Kongsberg Maritime Product overview

Similar documents
KONGSBERG seafloor-mapping echosounders

BRINGING CLARITY TO THE WORLD BELOW THE COMPLETE UNDERWATER MAPPING PRODUCT RANGE

Experiences with Hydrographic Data Budgets Using a Low-logistics AUV Platform. Thomas Hiller Teledyne Marine Systems

Survey Sensors. 18/04/2018 Danny Wake Group Surveyor i-tech Services

SYSTEM 5900 SIDE SCAN SONAR

Sonar advancements for coastal and maritime surveys

EK60. SCIENTIFIC SOUNDER SCIENTIFIC ECHO SOUNDER

global acoustic positioning system GAPS usbl acoustic with integrated INS positioning system Ixsea Oceano GAPS page 1

Sonars TECHNOLOGY FOR SUSTAINABLE FISHERIES

GeoSwath Plus Wide swath bathymetry and georeferenced side scan

Teledyne Marine Acoustic Imagining

Seafloor Mapping Using Interferometric Sonars: Advances in Technology and Techniques

Applications of iusbl Technology overview

Side-Scan Sonar Presentation STS

Company Profile. Facilities

Positioning Small AUVs for Deeper Water Surveys Using Inverted USBL

Lake Borgne, Louisiana Debris Mapping

EM 710. Multibeam echo sounder

Multibeam Echosounder Metadata and Quality Statistics

The limits of spatial resolution achievable using a 30kHz multibeam sonar: model predictions and field results.

Echosounders TECHNOLOGY FOR SUSTAINABLE FISHERIES

Handling Interferometric Data: Streamlining the Processing Flow

Pioneers of Wideband High Resolution Multibeam Systems

Ongoing Developments in Side Scan Sonar The pursuit of better Range, Resolution and Speed

Simrad SX90 Long range high definition sonar system

Tritech International Vehicle Sonar Developments

INTRODUCING AN OPERATIONAL MULTI-BEAM ARRAY SONAR

PRINCIPLE OF SEISMIC SURVEY

Pipeline Inspection and Environmental Monitoring Using AUVs

Mid-Frequency Reverberation Measurements with Full Companion Environmental Support

Motion Reference Units

R/V Falkor Multibeam Echosounder System Review

UNDERWATER NOISE, MARINE SPECIES PROTECTION, AND IMPLICATIONS FOR MARINE SURVEYS. Presenter: Denise Toombs Company: ERM

Semi-buried seabed object detection: Sonar vs. Geophysical methods

Research Vessel Technical Enhancement Committee (RVTEC) November 2009 Meeting ISS - Integrated Survey Systems

Object Detection with Phase-Measuring Bathymetric Sidescan Sonar Depth Data

Multi-Beam Echo Sounders do beam width, frequency, number of beams matter? James Williams Managing Director

DP Operator Course Training Manual HPR

Automation at Depth: Ocean Infinity and seabed mapping using multiple AUVs

SONOGRAPHIC PHYSICS, INSTRUMENTATION & DOPPLER REVIEW Part 3

SONARMITE v4.0 MTX sweep version - PORTABLE BLUETOOTH ECHO SOUNDER

Gyrocompass and motion sensor. octans. navigation and positioning

ASO 713/723 Hull-Mounted Active Sonar

OFFSHORE ANALYSIS & RESEARCH SOLUTIONS HOUSTON PETROLEUM SURVEYORS GROUP PERSONNEL DATA PROCESSING PARTNERSHIPS

General Catalog UNDERWATER SCIENCE PRODUCTS TECHNOLOGY FOR SUSTAINABLE FISHERIES

Increased Safety and Efficiency using 3D Real-Time Sonar for Subsea Construction

Robots at Work The growing role of robotic systems in the Oceans and Subsea Engineering. David Brookes Senior Advisor, Upstream Engineering, BP

RVIB Nathaniel B. Palmer EM122 Multibeam Echosounder Sea Acceptance Trial for TX/RX Arrays NBP1505 June 10-15, 2015

Teledyne Marine Oil and Gas.

R/V Falkor Multibeam Echosounder System Calibration September 22 24, 2014

EGYPTIAN HYDROGRAPHIC DEPARTMENT THE EGYPTIAN HYDROGRAPHIC FRAMEWORK

Single Source For Subsea Solutions

Responsive AUV Localization and Mapping Project. Ron Lewis, Project Manager June 14 th, 2012

Synthesis of acoustic images of underwater targets

Inertial Systems. Ekinox 2 Series TACTICAL GRADE MEMS. Motion Sensing & Navigation IMU AHRS MRU INS VG

Inertial Systems. Ekinox 2 Series TACTICAL GRADE MEMS. Motion Sensing & Navigation IMU AHRS MRU INS VG

Tilted Element Chirp Transducers

Shallow Water Array Performance (SWAP): Array Element Localization and Performance Characterization

Multibeam data quality assurance at Genavir. Karine Abel Michaux

How deep do you want to go?

Using synthetic aperture sonar as an effective hydrographic survey tool

Progress Report. Mohammadtaghi G. Poshtmashhadi. Supervisor: Professor António M. Pascoal

WASSP S3 MULTIBEAM FOR SURVEY & MAPPING EXPLORE IT ALL

R/V Falkor Multibeam Echosounder System Review

Motion Reference Units

Outline. Introduction to Sonar. Outline. History. Introduction Basic Physics Underwater sound INF-GEO4310. Position Estimation Signal processing

The Evolution of Fisheries Acoustics. LO: Identify and sequence hardware and analytic contributions made to Fisheries Acoustics.

Modeling high-frequency reverberation and propagation loss in support of a submarine target strength trial

UNR 6285 Deep Underwater Compatible Wi-Fi Antenna Development Hector Fabian Guarnizo Mendez,

ENVIRONMENTAL ASSESSMENT (EA) PROCESS

Old House Channel Bathymetric and Side Scan Survey

Proper Environmental Reduction for Attenuation in Multi-sector Sonars

Coherent Marine Radar. Measurements of Ocean Wave Spectra and Surface Currents

UNDERWATER SCIENCE. Single Beam Systems TECHNOLOGY FOR SUSTAINABLE FISHERIES

Development of Mid-Frequency Multibeam Sonar for Fisheries Applications

Evolution of Sonar Survey Systems for Sea Floor Studies.

Fugro commence new Airborne Lidar Bathymetry trials

Eelume: A Resident Subsea IMR Vehicle. Peter Bennett Business Manager Subsea Kongsberg Maritime

MINE SEARCH MISSION PLANNING FOR HIGH DEFINITION SONAR SYSTEM - SELECTION OF SPACE IMAGING EQUIPMENT FOR A SMALL AUV DOROTA ŁUKASZEWICZ, LECH ROWIŃSKI

Generic Bathymetry Data - Interface Control Document

SIS-1624 Dual Frequency Side Scan

Subsea Monitoring & Mapping

Inertial Navigation System

AN AIDED NAVIGATION POST PROCESSING FILTER FOR DETAILED SEABED MAPPING UUVS

New Tools for Water Column Feature Detection, Extraction, and Analysis

Sampling the World in 3D by Airborne LIDAR Assessing the Information Content of LIDAR Point Clouds

High precision hydrography The St. Lawrence River channel HD Bathymetry, Production, Distribution and Updating

Multibeam Water Column Imaging : Improved Wreck Least-Depth Determination

The Normal Baseline. Dick Gent Law of the Sea Division UK Hydrographic Office

Eelume: The Next Evolution in Underwater Robotics. Richard Mills Director of Sales Marine Robotics Kongsberg Maritime AS

Survey Operations Pipeline Inspection

SeaWATCH ADCP. Self-Contained 300 khz / 600 khz / 1200 khz

HIGH RESOLUTION MULTI-BEAM SIDE LOOKING SONAR ANDRZEJ ELMINOWICZ, LEONARD ZAJĄCZKOWSKI

SONOBOT AUTONOMOUS HYDROGRAPHIC SURVEY VEHICLE PRODUCT INFORMATION GUIDE

Test Results from a Multi-Frequency Bathymetric Synthetic Aperture Sonar

UNDERWATER REMOTE MONITORING SOLUTIONS ABOVE THE SPACE AND THE TIME SERIES LIMITS

SUBSEA SYSTEM ARCHITECTURE FOR CORAL SOUTH FLNG

BURIED OBJECT SCANNING SONAR (BOSS)

Starfix-StarPack. Offshore Survey Division. Image : Width 188mm. StarPack Unit. Image : Width 78mm this column must always be. used for images only

INS for life of field

Transcription:

Kongsberg Maritime Product overview / 1 / 1-Nov-12

Frequency Range Coverage 125,250,500kHz 0.5-200m 12xD 200-400kHz 0.5-500m 5.5xD / 140-200 deg 300 khz 0.5-270m 4-10xD / 130-200 deg 70-100 khz 3-2000m 5.5xD / 140 deg 30 khz 10-7000m 5.5xD / 140 deg 12 khz 50-11000m 6xD / 150 deg 2.5-7 khz 20-11000m 3,6,12 degree 0.5 6 khz 20 11000m 5 degree 1 10 khz 4 1000m 5 degree 2 12 khz Towed 55 degree 12-710kHz 0.5-11000m S 114/410 khz Towed 70-100 khz AUV >400m Number of system sold: >900 EM multibeams systems / >1250 EA singlebeam systems

Geoswath+ Wide swath bathymetry system Applications from shallow to very shallow water surveys Key features: - 125 / 250 and 500 khz version available - Max range >200, 100 and 50 m - Dual transducer system - Max coverage 780 / 390 and 195m or >12x D (240dg) - Along track beam width 0.85 (125), 0.75(250), 0.5(500) - Depth resolution 6mm(125), 3mm(250), 1.5mm(500) - Pulse length 32 μs to 896 μs - Pingrate >30Hz - For ROV / AUV - Transducer depth rating 4000m

Geoswath+ Wide swath bathymetry system

Geoswath+ Wide swath bathymetry system

True wide band and high resolution Multibeam echosounder Applications from very high resolution inspection to shallow water surveys Key features: - 200 400 khz operating frequency - Max range >500m - Single and dual RX - Max coverage >500m, 140dg(S)/200dg(D) - Dual swath with 800 soundings - Sector transmitting, 3 sectors - Modular design 0.5x1 and 1x1 (300kHz) - Pingrate >50Hz - Pulse length from <20ms to 600us using FM chirp and CW - Roll, pitch compensated - Roll, pitch, yaw stabilized - Transducer depth rating 6000m

True wide band and high resolution Multibeam echosounder

True wide band and high resolution Multibeam echosounder Victor Hensen installation: 0.5 * 1 degree Dual swath Concrete target 2*8 m One half is 50 cm higher A 1 m tower at the corner, 30*30 cm at top. 19 m depth 1 30*30 cm 400 khz, 50 us, one single line, gridded. 0.5 @Fugro OSAE, Victor Hensen 8 2

True wide band and high resolution Multibeam echosounder ROV test at 2000m depth GOM Courtesy of Chevron

High resolution wide band Medium water Multibeam echosounder Applications from high resolution to medium water survey Key features: - Operating frequency 70 to 100 khz - Max range >2000m - Max coverage >2500m / 140dg - Modular design, from 0.5x1 to 2x2 degree beam width - Dual swath with 800 soundings - Sector transmitting, 3 sectors for increased performance - Pingrate >30Hz - Pulse length from 0.2ms to 120ms utilizing CW and FM - Dynamic focusing on both transmit and receive - Roll, pitch compensated Shoal of fish - Roll, pitch, yaw stabilization - Compliance with IHO Special order

High resolution wide band Medium water Multibeam echosounder Applications from high resolution to medium water survey Shoal of fish

High resolution wide band Medium water Multibeam echosounder Applications from high resolution to medium water survey Shoal of fish

Deep water Multibeam echosounder Applications from medium to deep water surveys, for the continental rise including the shallower ocean basins, down to 7000m. Key features: - Operating frequency 26 to 34 khz - Max range >7000m - Max coverage >8000m / or 140dg - Modular design, from 0.5x1 to 4x4 degree beam width - Dual swath with 864 soundings - Sector transmitting, 8 sectors - Pingrate >10Hz - Pulse length from 0.7ms to 30ms using FM chirp and CW - Dynamic focusing both on transmit and receive - Roll, pitch compensated - Roll, pitch, yaw stabilized - Compliant with IHO Order 1

Deep water Multibeam echosounder Applications from medium to deep water surveys, for the continental rise including the shallower ocean basins, down to 7000m.

Deep water Multibeam echosounder Applications from medium to deep water surveys, for the continental rise including the shallower ocean basins, down to 7000m. Bubbles from Subsea Chimney, detected Using Water column From Courtesy of NOAA, Okeanos Explorer

Deep water Multibeam echosounder Applications from medium to full ocean depth. Key features: - Operating frequency 10.5 to 13 khz - Max range >full ocean depth - Coverage >30-35km / 150dg - Modular design, from 0.5x1 to 2x4 degree beam width - Dual swath with 864 soundings - Sector transmitting, 8 sectors, for increased performance - Pingrate >5Hz - Pulse length from 2ms to 30ms, using FM chirp and CW - Dynamic focusing both on transmit and receive - Roll, pitch compensated - Roll, pitch, yaw stabilized - Compliant with IHO Order 1

Deep water Multibeam echosounder Applications from medium to full ocean depth.

Deep water Multibeam echosounder Applications from medium to full ocean depth. Courtesy of NAVO 41209 meter across 62/61º coverage Detailed mapping of the Gakkel Ridge, 4000m Courtesy of University of Stockholm

EA 400 / EA 600 hydrographic singlebeam echosounders Key features: - EA 400 operating frequency 33 710 khz - EA 600 operating frequency 10 710 khz - Up to 4 channels per system - 2 channels per GPT