The drone for precision agriculture

Similar documents
The survey-grade mapping drone

Aerial efficiency, photogrammetric accuracy

The survey-grade mapping drone

The intelligent mapping & inspection drone

The intelligent mapping & inspection drone

Capture the invisible

MULTIPURPOSE QUADCOPTER SOLUTION FOR AGRICULTURE

Geo-localization and Mosaicing System (GEMS): Enabling Precision Image Feature Location and Rapid Mosaicing General:

MULTISPECTRAL AGRICULTURAL ASSESSMENT. Normalized Difference Vegetation Index. Federal Robotics INSPECTION & DOCUMENTATION

DISCO-PRO AG ALL-IN-ONE DRONE SOLUTION FOR PRECISION AGRICULTURE. 80ha COVERAGE PARROT SEQUOIA INCLUDES MULTI-PURPOSE TOOL SAFE ANALYZE & DECIDE

Crop Scouting with Drones Identifying Crop Variability with UAVs

sensefly Camera Collection

The Philippines SHARE Program in Aerial Imaging

AG-VA Fully Autonomous UAV Sprayers

The brain for the plane is the Airelectronics' U-Pilot flight control system, which is embedded inside the plane's fuselage, leaving a lot of space on

UAV Technologies for 3D Mapping. Rolf Schaeppi Director Geospatial Solutions APAC / India

Aerial Image Acquisition and Processing Services. Ron Coutts, M.Sc., P.Eng. RemTech, October 15, 2014

RPAS Photogrammetric Mapping Workflow and Accuracy

Monitoring the vegetation success of a rehabilitated mine site using multispectral UAV imagery. Tim Whiteside & Renée Bartolo, eriss

U-Pilot can fly the aircraft using waypoint navigation, even when the GPS signal has been lost by using dead-reckoning navigation. Can also orbit arou

Scaling Up Drone Science for Agriculture & Nature Resources through Cooperative Extension

Phase One 190MP Aerial System

An NDVI image provides critical crop information that is not visible in an RGB or NIR image of the same scene. For example, plants may appear green

LAST GENERATION UAV-BASED MULTI- SPECTRAL CAMERA FOR AGRICULTURAL DATA ACQUISITION

Overview. Objectives. The ultimate goal is to compare the performance that different equipment offers us in a photogrammetric flight.

Deliverable 5-B: Review and Update on AURA System Requirements, Sensors, and Platforms Supplemental Report

How Farmer Can Utilize Drone Mapping?

Photomod Lite Contest 2013 Creating vegetation map using UAV at Seaside Palouki forest (Greece) by Apostolos Nteris

Validation of the QuestUAV PPK System

PARROT SKYCONTROLLER 2 PARROT COCKPITGLASSES 2 2 POWER BATTERIES

Vegetation Indexing made easier!

EnsoMOSAIC Aerial mapping tools

PEGASUS : a future tool for providing near real-time high resolution data for disaster management. Lewyckyj Nicolas

MSB Imagery Program FAQ v1

Five Sensors, One Day: Unmanned vs. Manned Logistics and Accuracy

High Latitude Drone Ecology Network Multispectral Flight Protocol and Guidance Document

High throughput phenotyping of field crop experiments using UAVs. Ph. Burger, R. Marandel, F. Baret, G. Colombeau, A. Comar

Heterogeneous Control of Small Size Unmanned Aerial Vehicles

Module 3 Introduction to GIS. Lecture 8 GIS data acquisition

White Paper Reaching 1 cm (0.4 in) drone survey accuracy

White Paper Reaching 1 cm (0.4 in) drone survey accuracy

SONOBOT AUTONOMOUS HYDROGRAPHIC SURVEY VEHICLE PRODUCT INFORMATION GUIDE

NON-PHOTOGRAPHIC SYSTEMS: Multispectral Scanners Medium and coarse resolution sensor comparisons: Landsat, SPOT, AVHRR and MODIS

Ground Control Configuration Analysis for Small Area UAV Imagery Based Mapping

Valuable New Information for Precision Agriculture. Mike Ritter Founder & CEO - SLANTRANGE, Inc.

Delta-FW70 Fixed-Wing UAV & Intelligent Imaging Processing Designed to Impress

EzOSD Manual. Overview & Operating Instructions Preliminary. April ImmersionRC EzOSD Manual 1

White Paper Reaching 1 cm (0.4 in) drone survey accuracy

An Introduction to Remote Sensing & GIS. Introduction

CORN BEST MANAGEMENT PRACTICES CHAPTER 22. Matching Remote Sensing to Problems

Introduction to Photogrammetry

High Resolution Multi-spectral Imagery

Separation of crop and vegetation based on Digital Image Processing

The Hyperspectral UAV (HyUAV) a novel UAV-based spectroscopy tool for environmental monitoring

UAV PHOTOGRAMMETRY COMPARED TO TRADITIONAL RTK GPS SURVEYING

REMOTE SENSING WITH DRONES. YNCenter Video Conference Chang Cao

Remote Sensing in Daily Life. What Is Remote Sensing?

Mapping with the Phantom 4 Advanced & Pix4Dcapture Jerry Davis, Institute for Geographic Information Science, San Francisco State University

A new perspective on Brampton Wood: Using drones to track our habitat improvement work

GreenSeeker Handheld Crop Sensor Features

AIRPORT MAPPING JUNE 2016 EXPLORING UAS EFFECTIVENESS GEOSPATIAL SLAM TECHNOLOGY FEMA S ROMANCE WITH LIDAR VOLUME 6 ISSUE 4

UAV applications for oil spill detection, suspended matter distribution and ice monitoring first tests and trials in Estonia 2015/2016

IKONOS High Resolution Multispectral Scanner Sensor Characteristics

Rochester Institute of Technology. Wildfire Airborne Sensor Program (WASP) Project Overview

Assessment of Unmanned Aerial Vehicle for Management of Disaster Information

Precision Agriculture Comparison and Evaluation of Innovative Very High Resolution (UAV) and LandSat Data

Baldwin and Mobile Counties, AL Orthoimagery Project Report. Submitted: March 23, 2016

Satellite Remote Sensing: Earth System Observations

Leica - 3 rd Generation Airborne Digital Sensors Features / Benefits for Remote Sensing & Environmental Applications

Getting Started with Drones in Agriculture

Featherweight GPS Tracker User s Manual June 16, 2017

Airborne Laser Scanning. Long-Range Airborne Laser Scanner for Full Waveform Analysis. visit our webpage LASER MEASUREMENT SYSTEMS

Multispectral Scanners for Wildland Fire Assessment NASA Ames Research Center Earth Science Division. Bruce Coffland U.C.

NEW. Airborne Laser Scanning. Dual Wavelength Waveform Processing Airborne LiDAR Scanning System for High-Point Density Mapping Applications

HALS-H1 Ground Surveillance & Targeting Helicopter

Processing Aster Data for Atmospheric Correction Geomatica 2014 Tutorial

Govt. Engineering College Jhalawar Model Question Paper Subject- Remote Sensing & GIS

UAV Imagery and Data Management for Precision Agriculture. John Nowatzki Extension Ag Machine Systems Specialist North Dakota State University

Water Leak Detection Report

Brian Arnall Precision Nutrient Management Oklahoma State University

Aerial Survey & Classification of Bush Honeysuckle

Camera Requirements For Precision Agriculture

GEO 428: DEMs from GPS, Imagery, & Lidar Tuesday, September 11

Outline for today. Geography 411/611 Remote sensing: Principles and Applications. Remote sensing: RS for biogeochemical cycles

Objectives: 1. Assess the feasibility of using high spatial resolution image data for counting male Common Eiders.

X8-M. Operation Manual

INSTRUCTIONS. 3DR Plane CONTENTS. Thank you for purchasing a 3DR Plane!

Camera Requirements For Precision Agriculture

THE PENNSYLVANIA STATE UNIVERSITY SCHREYER HONORS COLLEGE DEPARTMENT OF MECHANICAL AND NUCLEAR ENGINEERING

NAVIGATION AND REMOTE SENSING PAYLOADS AND METHODS OF THE SARVANT UNMANNED AERIAL SYSTEM

Introduction to Photography - Lesson 1

PRELIMINARY RESULTS FROM THE PORTABLE IMAGERY QUALITY ASSESSMENT TEST FIELD (PIQuAT) OF UAV IMAGERY FOR IMAGERY RECONNAISSANCE PURPOSES

366 Glossary. Popular method for scale drawings in a computer similar to GIS but without the necessity for spatial referencing CEP

Augmented Reality and Unmanned Aerial Vehicle Assist in Construction Management

ABSTRACT. Detecting nitrogen status in crops within the growing season is important for making nutrient

GIS in Water Resources CEE 6440

FLiFLi AirDrop Quick Guide

HIGH RESOLUTION COLOR IMAGERY FOR ORTHOMAPS AND REMOTE SENSING. Author: Peter Fricker Director Product Management Image Sensors

NEW. Airborne Laser Scanning. Waveform Processing Airborne Laser Scanner for Wide Area Mapping and High Productivity. visit our website

SUGAR_GIS. From a user perspective. Provides spatial distribution of a wide range of sugarcane production data in an easy to use and sensitive way.

Transcription:

The drone for precision agriculture

Reap the benefits of scouting crops from above If precision technology has driven the farming revolution of recent years, monitoring crops from the sky will drive the next. With a drone or UAV you can capture highly accurate images of your fields, covering hundreds of hectares/acres in a single flight. Without the cost and hassle of manned services. And at a greater resolution than satellite imagery typically provides. By using image processing software you can then transform these shots into one large orthomosaic image. Apply algorithms like Normalized Difference Vegetation Index (NDVI) to this and you create a reflectance map of your crop. This map is the key to boosting yields, cutting costs, and driving your business forwards. It highlights exactly which areas of crop need closer examination for less time spent scouting, and more time treating the plants that need it.

4 reasons to choose the ebee Ag 01. Versatile 02. Reliable 03. Easy to use 04. Complete solution With its four different camera options the ebee Ag suits numerous agricultural applications. Use the NIR camera supplied or add one of our red-edge, RGB or multispectral sensors. The ebee Ag s artificial intelligence and robust lightweight construction ensure it will survive numerous flights (and landings), thus safeguarding your investment. The ebee Ag is a fully automonous drone. Just select the area you want to map using our emotion software, throw your drone into the air, and the ebee Ag will fly, acquire images and land itself. The ebee Ag is supplied with a sturdy carry case and two advanced software packages: emotion 2 for flight planning and monitoring; and Postflight Terra 3D for post-flight image processing and analysis.

Wide camera choice 4 sensor options: NIR, red-edge, RGB, multispectral Onboard ebee Ag Electric Brushless electric motor Low noise Environmentally friendly The ebee Ag is an artificially intelligent, fully autonomous drone. It is designed with safety in mind and contains numerous built-in failsafe systems. Thanks to its modular design, its wings can be easily disassembled and stored with its central body in a convenient carry-on sized case (supplied). Onboard artificial intelligence Analyses data from Inertial Measurement Unit & onboard GPS Optimises all aspects of every flight Ground sensor Highly accurate Allows ebee Ag to land softly & more precisely than GPS alone Reliable Onboard artificial intelligence Robust lightweight construction Able to survive numerous flights Super lightweight Durable EPP foam body & wings Take-off weight: 0.71 kg (1.56 lbs) Fully automated Create your flight plan Throw ebee Ag into the air Flies, acquires images & lands itself

Plan & control your flight Create maps to assess crop health sensefly s intuitive emotion software makes it easy to plan and simulate your scouting mission. Plan: Import your base map of choice and define the area you want to assess. Then specify your required ground resolution, with a GSD of down to 2 cm per pixel, and image overlap. emotion automatically generates a full flight plan, calculating the ebee Ag s required altitude and displaying its projected trajectory. Flying over uneven terrain? Use emotion s 3D mission planning feature to take into account elevation data when setting the altitude of mission waypoints and the resulting flight lines - improving ground resolution and increasing mission safety. Simulate: To ensure your mission s success, run a virtual flight that simulates wind strength and direction. Then make any flight plan updates required and prepare to launch. Process: Once the ebee Ag has landed, use its supplied Postflight Terra 3D software to process your flight s photos. In just a few clicks you can transform this imagery into geo-referenced 2D orthomosaics and 3D digital elevation models. Analyse: Postflight Terra 3D includes a handy index computation tab - just select a band from your near infrared or multispectral camera and calculate NDVI to assess plant health. You can also input custom formulas and customise colours to create exactly the map you require.

Choose your accessory S110 NIR Supplied Like all ebee Ag cameras, this customised 12 MP model has been adapted so that it can be controlled by the drone s autopilot. It acquires image data in the near infrared (NIR) band, the region where high plant reflectance occurs. Its exposure parameters can be set manually and its RAW files are fully supported by the ebee Ag s software. Example applications: biomass indication, growth monitoring, crop discrimination, leaf area indexing. The multispec 4C is a cutting-edge sensor unit developed by Airinov s agronomy specialists and customised for the ebee Ag. It contains four separate 1.2 megapixel sensors that are controlled by the ebee Ag s autopilot. These acquire data across four highly precise bands, plus each sensor features a global shutter for sharp, undistorted images. Example applications: biomass indication, leaf area indexing, nitrogen recommendation, phenology and many more. S110 RE Unlike the NIR camera above, the 12 MB S110 RE acquires data in the red edge band, the region where a plant s reflectance changes from low to high. The S110 RE s exposure parameters can also be set manually and its RAW files are fully supported by the ebee Ag s software. Example applications: plant stress assessment, chlorophyll indication, senescence analysis, drought assessment. thermomap With thermomap you can literally take your crop s temperature, capturing thermal video and/or still images to create full thermal maps of your fields. Applications: water distribution management, irrigation checking, alternative method of plant stress analysis. S110 RGB The 12 MB S110 RGB acquires regular image data in the visible spectrum. Like the cameras above, its exposure parameters can be set manually and its RAW files are fully supported by the ebee Ag s software. Example applications: real colour 2D and 3D visual rendering, chlorophyll indication, drainage evaluation. Radio tracker If your region is prone to sudden gusty winds, or you plan to fly out of line of sight, this accessory can serve as a useful extra safeguard against unexpected aircraft loss. It comprises a small transmitter that fits snugly next to the ebee Ag s battery bay, plus a portable handheld receiver.

Biomass & yield estimation Plant counting Chlorophyll indication Plus Stress assessment Senescence analysis Leaf area indexing Phenology Growth monitoring Crop discrimination Weed detection Tree classification Drainage planning and much more.

Technical specifications Hardware Weight (inc. supplied camera) Wingspan Material Propulsion Battery Camera (supplied) Cameras (optional) Carry case dimensions Approx. 0.71 kg (1.56 lbs) 96 cm (38 in) EPP foam, carbon structure & composite parts Electric pusher propeller, 160 W brushless DC motor 11.1 V, 2150 mah 12 MP S110 NIR S110 RE, S110 RGB, multispec 4C, thermomap 55 x 45 x 25 cm (21.6 x 17.7 x 9.8 in) www.sensefly.com Maximum flight time Nominal cruise speed Radio link range Maximum coverage (single flight) Wind resistance Ground Sampling Distance (GSD) Relative orthomosaic/3d model accuracy Absolute horizontal/vertical accuracy (w/gcps) Absolute horizontal/vertical accuracy (no GCPs) Multi-drone operation Automatic 3D flight planning Linear landing accuracy Operation 45 minutes 40-90 km/h (11-25 m/s or 25-56 mph) Up to 3 km (1.86 miles) 1,000 ha / 2,470 ac (at 974 m / 3,195 ft altitude AGL) Up to 45 km/h (12m/s or 28 mph) Down to 2 cm (0.79 in) per pixel 1-3x GSD Down to 4 cm (1.5 in) / 7 cm (2.75 in) 1-5 m (3.3-16.4 ft) Yes (inc. mid-air collision avoidance) Yes Approx. 5 m (16.4 ft) Package contents Where can you buy your ebee Ag? Visit www.sensefly.com/about/where-to-buy to locate your nearest distributor. ebee Ag body (inc. all electronics & built-in autopilot) Pair of detachable wings 12 MP S110 NIR still camera (inc. 16 GB SD card, battery, USB cable & charger) 2.4 GHz USB radio modem for data link (inc. USB cable) Two Lithium-Polymer battery packs & charger Spare propeller Carry case with foam protection Remote control & accessories (for safety pilots) User manual Software included: emotion (flight planning & control) & Postflight Terra 3D (image processing & index calculation) +31 (0)88 43 66 300 info@geometius.nl www.geometius.nl +31 (0)88 43 66 321 info@agrometius.nl www.agrometius.nl About sensefly: sensefly designs, assembles and markets autonomous mini-drones and related software solutions for civil professional applications such as precision agriculture, land surveying, GIS, construction, environmental conservation and more. Content and images non contractual 2014 sensefly Ltd

EN For ebee Ag updates subscribe to our newsletter at www.sensefly.com