[IGSREPORT-6097] Wk 1010 GPS Earth Orientation

IERS IERS
Fri May 21 10:44:40 PDT 1999


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IGS Electronic Report    Fri May 21 10:44:40 PDT 1999      Message Number 6097
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Author: IERS Sub-bureau for Rapid Service and Predictions
Subject: Wk 1010 GPS Earth Orientation

Subject: Earth Orientation Contributions to IERS Bulletin A
Date: 20 May 99


In this report, individual Earth orientation time series are compared
to the IERS Bulletin A combination.  For further information, including
the raw time series, refer to http://maia.usno.navy.mil/bulletin-a.html.

The first table below shows some comparison results for those series
included in Bulletin A during the last 30 days.  All data are aligned to
the system defined by ITRF94 and the current ICRF by removing a priori mean
bias, rate, annual and semiannual terms.  (No corrections are applied to 
the NEOS VLBI and the NEOS Intensives series for UT1-UTC.)

Units: milliseconds of arc for x, y; milliseconds of time for UT1-UTC

Contributor   Latest      #         Mean          Standard Deviation
Series         Day               (series-BullA)
                                x     y  UT1-UTC    x     y  UT1-UTC

NEOS Int.    51315.73    19                .004                .012

SPbU Int.    51308.75    21                .007                .015

NEOS VLBI    51310.25     5    .12  -.04  -.008    .17   .06   .003

CSR SLR      51308.93    11   -.17  -.20  -.053*   .33   .39   .093*

TUD SLR      51312.00    10   -.46  -.15           .19   .24

IAA SLR      51316.00    31   -.08   .02           .21   .15

MCC SLR      51310.00    30   -.04  -.02           .29   .23

UTX LLR      51296.28    12                .105                .145

IGS Final    51306.50    30    .00   .01           .02   .02

IGS Rapid    51317.50    11    .01   .01           .02   .01

             51317.50     2               -.002*               .001*

USNO GPS     51317.50    22                .006*               .025*

EMR GPS      51317.50    22               -.002*               .039*

* All satellite techniques provide information on the rate of change of
  Universal Time contaminated by effects due to unmodelled orbit node
  motion.  VLBI-based results have been used to minimize drifts in UT
  estimates.


The following tables show comparisons for other related time series during
the last 30 days.  All IGS series are final solutions except for the USNO
series.  No a priori systematic corrections have been applied.

Units: milliseconds of arc for x, y; milliseconds of time for UT, LOD 

IGS           Latest   #              Mean                Standard Deviation
Series         Day               (series-BullA)
                             x     y     UT*    LOD*    x     y      UT*   LOD*

COD          51312.5  30    .30   .10   2.51   .015    .10   .11    .09   .019

ESA          51306.5  30    .41   .22         -.020    .17   .11          .022

EMR          51313.5  30    .20   .14 -16.46  -.001    .15   .16    .05   .029

GFZ          51306.5  30    .29   .03   -.15   .012    .10   .10    .27   .023

JPL          51306.5  30    .32  -.01 -13.88   .009    .10   .09    .10   .031

NGS          51313.5  30    .41  -.16         -.019    .13   .22          .039

SIO          51306.5  30    .32   .14          .006    .13   .09          .027

USN (Rapid)  51317.5  30    .42   .11         -.023    .13   .12          .031

USNO GPS UT  51317.5  30                1.07                        .05

IGS Final    51306.5  30    .30   .08    .00   .000    .07   .06    .01   .019

IGS Rapid    51317.5  30    .33   .08   -.02   .004    .13   .07    .06   .029

* All satellite techniques provide information on the rate of change of
  Universal Time contaminated by effects due to unmodelled orbit node
  motion.  The UT results for COD and JPL are integrations of LOD estimates.
  EMR estimates UT and LOD separately by applying a priori orbit constraints.
  GFZ and IGS use VLBI-based results to minimize drifts in their UT estimates
  and thus the standard deviations are not representative of the intrinsic
  capabilities of GPS alone for monitoring UT variations.  USNO estimates
  UT using long-term models for orbit plane rotations.


IERS Central Bureau Series:

Series       Latest    #          Mean                Standard Deviation
              Day            (series-BullA)
                             x     y  UT1-UTC           x     y  UT1-UTC

Bulletin B   51269.   30    .01   .10   .000           .09   .12   .017

97C04        51318.   30   -.03   .08  -.006           .10   .09   .025


Plots of the residuals are available at http://maia.usno.navy.mil/plots.html.
------------------------------------------------------------------------------
The IERS Sub-bureau for Rapid Service and Prediction is an activity of the
National Earth Orientation Service and is performed by the Earth Orientation
Department at the U.S. Naval Observatory.
--
Dennis D. McCarthy                       dmc at maia.usno.navy.mil
Director, Directorate of Time            phone: (202) 762-1837
U.S. Naval Observatory                   fax: (202) 762-1563
Washington, DC 20392-5420


[Mailed From: Dennis McCarthy <dmc at maia.usno.navy.mil>]



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