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Bridging the Gap

In todays industry the lines between field services and data science are blurring. Our courses allow a business to understand the entire picture from field operations to business intelligence. 

Drones and Geospatial  Sensors  

Learn the theory and baseline technology.  

  • Photogrammetry
  • Lidar 
  • Multispectral
  • Thermal
Field Operations and Survey Get into practical applications.  
  • Survey
  • Targets
  • Collection Best Practices
  • Automation
  • Safety

FACT:  Field operators that understand how the data is processed achieve better results.
Data Analytics Transforming Data into Decisions
Anyone can look at pictures.  Transforming information into simple decision making aids is a craft. Learn
  • Data Conditioning
  • Point Clouds to CAD
  • Point Clouds to GIS
  • Point Clouds to VR
  • Vegetation Management
  • Hydrography
  • and MORE

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Lidar is one of the fastest-growing technologies in the drone mapping industry.  Its ability to measure under vegetation and capture precise 3D objects makes it attractive over other mapping and reality capture options.  By adding a drone to a mapping solution you gain access and on-demand efficiencies not previously realized.

In this course is designed for professionals with no previous mapping experience.  This means we will start from the ground up.  Walkthrough our step by step workflows covering planning, field operations, and post-flight processing to generate 3D point clouds.

Most places want to show you their software as part of a notional process.  In this course, we will teach you proven workflows that get results.  We know, we have perfected them over 5 years and as part of half a dozen national use case studies.

Come discover what you can do with Lidar and get mapping today.

Course Curriculum

  • Instructions for this course

    • How to Use this Learning Management System

  • Lidar Fundamentals - What every business owner needs to know?

    • What is Lidar Introduction

    • Why Lidar- How is Lidar changing geospatial businesses?

    • Lidar Data Collection- How fast and easy is it?

    • LiDAR Data Characteristic- What creates project value?

    • Lidar Data Products- Digital media changing the way we make decisions.

    • Lidar Software and Workflow- What is the basic process?

    • Lidar Standards and Guidelines

    • Lidar Data Quality- How does your customer know you are providing good data?

    • Lidar Applications- What use cases can it be used for?

  • Lidar Equipment- How does it all work?

    • Equipment Overview

    • Setting up Lever Arms?

    • What is OPUS?

  • Lidar Planning - What do you need to know to be successful?

    • Planning Introduction

    • Point Density Planning [BASIC]

    • Lidar Basic Flight Planning [BASIC]

    • Lidar Area Flight Planning [INTERMEDIATE]

    • Lidar Corridor Flight Planning [ADVANCED]

    • Lidar Planning Considerations for Vegetation [ADVANCED]

    • Lidar Urban Flight Planning [ADVANCED]

    • Base station Planning [BASIC]

    • Lidar Control Points [ADVANCED]

  • Field and Flight Operations - What you need to do for quality data?

    • Introduction- Shelter in Place Version

    • Pre-Deployment Checklist [BASIC]

    • Site Survey [INTERMEDIATE]

    • Preflight Checklist [BASIC]

    • Drone Take Off Procedures

    • Flight Automation Drone Recovery Best Practices

  • Basic Lidar Processing- What is really involved to create raw 3D point Clouds?

    • Compute and Compile Introduction

    • Workflow Overview [BASIC]

    • File Setup [BASIC]

    • Base Station Solution Report [INTERMEDIATE]

    • Telemetry Processing [BASIC]

    • Lidar Compiling Processing [BASIC]

    • Quick Visualization - Quick Terrain Reader [BASIC]

  • Advanced Lidar Flight Automation - How to use automation to improve your field work?

    • Flight Automation- Introduction

    • Flight Automation Software Guide

    • Flight Automation Free Trial

    • Flight Controller Software Architecture

    • Flight Automation System Menus

    • Flight Automation Basic Planning Interfaces PT 1

    • Flight Automation Basic Planning Interfaces PT 2

    • Flight Automation Mission Planning

Learn everything you need to know about processing Green Valley LiDAR data in LiGeoreference.

Course Curriculum

  • Things to Know About this Course

    • Course and Instructor Introduction

    • About the Course

  • All The Things That Must Be Set Up Before Data Processing Can Begin

    • How to Download and Install LiGeoreference

    • Everything You Need to Know About the Green Valley LiDAR Data File Structure

    • All the Steps to Obtain an OPUS Solution for the Base Station

    • Loading Other Geoid Models into LiGeoreference

  • Getting Familiar with LiGeoreference

    • Understanding LiGeoreference's General Interface

    • Understanding LiGeoreference's Visualization Tools

    • Understanding LiGeoreference's Georeference Tools

    • Understanding LiGeoreference's Measurement, Selection, and Profile Tools

    • Tools for Transforming Data, Removing Noise, and Generating Reports in LiGeoreference

  • Green Valley LiDAR Data Processing Steps

    • How to Create a New Project in LiGeoreference

    • Everything You Need to Know About Setting Up the Base Station in LiGeoreference

    • How to Get a Post-Processed Trajectory and Understanding the Trajectory Report

    • All the Ways You Can Create Segments to Generate a Point Cloud

    • How to Conduct the Boresight Calibration

    • How to Conduct the Trajectory Adjustment

    • All the Steps to Generate a Colorized Point Cloud

    • How to Use the Cut Overlap Tool (An Optional Step)

    • How to Remove Noise from the Point Cloud Using the Remove Outliers Tool

    • How to Get your Point Cloud to Ground and Check the Accuracy

    • How to Reproject Point Clouds and Export the Data in LiGeoreference

  • What's Next and Where to Get More Information

    • Where to Get More of an Explanation of the Settings in LiGeoreference

    • What are the Next Steps in Your LiDAR Data Processing Journey?

    • Thank You From MODUS


Gain access to all this information and more

 Understand the framework of a high accuracy lidar capture

 Checklists and steps on how to plan and ensure you get the best lidar product

 Hone in on your use case and what sensors are profitable for you

 Identify which control techniques works best for you

 Learn 3 simple strategies for efficient field capture with proven success

 Learn the formula for taking average lidar data and creating great products

 Get a free trials of tools you need 

Course Curriculum

  • Introduction

    • Downloading Your Trial Flight Software

    • Downloading Quick Terrain Reader

    • Downloading Lidar Viewing Software

    • Course Overview

  • Pre-Workshop Training/ Software Overview

    • Flight Automation- What is the ideal flight software for mapping

    • UgCS Flight Controller Architecture

    • GUI Intro - UgCS Overview

    • GUI Intro - Planning Screen

    • GUI Intro - Main Menu Settings

    • GUI Intro - Configuring your Payloads

    • GUI Intro - Configuring your Drone

    • GUI Intro - Special Tip - Configuring Lidar as a camera

    • GUI Intro - Mapp Options and Overlays

    • Basic Flight Planning - Setting a New Route

    • Basic Flight Planning - Automatic Take off/Landing Fundamentals

    • Basic Flight Planning - Working with Fly to Points (FTP)

    • Basic Flight Planning - Area Mapping Tools

    • Basic Flight Planning - Route Planning tools

    • Basic Flight Planning - Façade Scanning Tools

    • Basic Flight Planning - Search and Rescue Tools

    • GUI Intro Lidar Area Planning Module

    • GUI- Lidar Corridor Planning Module

    • GUI- Calibration module

  • MODULE 1: Project Scoping

    • What is Lidar and Scoping a Project

    • Setting up a Deliverable Data Dictionary

  • MODULE 2: Determining Lidar Point Density

    • Determining your Lidar Point Density

  • MODULE 3: Lidar Flight Planning Fundamentals

    • Lidar Flight Planning

  • MODULE 4: Segmenting

    • Segmenting - Laying out your project for effective collection

  • MODULE 6: Mapping Corridors

    • Corridors Mapping Fundamentals

  • MODULE 7: Special Considerations

    • Planning for special considerations

  • MODULE 5: Lidar and Dealing with Vegetation

    • Point Density and Vegetation Penetration Fundamentals

  • MODULE 8: Lidar Accuracy Fundamentals

    • Surveying for High Accuracy Lidar

  • MODULE 9: Operations

    • Operations and Workflows

  • MODULE 10: Project Pricing

    • Determining your Market

    • Researching your Price

    • Determining your Cost

Learn the essentials of flight automation using UGCS. Form software to flight planning the course will cover it all and have you ready to automate your flights in no time.

Course Curriculum

  • Learning Software

    • Overview

    • Planning screen

    • Main menu settings

    • Loading your payloads

    • Loading your drone

    • Loading a lidar as a camera

    • Map options and overlay

  • Flight Planning Tool

    • Setting a new route

    • Takeoff and landings

    • Fly-to-points (FTP)

    • Area planning tools [Photogrammetry area tool & Area scan Quarter map ]

    • Route planning tools [Circle & Perimeter ]

    • Facade tool

    • SAR Tools

    • Lidar Area Tool

    • Lidar Corridor Tool

    • lidar calibration tool

The V70 is one of the smallest and powerful LiDAR systems in use today. This course will cover everything it takes to operate a V70 successfully. Learn about the hardware and software, from assembly to landing procedures.

Course Curriculum

  • Equipment Setup

    • Equipment Setup: Introduction

    • Equipment Setup: Hardware Assembly

    • Equipment Setup: Network Configuration

    • Equipment Setup: LiDAR Settings

    • Equipment Setup: Recap

  • Field Operation

    • Field Operations: Introduction

    • Field Operations: Base Station Setup

    • Field Operations: LiDAR/Drone Deployment

    • Field Operations: Ground Station Configuration

    • Field Operations: Landing Procedure

    • Field Operations: Accessing Data

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