[IGSREPORT-2996] Wk 0864 MIT T2 RNAAC Analyis Report
Thomas
Thomas
Mon Sep 23 18:02:24 PDT 1996
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IGS Electronic Report Mon Sep 23 18:02:24 PDT 1996 Message Number 2996
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Author: Thomas Herring
Subject: Wk 0864 MIT T2 RNAAC Analyis Report
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MIT R/GNAAC ANALYSIS REPORT GPS-WEEK 0864 Dates: 96jul28 to 96aug03
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MIT (Massachusetts Institute of Technology)
Room 54-618
77 Massachusetts Avenue,
Cambridge, MA 02139
e-mail: tah at mtglas.mit.edu
tel: (617)253-5941 (Tom Herring)
fax: (617)253-1699
PRODUCTS GENERATED:
The following products are generated and uploaded into CDDIS @ NASA/GSFC
MIT0864p.SNX RNAAC combination sinex file from all available analysis centers
with the GNAAC sinex files.
MIT0864p.SUM Name of this summary file
1.0 Analysis Procedures:
(1) Each centers sinex solutions are de-constrained before
combination. When center constraints are available, the
constraints are loosened to +-1 meters.
(1.b) Due to numerical stability problems we did not include
PGC in this week's analysis.
(2) Covariance matrices from each center are re-scaled based
on the change in chi**2 when the RNAAC's sinex file is
combined with the loose combination of the GNAAC's
sinex files. To generate reasonable sigmas, the scale factor
is set at 0.3 times the chi**2/degree of freedom increment.
(3) The tight solution is generated with the following constraints on
the ITRF94 core sites. In this analysis, the loose g-sinex file
is combined with the RNAAC sinex files.
Sig N Sig E Sig U
(m) (m) (m)
TROM 0.004 0.004 0.004
MADR 0.003 0.003 0.003
KOSG 0.003 0.003 0.005
WETT 0.002 0.002 0.003
HART 0.004 0.004 0.004
ALGO 0.003 0.003 0.003
YELL 0.003 0.003 0.004
GOLD 0.004 0.004 0.005
FAIR 0.003 0.003 0.003
KOKB 0.003 0.003 0.003
SANT 0.004 0.004 0.004
TIDB 0.004 0.004 0.004
YAR1 0.004 0.004 0.005
Earth rotation parameters are estimated for each center (even when not given
in the original SINEX files. In this case the partial derivatives are
computed from the station coordinates).
(4) The summary below gives
(a) The RMS difference between the GNAAC loose analysis and
the GNAAC+RNAAC loose analysis. If this RMS is small then the
RNAAC combination is not effecting the global coordinates solution
significiantly.
(b) For each RNAAC Center we give:
(b.1) the VARIANCE rescaling factors used (determined as
discussed above) and
(b.2) the adjustment to the apriori coordinates
of the sites for each RNAAC which are not included in the GNAAC
analyses. The apriori coordinates are based on the analysis
of the first five weeks of RNAAC sinex files. When an RNAAC
has no unique sites, the adjustments are given for all sites
in the center based on the analysis from that center alone.
SUMMARY OF POSITIONS FOR WEEK 0864
IMPACT OF RNAACs on GNAAC Loose solution
RMS change over 94 stations: 2.17 mm
CENTER RESULTS
For Center ASI VARIANCE FACTOR 1
Site dN +- dE +- dU +- Center
(mm) (mm) (mm) (mm) (mm) (mm)
THUL 3.0 1.2 -10.6 1.2 -25.9 2.1 Center ASI
For Center EUR VARIANCE FACTOR 1
Site dN +- dE +- dU +- Center
(mm) (mm) (mm) (mm) (mm) (mm)
CAGL -14.1 1.2 6.2 1.2 -8.2 1.1 Center EUR
MEDI -13.9 1.2 5.6 1.2 -13.3 1.1 Center EUR
VENE -14.3 1.2 3.0 1.3 -10.8 1.2 Center EUR
For Center GIA VARIANCE FACTOR 1
Site dN +- dE +- dU +- Center
(mm) (mm) (mm) (mm) (mm) (mm)
BOGO -9.4 1.2 6.4 1.2 -21.6 1.3 Center GIA
CAGL -14.1 1.2 6.2 1.2 -8.2 1.1 Center GIA
DELF 0.5 1.1 -9.0 1.2 -20.0 1.2 Center GIA
DENT -1.9 1.1 -12.1 1.2 -19.2 1.2 Center GIA
DOUR -4.8 1.1 -5.5 1.2 -21.9 1.2 Center GIA
HFLK -11.4 1.2 0.8 1.2 -19.4 1.1 Center GIA
MEDI -13.9 1.2 5.6 1.2 -13.3 1.1 Center GIA
PENC -11.1 1.2 8.2 1.2 -15.8 1.2 Center GIA
SFER -14.5 1.4 7.3 1.4 -14.2 6.9 Center GIA
WARE -2.9 1.1 -7.9 1.2 -18.6 1.2 Center GIA
For Center GSI VARIANCE FACTOR 26.65
Site dN +- dE +- dU +- Center
(mm) (mm) (mm) (mm) (mm) (mm)
AIS1 -12.8 3.6 -1.8 6.3 -7.6 11.0 Center GSI
BAY1 -14.1 5.6 -13.8 10.1 5.1 14.8 Center GSI
GUS1 -10.4 5.0 -4.3 8.1 -13.5 12.2 Center GSI
KDK1 -8.8 4.0 -6.9 6.9 -3.3 11.9 Center GSI
KEN1 -9.5 6.7 -3.5 10.6 -15.8 17.0 Center GSI
PENT -11.9 2.1 -3.2 3.9 -19.2 8.8 Center GSI
[Mailed From: Tom Herring <tah at mtglas.mit.edu>]
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