LIDAR360 Mining Software

Smart Mine LiDAR 3D Scanning Solution

With the advancement of modern surveying and mapping technology, the amount of data measured in mines is increasing, such as 3D mine mapping for open pit mining site and 3D modelling of mine tunnels, and the requirements for results are becoming more and more diverse. Digital mining management and efficient mining ecological monitoring have become inevitable requirements. Traditional remote sensing technology has the disadvantages of inability to obtain vertical structure, low accuracy and poor timeliness in mining surveying and mapping. 3D Scanning with LiDAR for mining industry has the characteristics of strong initiative, strong penetration, fast scanning speed and high precision, which can make up for the shortcomings of traditional remote sensing technology. 

See our range of LiDAR products today.

Mining Survey Tool

LiDAR Solutions focuses on lidar and image fusion technology, and is proficient in lidar, UAV, SLAM, Fixed LiDAR Scanning and other technologies to achieve accurate perception of three-dimensional space reality. With RESEPI UAV LiDAR Payloads, OmniSLAM explosive handheld LiDAR  and other multi-platform high performance survey equipment for 3D laser scanning in mining sector, taking into account the general platform and industry-expanded point cloud data processing and analysis platform LiDAR360, aerial image stitching software LiMapper, LiDAR power line inspection LiPowerline, for power line inspection, forestry survey, topographic mapping, digital mining, disaster survey emergency, construction Provide core technical solutions in areas such as driverless high-precision maps. LiDAR Solutions is working closely with our partners to provide LiDAR service in mining industry in Australia and New Zealand, including 3D mine mapping solutions for open pit site, 3d laser scanning in mining section, equipment and service scanning mine tunnels, mining scanning software etc. 

01. Fixed LiDAR Scanning for Stockpile volume monitoring

The fixed LiDAR stockpile measurement system can be installed indoor or outdoor. The installation location of the lidar is determined by the shape, size and characteristics of the stockpile, and it is necessary to ensure that the scanning range of the lidar can cover the entire target object and acquire sufficient point cloud data. To ensure the measurement accuracy, the distance between the lidar and the target object, the angle and the obstruction should also be considered. The lidar should be stably fixed to ensure the accuracy and consistency of the measurement. Suitable brackets and fixing devices can be used to ensure the stable installation of the lidar as well. 

Why Choose a Fixed LiDAR Stockpile Monitoring System?

 

Transform your stockpile management with a 24/7 automated solution designed for precision, efficiency, and seamless integration:

  1. 24/7 Autonomous Operation

    • Eliminate manual labor with continuous, automated volume measurement and data processing.

    • Reduce human error and operational costs while ensuring real-time accuracy.

  2. Plug-and-Play Integration

    • Connect effortlessly to DCS, SCADA, or third-party control systems via Modbus TCP/RTU.

    • Streamline workflows with minimal setup and no custom coding.

  3. Global Data Accessibility

    • Access real-time and historical measurements through a secure, web-based cloud platform from any device, anywhere.

    • Monitor multiple sites centrally with customizable dashboards and alerts.

  4. Automated Reporting

    • Receive daily via email.

    • Track trends, compliance, and inventory changes with timestamped analytics.

Project Example - Geralton - WA, Delivered by liDAR Solutions Australia

Mining storage shed in Mid-west port in Geralton WA. 6 LiDAR scanning units were installed to cover western and eastern bay to monitor volume and tonnage of the mining raw materials. 

LiDAR stockpile volume monitoring system
Point cloud captured by the system

Project Example - PNG, delivered by LiDAR Solutions Australia

Mining Site in PNG, the client is using our fixed LiDAR stockpile measurement system to monitoring the real-time raw material volume change on their. This eliminates the labour required to survey the volume on daily basis. And it is safer as well. 

lidar point cloud captured by stockpile measurement system
Point cloud captured by the system
stockpile volume lidar site installation
Site installation

02. Explosive Proof SLAM LiDAR Scanning system for Underground Mining sites

OmniSLAM RM+ Explosive proof SLAM LiDAR Scanner, are self-developed LiDAR 3D mine scanners. They combine lidar and synchronous positioning and map construction technology to obtain high-precision 3D point cloud data of the surrounding environment in real time without GNSS. It is especially suitable for underground mines measurement work in harsh environments. 

  • The SLAM lidar scanning system supports both carrying and hand-held modes. The carrying method is convenient and comfortable, and the hand-held method is more flexible. It can be hand-held, can be hung on a vehicle, can be installed on an extension pole or a remote-controlled crawler, and is the best choice for roadway scanning.
  • Data is displayed in real time on mobile terminals such as mobile phones and tablets; it supports wireless/wired viewing of data; data transmission is stable, and supports online closed-loop and closed-loop optimization. After scanning, the collected point cloud data and motion trajectories can be exported.
  • The SLAM algorithm is stable and accurate: RM+ adopts the leading SLAM algorithm, which can well adapt to the working environment with few roadway features and features, and effectively guarantee the data accuracy.
  • Real-time solution: After the field measurement is completed, the initial point cloud data can be previewed and viewed in LiFuser-BP, and data preprocessing such as geographic coordinate conversion, noise filtering, and point cloud sampling is completed, which greatly simplifies the tedious operation of point cloud data analysis. 

SLAM 3D LiDAR Scanning Products for Underground Mining Applications

Application for underground mine site

  • The three-dimensional laser scanner is used to scan and detect the underground tunnel of the coal mine, and a three-dimensional model is established according to the scanning results. All data and models are with coordinates.
  • Real-time spatial location information collection of mining face.
  • Identify the roadway rock mass structure surface based on the point cloud, extract and analyze the inclination angle, inclination, trace length, spacing, etc. of the structure surface.

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    03. Aerial LiDAR 3D Mine Mapping for Open Pit Site

    Liair 250PRO Drone Lidar

    LiAir series products have obvious advantages in information extraction in terms of vertical spatial structure. Combined with horizontal spatial data, they can monitor the ecological environment of open-pit mines in an all-round way. UAV LiDAR can also obtain detailed and accurate measurements from inaccessible upper mine stockpiles in underground mines, making it ideal for scanning large areas of ore stockpiles, or large structures such as mining facilities.

    • Accurately follow terrain fluctuations to achieve higher flight, effectively solve the limitation of LiDAR measurement distance, and ensure the consistency of image resolution and LiDAR point cloud density.
    • Built-in high-precision differential GNSS board, high-precision IMU module, using tightly coupled differential algorithm to achieve point cloud plane, elevation accuracy centimeter level, to meet the needs of engineering measurement.
    • It supports an integrated software and hardware solution ranging from accurate 3D route planning, point cloud data acquisition, real-time flight monitoring to point cloud trajectory calculation, flight band adjustment to standard point cloud result output.
    • Seamlessly connect to point cloud processing software to quickly generate standard terrain results. The output standard point cloud can be directly entered into LiDAR360 point cloud data processing software. After automatic filtering algorithm and a small amount of manual editing, the output of standard terrain results can be completed, avoiding the cumbersome process in the middle. loss of precision.
    • Laser scanning to obtain 3D point cloud models of open pit mining sites; digital terrain results such as DSM/DEM/DOM/DLG are generated.
    • Using the LiAir lidar 3D scanning system to quickly obtain high-precision point clouds of ground objects, it has good maneuverability, flexibility and safety. It is a low-cost and high-efficiency stockpile volume measurement solution.
    • Simultaneous acquisition of image data enables intuitive identification and management to understand the actual mining status of the mine

    UAV LiDAR Payloads for 3D mine scanner

    04. Wind Monitoring LiDAR For Wind Farm development near mining sites

    LDT300 Lidar Trailer Deployed

    LDT300 LiDAR Trailer System Key Features

    Molas B300 LiDAR

    Molas B300 Lidar

    Developed and manufactured by Nanjing Movelaser, who is the biggest wind LiDAR OEM globally, State-of-art vertical profiler wind LiDAR Molas B300, with its key features of:

    1. 5 year warranty;

    2. 1m/s measurement accuracy;

    3. High data recovery rate at the site with clean air condition;

    4. DNV stage 3 classification report, DTU & Windguard validation report;
      DNV validated complex terrain correction methods, including Meteodyn WT, MolasFlow, MovelaserRans;

    5. IP67 protection, service free;

    6. Extremely tough glass design for laser screen, so no fluid is required on the wiper. Reduce the frequency of site visits for adding water;

    7. 12 configurable measurement heights, capable to customize up to 24 heights;

    8. Free web-based cloud real-time monitoring and data download platform

    Patented all-inclusive trailer-mounted power supply and communication system for Molas B300

    Key features:

    1. Compact, 7X5 trailer, lightweight (less than 900kg) and high ground clearance. These features allow the LiDAR trailer to be towed easily under off-road conditions and lifted by helicopter when the installation location is not accessible.

    2. Caged fence on-board to avoid setting up extra fence for the system, and reduce the wind load of the system on-site to bring extra structural durability and stability for the system;

    3. Multiple options of communication method: 4G by default, or upgrade to Starlink when mobile service is not available.

    4. Remotely monitorable and controllable for Molas B300 LiDAR. The LiDAR status, including operation status, real-time wind data, signal-noise ratio and temperature, can be remotely monitored. The configuration for the LiDAR wind sensor such as measurement heights and email settings can be remotely configured. Even if the LiDAR wind sensor system is frozen, the system allows the operator to cut off the power and re-energize the system remotely to save a trip to the site just for rebooting the system.

    5. Intelligent power supply system with lithium batteries. Solar system is fully monitorable, and real-time, daily, weekly and monthly historic solar generation and power consumption are available.

    6. No cleaning fluid is required for the LiDAR screen, and no periodical service is required during a 1 year measurement campaign (half year for dry climate);

    7. Less manual handling during setup, as LiDAR is stored at the same level – just slide it out from storage;

    8. Aluminium structures for better anti-corrosion performance, and enhanced solar panel supports and outriggers for improved durability.

    LDT300 LiDAR Trailer System In Australia

    Trusted by a growing number of clients, the LDT300 LiDAR Trailer is making wind measurement campaigns for wind farm development projects easier than ever accross Australia, including Victoria, NSW, Northwestern Queensland, Central North Territory, TAS, & WA because of the following innovative features: 

    Oceania Map

    The latest data confirms that our LDT300 LiDAR trailer has been consistently delivering exceptional performance, boasting an impressive average of 98% availability across various sites. This outstanding reliability remains unwavering, regardless of the climatic conditions – be it scorching heat, cool temperatures, or pristine air quality on-site.

    Australia’s unique climate demands specialized solutions, and the LDT300 has risen to the challenge. Its ability to maintain high data quality under local weather conditions has been nothing short of remarkable. From the arid landscapes of Northwestern Queensland to the diverse terrains of Victoria, the LDT300 is proving its mettle.

    We extend our gratitude to our esteemed clients who have put their trust in the LDT300 LiDAR trailer. Your feedback and support have been instrumental in the continued success of this innovative solution. We are committed to delivering the highest quality data and service to meet and exceed your expectations.

    Services LiDAR Solutions Australia offers

    1. Wind monitoring LiDAR system sell and leasing;

    2. Training:
      1. Comprehensive documentation such as user manual and checklist as well as video tutorial for site installation, relocation, monitoring, data download, and services;
      2. On-site training for the operation, installation and maintenance;

    3. Site services: LiDAR Solutions Australia also offers site installation, relocation and LiDAR maintenance with our in-house resources;

    4. Wind data management services;

    Mining Sites photos of the LDT300 Wind monitoring LiDARs

    LDT300 QLD2 Wind Lidar
    LDT300 LiDAR Trailer On Mining Site In Northwestern QLD
    LDT300 Lidar Trailer Deployed
    LDT300 LiDAR Trailer Deployed Near A Mining Site in Central NT

    LiDAR360 MLS feature extraction and thematic map software for mine Scanning Software

    Introduction

    LiDAR360 MLS is a software for feature extraction and thematic map production independently developed by GVI. It uses automated and semi-automated operations to vectorize thematic data. It can be connected to a variety of GIS platforms. It can be widely used in the fields of precision map production, highway survey and design, reconstruction and expansion, digital city construction, and digital garden census, which will help to improve the level of urban informatization construction and management.

    Point Cloud Framing
    Panoramic measurement
    Lane mark extraction
    Listreet Urban Mapping
    Road Sign Extraction
    Automatic extraction of rods
    Curb Extraction

    Support unmanned mining vehicles to achieve efficient transportation

    The mining environment is complex, the working conditions are harsh and the risk factor is high. Solving the transportation problem in the mining area is directly related to the mining efficiency of the mining area. The relatively closed mining area is one of the most likely scenarios for unmanned driving. On the one hand, unmanned driving can reduce safety accidents in the mining area, on the other hand, it can reduce the cost of drivers. Therefore, the location calibration of the unmanned mining truck and the drawing of the base map of the mining area have become the top priority.

    Lidar has the advantages of high measurement accuracy and wide detection range. 3D Lidar is often used to make the initial map template for high-precision maps, that is, point cloud maps. It can provide prior map information for autonomous vehicles. It plays an important role in positioning, environment perception, path planning and simulation experiments.

    The unmanned driving system in the mining area is a cloud-based network-connected autonomous driving integrated solution with functions such as operation management, online status monitoring, and emergency driving safety takeover. Lidar technology, as an important part of it, has received more and more attention and attention.

    LiDAR360 Mining Module - Mine Scanning software

    Introduction

    LiDAR360 was born in 2013. It is a professional processing platform for massive LiDAR point cloud data independently developed by GVI. This software provides professional point cloud data processing modules and rich data management tools, supplemented by AI and machine learning, which can efficiently and accurately edit and analyze airborne, vehicle-mounted, ground-based, handheld and other multi-acquisition platforms with different formats and types point cloud data, and generate professional geospatial products for many industries, forming convenient and efficient industry solutions.

    LIDAR360 3D SCANNING SYSTEM, LIDAR POINT CLOUS POST PROCESSING SOFTWARE

    LiDAR360 Mining Module - Mine Scanning Software

    Based on the real-time 3D LiDAR point cloud data of multi-platform mines such as airborne and backpack, LiDAR360 measurement module and terrain analysis module can realize the detection of mining path change in open-pit mines, quantitative analysis of mining workload, and auxiliary decision-making of mining planning; at the same time, underground mines can be realized. The roadway is regularly monitored and analyzed to assist in accident early warning and decision-making.

    Roadway modeling renderings
    • Roadway Section Analysis

    Based on the point cloud data, a high-fidelity 3D model of the roadway is generated in LiDAR360, and the difference values ​​of the standard (reference) section and the scanned (point cloud-derived) section are compared to monitor the roadway deformation.

    • Mine pile volume measurement

    The three-dimensional laser scanning system is used to observe the deposits and quickly obtain the three-dimensional coordinates of a large number of ore surface points. The software can accurately calculate the volume of the ore pile according to the principle of calculus.

    • 3D modeling

    It is used to process point cloud data such as mines, tunnels, and roadways. Through slice filtering technology, the noise information on the scanned surface is removed. Combined with triangulation or Poisson modeling, it can quickly obtain a smooth and consistent triangulation model of roadway data.

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