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SC – VRS Network To Support Surveying and Machine Control
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Presentation Overview Introduction VRS Network Design Antenna Mounting Designs Server Network Design Modeling Network Testing Network Integrity Practical Applications
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South Carolina Geodetic Survey Marine Transportation Highway Construction Obstruction Charting Utilities Surveying Engineering Mapping Infrastructure
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Motivating Force for a Network Application
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Antenna Hardware Stainless Steel Mount For Masonry Buildings Self Supporting 24 Foot Tower Tamper-Proof Leveling Head
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Server Network Design Should IT Be a Shareholder? 5 6 7
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Modeling ??? I(λ,φ) = I 0 +a λ ∆λ + a φ ∆φ 1 cm -1 cm 2 – 12hr Multipath Plots Areal Variant Ionospheric Model The solution of Integer Ambiguity is influenced by external variables Atmosphere - Tropo, Ion Clock Error - SV and Receiver SV Orbit Error Multipath Separation of Base and Rover
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SC - VRS Network Design VRS Is Not Built In a Day! There Are Many Stakeholders!! They Are ALL Critical To Your Success
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Test Network 11 Counties, 6700 Sq Mi, 10 VRS Base Stations, 50 Control Pts
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VRS Absolute Accuracy Comparison of VRS and NGS Height Mod Control Absolute Accuracy Meters Allowable 2-D RMSE r 95% = 1.7308 * RMSE r = (2.0*2.0 + 0.3*0.3 + 1.2*1.2) 1/2 = 2.4 cm* Allowable 1-D RMSE v 95% = 1.9600*RMSE v = (2.0*2.0 + 0.3*0.3 + 2.4*2.4) 1/2 = 3.1 cm* Time (sec)300605 Horizontal (cm)1.982.402.41 Vertical (cm)2.252.392.40 *(Local Accuracy 2 + Eccentricty 2 + System Design 2 ) 1/2
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Station SCBY Vertical Axis -0.010 to 0.014m
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Poor Choice for a Base Station! Vertical Axis -0.04 to 0.055m Diurnal E-W Motion of a 90 Foot Spun Concrete Tower
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-3.0 -2.0 -1.0 0.0 1.0 2.0 3.0 Centimeters Each Depicted Value Is A Mean Of Two 5-Minute Observations Spaced Approximately 21 or 27 Hours Apart 95% Less Than 2.5 CM From Published Value Results From Test Of The SC RTN to Determine Accurate Ellipsoid Heights
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Practical Applications
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Tidal Datum Transfer 2 mile transfer 0.05 ft uncertainty VRS Elevation (ft)Leveling (ft)Difference 4.5574.5600.003 4.4884.482-0.007 4.4234.4360.013 4.6564.649-0.007 4.3274.3370.010 4.528 0.000 4.8104.800-0.010 4.9414.9480.007 Mean/SDV0.001/0.008
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Classical Leveling vs VRS 1 st Order Class 2 Leveling 4 Surveyors 4 days 5.5km – 6mm 1 Surveyor 4 hours 12mm comparison VRS Elevation (ft)Leveling (ft)Difference 4.5574.5600.003 4.4884.482-0.007 4.4234.4360.013 4.6564.649-0.007 4.3144.265-0.049 4.3274.3370.010 4.528 0.000 4.8104.800-0.010 4.9414.9480.007 4.9645.0200.056 Mean/SDV0.002/0.025
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Comparison of VRS to Total Station Relative Accuracy Grid BrgAngle RtGrd Dist TPT1SURVEY068/00/55 TPT1TPT2207/30/58220/29/57544.669VRS 220/29/55.2 544.678Total Station 139/30/03Interior Angle TPT2TPT1027/30/58 TPT2TPT3198/49/59188/40/59957.778VRS 188/40/57.2957.769 Total Station 171/19/01Interior Angle TPT3TPT2018/49/59 TPT3SURVEY038/08/33340/41/262165.470VRS 340/41/27.52165.441 Total Station 019/18/34Interior Angle SURVEYTPT1248/00/55837.523VRS 837.500 Total Station SURVEYTPT3218/08/33029/52/22Interior Angle 029/52/21.0 360/00/00VRS 359/59/59.1Total Station
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Ellipsoid Height Distortions of 3CM or Greater
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Network vs OPUS -0.020-0.016-0.004 -0.032-0.021-0.011 -0.015-0.012-0.003 -0.022-0.020-0.002 -0.013-0.0150.002 -0.020-0.017-0.003 -0.024-0.015-0.009 -0.041-0.015-0.026 -0.007-0.0080.001 -0.011-0.0120.001 -0.018-0.012-0.006 -0.021-0.018-0.003 -0.0120.009 -0.048-0.020-0.028 -0.044-0.019-0.025 -0.028-0.018-0.010 -0.024-0.0260.002 -0.026-0.025-0.001 -0.027-0.024-0.003 -0.037-0.023-0.014 -0.035-0.024-0.011 -0.017-0.0230.006 -0.022-0.021-0.001 -0.049-0.026-0.023 -0.025-0.019-0.007 -0.0120.0050.010 2 – 10 Minute Sessions Separated by 27 Hours Mean Std Dev Pub-ObsPub-PredObs-Pred Predicted values are weighted* means of the Network-OPUS Differences *Weight Equals Ratio of Base Station Separation Multiplied by Assumed Error
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Network Integrity 24-Hour Coordinate Spread 1 cm N & E 1.5 cm Ellipsoid Ht Semi-Major Axis ~ 1 cm
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Concluding Remarks Number of Registered Users Maintenance Plan Replacement Plan Integrity Monitoring Cost Subscription Fee Questions?
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