveying is to generate a precision aerial illustration map, which give the exact representation of the earth's surface, and for utilization in a variety of purposes. For instance, 3D mapping is utilized in mining to record development of extractive bulk, or to assess forest fire aftermath.
Before there was no advanced technology available, traditional techniques were used in surface mapping. In addition to tool scarcity, surveyors used expensive conventional ways, which were manual and time-consuming. 3D surveying provides spatial data without any constraint, in a short period of time automatically.
Laser scanners utilize unconventional light forms, as stripes, to yield a 3D model of the site. The image is then cleared through 3D scanners that generate high-definition model information with the tiniest deviation, which is needed by architects or engineers.
Mapping land firms use the information gathered from latest GPS tools which submit data in 3D and 2D CAD images to assess its accuracy. Obtaining 3D models are not limited to use in commercial building projects, but for historical landmarks, too.
The information gathered by the surveying companies is interpreted utilizing CAD software. However, some surveyors, due to unfamiliarity with the 3D exhibited by CAD models, still rely on traditional techniques. Correct interpretation of information is needed to come up with accurate measurements. Diagrams and regression graphs are provided by CAD models. Some people don't recognize that they can edit and measure outcome based from requirements in CAD images.
The involvement of 3D scanners in mapping gives surveying firms independence to accomplish a variety of projects at a specific time without overspending or incurring deficit. 3D plays a key role in giving safety and security to many people through yielding accurate results to engineers or architects as they build infrastructure projects.
As surveying firms utilize 3D in their surveying tasks, more people benefit from accurate mapping and surveying results for a variety of purposes. Surveyors, GIS professionals, engineers, architects and other experts in the same field accomplish their surveying tasks using high-definition models with better accuracy in a short time.
VeriDaaS Corporation | LiDAR Mapping Companies | https://veridaas.com/
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