ADCP Compass Calibrations

Slides:



Advertisements
Similar presentations
on the Trimble Geo 7X handheld
Advertisements

Patch Testing HYPACK 2013.
FlowTracker Bias Caused by Flow Disturbance David S. Mueller Office of Surface Water U.S. Geological Survey The use of trade or brand names does not imply.
Navigation Study Guide
Flight Instrument Systems
Introduction to Acoustic Measuring Equipment
Maine Water Science Center
U.S. Department of the Interior U.S. Geological Survey Effective Review of FlowTracker Measurements OSW WebinarMike Rehmel August 27, 2013 (Please Mute.
Techniques and Methods 3-A22
RD Instruments Home of the ADCP Measuring Water in Motion and Motion in Water THETIS Waves Data QA RD Instruments Home of the ADCP.
Multiple Indicator Cluster Surveys Survey Design Workshop
Silver Training Compass use
Overview of ADCP “Best Practices” Report
PATCH TEST HYPACK ® MULTIBEAM COURSE
Systems Review 3 ATC Chapter 4.
AIR NAVIGATION Part 7 Magnetic Fields and The Compass.
Magnetic fields.
Review and Rating Discharge Measurements David S. Mueller Office of Surface Water March 2010.
Know your stuff and stay found.
Get Acquainted with the Latest Versions of LC & SMBA USGS, TRDI, and SonTek Versions David S. Mueller, OSW April, 2013.
EXPERIMENTAL ERRORS AND DATA ANALYSIS
Cutnell/Johnson Physics 8th edition
Quality Assurance and Quality Control Processes for Current Measurements From USCG ATONs Jennifer Dussault Qartod II February 28,2005.
Electromagnetic Flowmeter Why use flow meters What is a magnetic flow meter – How do they work – How are the different from other meters Items that will.
Principle of Index-Velocity Method and its Application Randy Marsden Teledyne RD Instruments.
Summary of GPS Testing (GGA and VTG)
#4918. When an airplane is accelerated, some attitude indicators will precess and incorrectly indicate a A- climb. B- descent. C- right turn.
Predictions of Solar Wind Speed and IMF Polarity Using Near-Real-Time Solar Magnetic Field Updates C. “Nick” Arge University of Colorado/CIRES & NOAA/SEC.
Review and Rating of Moving-Boat ADCP Q Measurements
David S. Mueller U.S. Geological Survey Office of Surface Water
Accuracy Assessment. 2 Because it is not practical to test every pixel in the classification image, a representative sample of reference points in the.
by Richard J. Terwilliger Click on a Created by Richard J. Terwilliger July 2001.
Leading Cadet Training
PHYSICAL SCIENCE II Motion. Why is being able to describe motion important?
ADCP Discharge Measurement Procedure Or: How to get the best data every time.
Trimble GCS900 Dual Antenna System Why Trimble uses a Dual Antenna Solution and why it is the better solution?
Aviation Seminars1 #3248. Which instrument will become inoperative if the pitot tube becomes clogged? A- Altimeter. B- Vertical speed. C- Airspeed.
Optical Manufacturing Solutions 1 FOLLOW THE DIRECTIONS BELOW AFTER INSTALLING A NEW CUTTER BODY WITH POLISHING WHEELS INTO THE 7E TYPE MACHINES. IT IS.
LC and SMBA Updates Office of Surface Water Hydroacoustics Webinar January 6 and 9, 2008 David S. Mueller.
Charting for Beginners. Essential Questions… How do you use a compass? How do you use a compass? How do you use the tools while charting? How do you use.
Introduction to WinRiver II
What is a magnetic field? a-magnetic-field.html
HYSWEEP® PATCH TESTING.
ORIENTEERING. Orienteering, What Is It? Orienteering is a competition to find in in the woods. The person who finds all the in the fastest time, wins.
Lesson 10 The Fields of Accelerating Charges. Class 29 Today we will: learn about threads and stubs of accelerating point charges. learn that accelerating.
U.S. Department of the Interior U.S. Geological Survey IMPROVING THE QUALITY AND EFFICIENCY OF ADCP STREAMFLOW MEASUREMENTS David S. Mueller U.S. Geological.
Open the software and click “close” after reading the tip. The screen below will come up. You may want to load a sample bridge design for starters. You.
Status Report on Bottom-Tracking ADCPs & ADPs David S. Mueller Office of Surface Water.
Piloting Course Chapter 4 On-the-Water United States Power Squadrons ®
Session III GPS DEPTH-FINDER UNITS. F GPS positions are not error free –User and/or Satellite clock bias. –Satellite signal can be blocked. –Atmospheric.
“Latitude, Longitude, Earth’s Magnetism and Compass Error”
2D Guidance for Excavators on the 3D Display. Configuring a 2D Hex Machine If this was a 2D only display you would only see “Depth and Slope”
Hydrological Information System
By Terry Treutel Ride Quality Consultant Former WisDOT Ride Spec Coordinator.
ST236 Site Calibrations with Trimble GNSS
Patch Testing. HYSWEEP ® Calibration of a Multibeam System Patch Testing Single and Dual Head Multibeam Systems. Patch Testing Single and Dual Head Multibeam.
Deriving Consistency from LEGOs What we have learned in 6 years of FLL by Austin and Travis Schuh © 2005 Austin and Travis Schuh, all rights reserved.
Importance of Testing Hydroacoustic Instruments: USGS Case Studies Kevin Oberg National Coordinator for Hydroacoustics USGS Water Mission Area.
The Measurement of Bed Load Sediment Transport in Rivers and Estuaries using Stationary and Moving ADCP Methods (using workhorse, channel master and stream.
Magnetic Induction 1Physics is Life. Objectives To learn how magnetic fields can produce currents in conductors To understand how this effect is applied.
AiA In Australia 2015 GPS Accuracy And RR/RP Integration.
Finally! Flux! Electromagnetic Induction. Objectives.
National Highway Institute 5-1 REV-2, JAN 2006 EQUIPMENT FACTORS AFFECTING INERTIAL PROFILER MEASUREMENTS BLOCK 5.
Patch Testing. HYSWEEP ® Calibration of a Multibeam System Patch Testing Single and Dual Head Multibeam Systems. Patch Testing Single and Dual Head Multibeam.
Maps & Compasses (Part 2)
Know your stuff and stay found.
Welcome to the random dots experiment!
6.11 Flight Instruments Refs: FTGU pp
Using a Compass What is a compass? How does a compass work?
Manned Boat ADCP Deployment
Presentation transcript:

ADCP Compass Calibrations OSW Policies and Best Practices Webinar October 2011

Today’s Webinar When an accurate compass is necessary for discharge What affects compass accuracy Detecting errors in compass headings Compass calibration techniques Rio Grande StreamPro RiverRay SonTek M9/S5

ADCP Bottom Track When using ADCP Bottom Track and Water Track Boat speed and water speed are in the same coordinate system Valid compass headings not required for accurate discharge (compass optional on StreamPro) Can cause errors in velocity directions, widths areas – (inaccurate loop corrections)

Compass Error can cause loop closure error! 90 120 60 90 Loop closure error ~280 240 270

GPS GPS: compass headings are used to align GPS boat speed with ADCP water speeds. Errors in heading will cause errors in discharge Correct magnetic variation for site Relatively free of magnetic interference Properly calibrated compass True North Magnetic Orientation of Instrument Boat Vector From DGPS ADCP Vector

Affecting Compass Accuracy Structures having local magnetic fields relatively large compared to Earth’s magnetic field: steel truss bridges, bridge piers (steel or concrete full of rebar) – If their orientation changes during transect, the affect can not be calibrated out Rapid/sudden acceleration and/or deceleration Ferrous materials and electromagnetic field interference near ADCP (ferrous parts on mount, steel toolbox on boat, etc)

When to Calibrate Compass Encouraged prior to all ADCP measurements Mandatory Using GPS as reference (GGA or VTG) Using loop method (LC software) to detect and/or correct for moving bed

Calibrate the Deployment Compass calibrations are an attempt to calibrate out heading errors caused by sources near the ADCP and the local area Minimize deployments exposure to potential interference (truck, cell phones, bridge deck, etc) Entire deployment should be moved through the calibration routine when practical Do not simply rotate the ADCP

Compass and Moving Bed Loop Method: preferred MB test – IF you have a calibrated/accurate compass AND can maintain bottom track Stationary MB test: Pick location most likely to have moving bed, do multiple when in doubt, minimum required MB Test (Use when no compass, or compass errors) If there is any doubt in one method collect an additional test with the other method Use GPS or loop method if a moving bed exists. For instruments without a compass or when there are compass errors, do multiple stationary moving bed tests Always use LC or SMBA for corrections GPS is preferred to corrections if valid GPS GGA or VTG data is available

Detecting Compass Errors Calibration errors Watch for compass issues while collecting data LC reporting heading differences warning Loop ending significantly downstream GPS – BT downstream of VTG or GGA on shiptrack Large variations in transect Q when using GPS, not there when using BT If potential compass issue spotted try recalibrating in a different location and/or change location of transects

Compass Error in Shiptrack Flow appears to change direction in shiptrack (compass locking on to steel in pier) – not a calibration issue

LC Compass Warning

Loop Ending Downstream Loop should not end downstream of start point (If you actually returned to start point) Indicates BT and or compass issues Can not be used to determine moving bed

Potential Issues - Compass directional bias in flow direction between reciprocal transects

Rio Grande Compass Calibration Designed to be completed by slowly rotating deployment 360 degrees with minimal pitch and roll (flat calibration) Should be completed in the water or on a flat surface Good calibration should take at least 1 to 2 minutes Calibration reports total error correction applied Always end with an evaluation If total error is > 1 degree repeat calibration and evaluation After several attempts document and proceed with measurement.

StreamPro with a Compass Advantages Correct velocity directions, widths, areas, etc Better QA/QC of data (viewing) Can correct for moving bed using Loop method (LC) Potential to use GPS Compass is in electronics housing so transducer must be in known alignment Place transducer in grooves so that arrow on top point to the front of boat

StreamPro Single Tilt Calibration Recommend Single tilt calibration - Pitch/Roll No (Simple on PDA) Using pitch and roll (advanced on PDA) not practical in field Place deployment in calm water or on flat surface Slowly rotate the boat 360 There are 12 squares that change colors as you rotate The more Green = Good Go slower if they are yellow or red Evaluation immediately after calibration Green – Good Light Green – Acceptable Yellow – within parameters (one or two yellow bars for the entire rotation is OK) Orange – unacceptable (slower rotation required)

Calibration Failure If you rotate too fast, have too much pitch/roll, etc you may get a failure Rerun calibration

RiverRay - Compass Calibration Compass seems more sensitive to sources of interference than previous ADCP’s “S” to start and being slowly rotating Smoothly rotate 360 degrees taking 2 to 3 minutes (> 40 – 50 data points on screen) If slow rotation is not possible, do multiple rotations

RiverRay - Complete Calibration Press “D” after completing at least one rotation and 40 to 50 samples (2-3 minutes) X and Y offsets should be < 200 otherwise repeat TRDI recommends accepting X, Y and Z offsets (option “P”) Evaluation repeats the calibration process

SonTek Calibration with Tethered Boat Compass seems more sensitive to sources of interference than previous ADCP’s Two complete circles while smoothly but significantly pitching and rolling > 1 minute per circle, entire calibration > 2 minutes

SonTek on a Manned Boat Difficult to induce pitch/roll Current best practice – With ADCP attached to mount, but mount detached from boat, hold over mounting point with ADCP oriented as it would be when mounted – pitch and roll as boat rotates in two complete circles

RS Live Compass Calibration The calibration score has two parts M is magnetic distortion which should be very low (less than 10), may be high if there is minimal pitch and roll Q is a calibration score which should be > 3 (the closer to 10 the better) No evaluation routine – repeat calibration if any compass issues noticed during data collection Compass Calibration After completing two complete rotations press the Stop button. The calibration routines will calculate a calibration score and provide brief comments on the results of the calibration. Generally the results should say “Pass”, but the Score is often less than excellent if the pitch and roll were minimal. The calibration score has two parts: M is the magnetic distortion which should be very low (less than 10) Q is a calibration score which should be very high on a scale of 1-10

RS Live LC Flow DUP

Lost BT Impacts Accuracy of Loop Can not be used! 25

Summary Valid compass headings are critical for Loop moving bed tests and when using GPS as reference Compass needs to be accurately calibrated (follow recommendations – duration is important!) Even when you have a “good” calibration, there could be something in the cross section that affects your heading Watch for compass issues while collecting data LC reporting heading differences warning Loop ending significantly downstream GPS – BT downstream of VTG or GGA Large variations in transect Q when using GPS, not there when using BT Do stationary moving bed tests when there seem to be compass issues!