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“Project 14.B37.21.1243”WGL-EGL Joint Tech Meeting, September 19-21, 2013“Research and development of the opened networked geospatial instrument and educational content based on deployment remote sensing technologies for decision support in emergency

Слайды и текст этой презентации

Слайд 1VIRTUAL CONFERENCE - REMOTE SENSING PRESENTATION WITH RUSSIA:
Moscow State University

of Geodesy and Cartography (MIIGAiK)
“On development of open-source portal

for use of the remotely sensed data in emergency situations response applications scenarios”

in Project 14.B37.21.1243

WGL-EGL Joint Tech Meeting
September 19-21, 2013

VIRTUAL CONFERENCE - REMOTE SENSING PRESENTATION WITH RUSSIA:Moscow State University of Geodesy and Cartography (MIIGAiK) “On development

Слайд 2 “Project 14.B37.21.1243”
WGL-EGL Joint Tech Meeting, September 19-21, 2013
“Research and

development of the opened networked geospatial instrument and educational content

based on deployment remote sensing technologies for decision support in emergency situations of natural and human-induced nature.”

Moscow State University of Geodesy and Cartography (MIIGAiK)

Anton Bystrov, Alexander Grechishev, from Moscow

“Project 14.B37.21.1243”WGL-EGL Joint Tech Meeting, September 19-21, 2013“Research and development of the opened networked geospatial instrument

Слайд 3 “Project 14.B37.21.1243”
WGL-EGL Joint Tech Meeting, September 19-21, 2013
Moscow State

University of Geodesy and Cartography (MIIGAiK)
Funding: the study was supported

by The Ministry of education and science of the Russian Federation.

The project is implemented under the guidance of the invited foreign scientist

The project involves three PhD, 6 PhD students and 6 students from MIIGAiK

Using space and UAVs remote sensing data in emergency situations

Using open source technologies for making Emergency web-portal

Creating multimedia educational online content


“Project 14.B37.21.1243”WGL-EGL Joint Tech Meeting, September 19-21, 2013Moscow State University of Geodesy and Cartography (MIIGAiK)Funding: the

Слайд 4 “Project 14.B37.21.1243”
Moscow State University of Geodesy and Cartography (MIIGAiK)
Town

Alatyr, Chuvashia region

Yandex maps (geoportal)

“Project 14.B37.21.1243”Moscow State University of Geodesy and Cartography (MIIGAiK)Town Alatyr, Chuvashia regionYandex maps (geoportal)

Слайд 5Town Tikhvin (near Saint-Petersburg)
EROS-B (21 April 2013)
Yandex maps (geoportal)

“Project 14.B37.21.1243”
Moscow State University of Geodesy and Cartography (MIIGAiK)

Town Tikhvin (near Saint-Petersburg) EROS-B (21 April 2013)Yandex maps (geoportal) “Project 14.B37.21.1243”Moscow State University of Geodesy and

Слайд 6Settlement Korostovo
EROS B (2 May 2013)
Kosmosnimki.ru (geoportal)
“Project 14.B37.21.1243”
Moscow State

University of Geodesy and Cartography (MIIGAiK)

Settlement KorostovoEROS B (2 May 2013)Kosmosnimki.ru (geoportal) “Project 14.B37.21.1243”Moscow State University of Geodesy and Cartography (MIIGAiK)

Слайд 7 “Multi rotary UAV
in Project 14.B37.21.1243”
WGL-EGL Joint Tech Meeting,

September 19-21, 2013
Moscow State University of Geodesy an Cartography (MIIGAiK)
”Vyacheslav

Barbasov, Pavel Orlov,
from Moscow
“Multi rotary UAV in Project 14.B37.21.1243”WGL-EGL Joint Tech Meeting, September 19-21, 2013Moscow State University of Geodesy

Слайд 8unmanned aircraft «PTERRO» with camera CANON
Tests on the MIIGAiKs geodesic

test area
UAV developed in MIIGAiK: SCB “Impulse”
WGL-EGL Joint Tech Meeting,

September 19-21, 2013
unmanned aircraft «PTERRO» with camera CANONTests on the MIIGAiKs geodesic test areaUAV developed in MIIGAiK:  SCB

Слайд 9UAV developed in MIIGAiK: SCB “Krechet”

UAV developed in MIIGAiK:  SCB “Krechet”

Слайд 11Multirotor UAV, which is developed in SCB MIIGAiK «Krechet», – octocopter

«Dreadnought». This drone can be used to receive snapshots, applicable

in map (or site plan) creating/updating, forming of digital terrain model, making 3D-models of buildings and objects, thermographic maps, panoramic surveying and also monitoring of natural and manmade emergencies development.

WGL-EGL Joint Tech Meeting, September 19-21, 2013

“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

Multirotor UAV, which is developed in SCB MIIGAiK «Krechet», – octocopter «Dreadnought».  This drone can be used

Слайд 12Functions & elements of ground control
When we

use multirotor UAV in cartographic monitoring, it must be considered

as a complex with its equipment (instrumentation) and payload. Its called UAS – Unmanned Aircraft System. UAS consist of payload and ground control. What is it for?

- Automatic flight control;
- Flight navigation;
- Flight task input and processing;
- Setting up a wireless link with an operator;
Data receiving, processing and storage
(Video and Telemetry);
- Input of UAV control signals.

“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013

Functions & elements of ground control   When we use multirotor UAV in cartographic monitoring, it

Слайд 13Data, which is receiving by operators
“Multi rotary UAV in

Project Project 14.B37.21.1243”
Moscow State University of Geodesy and Cartography (MIIGAiK)
WGL-EGL

Joint Tech Meeting, September 19-21, 2013
Data, which is receiving by operators “Multi rotary UAV in Project Project 14.B37.21.1243”Moscow State University of Geodesy

Слайд 14Flowchart of multirotor UAV «Dreadnought» data sending from it to

GIS data base & end-user

Flowchart of multirotor UAV «Dreadnought»  data sending from it to GIS data base & end-user

Слайд 15What can you find in UAV payload?
- Digital camera (including

Video camera)
- Thermographic camera
- IR-camera
- Radiolocation equipment (Sonar)
- Geiger counter


“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013

What can you find in UAV payload?- Digital camera (including Video camera)- Thermographic camera- IR-camera- Radiolocation equipment

Слайд 16Examples of UAV “Dreadnought” survey: Altitude: 100 meters Camera: Canon 550D Camera lens:

18 mm Overlap: 65% Flight duration: 8 minutes Flight speed on a route:

5 meters/sec

Data processing, orthoimages creation, 3D terrain modeling etc are making on Russian software such as: Agisoft Photoscan&Stereoscan, Racurs Photomod, Scanex ImageProcessor, Panorama GIS-Karta.

“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

Examples of UAV “Dreadnought” survey: Altitude: 100 meters Camera: Canon 550D Camera lens: 18 mm Overlap: 65%

Слайд 17MIIGAiKs geodesic test area
3D terrain model proceed on UAV images

“Multi rotary UAV in Project Project 14.B37.21.1243”
Moscow State University of

Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013

MIIGAiKs geodesic test area3D terrain model proceed on UAV images “Multi rotary UAV in Project Project 14.B37.21.1243”Moscow

Слайд 18Survey of fires in Smolensk region, near town Gagarin, with

wide-angle camera lens

Survey of fires in Smolensk region, near town Gagarin,  with wide-angle camera lens

Слайд 19The ways of multirotor UAV usage in environment monitoring:
Cartographic monitoring
Topographic

survey
Multispectral survey
Thermographic survey
Geology
Cadastre (stereo image)
Emergency control
Tasks of agro-industrial complex
Snapshots

for 3D modeling
Agriculture: control of farms & fields condition
Ecological monitoring:
- radiation;
- chemical pollution;
- bacteriological pollution.


“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013

The ways of multirotor UAV usage in environment monitoring: Cartographic monitoringTopographic surveyMultispectral surveyThermographic surveyGeology Cadastre (stereo image)Emergency

Слайд 20Usage of results in studying & education
Experience of UAV development,

its usage and data processing embeds in educational program of

MIIGAiK.
One of the main tasks of our project is a development of special educational courses.

“Multi rotary UAV in Project Project 14.B37.21.1243”

Moscow State University of Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013

Usage of results in studying & educationExperience of UAV development, its usage and data processing embeds in

Слайд 21 “On development of open-source portal for use of the

remotely sensed data in emergency situations response applications scenarios”
WGL-EGL Joint

Tech Meeting, September 19-21, 2013

Moscow State University of Geodesy and Cartography (MIIGAiK)

Igor Kostrukov, Eugene Stovolosov
from Moscow

“On development of open-source portal for use of the remotely sensed data in emergency situations response

Слайд 22WGL-EGL Joint Tech Meeting, September 19-21, 2013
“On development of

open-source portal …”
Moscow State University of Geodesy and Cartography (MIIGAiK)

WGL-EGL Joint Tech Meeting, September 19-21, 2013 “On development of open-source portal …”Moscow State University of Geodesy

Слайд 23 Portal Interface
WGL-EGL Joint Tech Meeting, September 19-21, 2013

“On development of open-source portal …”
Moscow State University of Geodesy

and Cartography (MIIGAiK)
Portal InterfaceWGL-EGL Joint Tech Meeting, September 19-21, 2013 “On development of open-source portal …”Moscow State

Слайд 24 Layers
Tile Layers
WMS Layers
WFS Layers

WGL-EGL Joint Tech

Meeting, September 19-21, 2013
“On development of open-source portal …”
Moscow

State University of Geodesy and Cartography (MIIGAiK)
LayersTile LayersWMS LayersWFS LayersWGL-EGL Joint Tech Meeting, September 19-21, 2013 “On development of

Слайд 25 Layers
Tile Layers
WMS Layers
WFS Layers

WGL-EGL Joint Tech Meeting, September

19-21, 2013
“On development of open-source portal …”
Moscow State University

of Geodesy and Cartography (MIIGAiK)
LayersTile LayersWMS LayersWFS LayersWGL-EGL Joint Tech Meeting, September 19-21, 2013 “On development of open-source portal

Слайд 26 Added WMS Layers
WGL-EGL Joint Tech Meeting, September 19-21,

2013
“On development of open-source portal …”
Moscow State University of

Geodesy and Cartography (MIIGAiK)
Added WMS LayersWGL-EGL Joint Tech Meeting, September 19-21, 2013 “On development of open-source portal …”Moscow

Слайд 27Portal on Mobile Devices
Based on “Phonegap” by Cordova
Could save map

layers and show it in off-line mode
Better geolocation
WGL-EGL Joint Tech

Meeting, September 19-21, 2013

“On development of open-source portal …”

Moscow State University of Geodesy and Cartography (MIIGAiK)

Portal on Mobile DevicesBased on “Phonegap” by CordovaCould save map layers and show it in off-line modeBetter

Слайд 28 3D Data
Based on Web-GL technology
Spatial Data

from UAV
3D models from Photoscan
WGL-EGL Joint Tech Meeting, September 19-21,

2013

“On development of open-source portal …”

Moscow State University of Geodesy and Cartography (MIIGAiK)

3D DataBased on Web-GL technologySpatial Data from UAV3D models from PhotoscanWGL-EGL Joint Tech

Слайд 29 “On development of open-source portal …”
Moscow State University of

Geodesy and Cartography (MIIGAiK)

“On development of open-source portal …”Moscow State University of Geodesy and Cartography (MIIGAiK)

Слайд 30Thank You for Your Attention!
WGL-EGL Joint Tech Meeting, September 19-21,

2013
Moscow State University of Geodesy and Cartography (MIIGAiK)

Thank You for Your Attention!WGL-EGL Joint Tech Meeting, September 19-21, 2013Moscow State University of Geodesy and Cartography

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