Weekly LAGEOS + ETALON combination
- Weekly solution
- Orbit and residuals computation
- GCC solution (NNT)
- ILRS SNX (orbits pre-eliminated, RGB stacked)
- ILRS orbits (station coordinates and ERP fixed)
- Validation

PID
SCRIPT
PARAM1
PARAM2
PARAM3
PARAM4
PARAM5
Input
Output
Copy relevant results of single-satellite solution (if not in same campaign)
001
U_COPY_CMB
SKIP
AB

????$YD+0$g.RZH,RZO

????$YD+00.MET

$(STAINF).STA

$(STAINF).ABB

$(BLQ).BLQ

$(CRDINF).CRD,VEL,PSD

$(CRDINF).FIX

$(CRDINF).SIG

$(RGBINF)

$(COM).SLR

$(ATL)

$(PCVINF)

$(SINEX).SKL

$(EOP).ERP

AOD1B$YD+-.AOD

SKIPSOL_$g.FLG

$(L0)$g$YD+0.STD

$(L0)$g$YD+0.RPR

$(LX)$g$YD+0.NQ0

$(LX)$g$YD+0.PRE

$(LX)$g$YD+0.STD

RES$YD+0$(LX)$g.RES

$(LX)$g$YD+0.CRD

$(ID)$YD+0.CRD

$(ID)A$YD+0.FIX

Update FIX file (only LAGEOS residuals are evaluated)
002
U_FIXUPD_C
MERGE
LXS
A

$(CRDINF).FIX

RES$YD+0$(LX)$g.OUT

$(ID)$YD+0.FIX
Update GPSUTC.xtr and ERP
003
U_POLUPD__
PRED
$(EOP).ERP
$(L0)$(SAT)$YD+0.ERP
Generate weekly solution (station coordinates loosely constrained, all dUT fixed, RGB satellite specific)
105
U_ADDNEQ_C
AB

$LX$g$YD+0.NQ0

SLR_CMB$(C7)$YD+0.WGT

$(ID)$YD+0.CRD

$(ID)$YD+0.FIX

neqsel_$YD+0.txt

$(C7)$(SAT)$YD+0.CRD

$(C7)?$YD+0.ELE

$(C7)$(SAT)$YD+0.ERP,IEP

$(C7)$(SAT)$YD+0.SLR

Merge V_CoM from ADDNEQ-run with CoM-File
106
U_SNXSLR_S

$(C7)$(SAT)$YD+0.SLR

$(COM).SLR

$(C7)$(SAT)$YD+0M.SLR
Generate STD for each SatGroup (including prediction)
108
U_PMERGE_V
L0
C7

$(L0)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.ERP

SELERP$(SAT)$YD+0.lst

$(EXT)$(SAT)$YD+0.ERP

110
U_ORBGEN_P
PRED
AB
111
U_ORBGEN_S
PARALLEL=110

$(C7)$(IS)$YD+0.ELE

$(EXT)$(SAT)$YD+0.ERP

$(C7)$(IS)$YD+0.STD
Generate residual
114
U_GPSEST_P
AB
115
U_GPSEST_S
PARALLEL=114

????$YD+0$(IS).RZH,RZO

????$YD+00.MET

$(C7)$(SAT)$YD+0.CRD

$(C7)$(IS)$YD+0.STD

$(C7)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0M.SLR

$(C7)$(IS)$YD+0.OUT,RES
120
U_STDPRE_P
0
AB
121
U_STDPRE_S
PARALLEL=120

$(C7)$(IS)$YD+0.STD

$(C7)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

$(C7)$(IS)$YD+0.PRE
140
U_QLRSUM_P
AB
141
U_QLRSUM_S
PARALLEL=140

$(C7)$(IS)$YD+0.RES

$(C7)$(IS)$YD+0.STD

$(C7)$(SAT)$YD+0.ERP

$(EXT)$(SAT)$YD+0.CRD

RES$YD+0$(C7)$(IS).OUT

RES$YD+0$(C7)$(IS).SUM

RES$YD+0$(C7)$(IS).PLT

GCC solution, datum definition by minimum constrained (NNT, NNR), all dUT fixed, RGB satellite specific
150
U_ADDNEQ_C
AB

$LX$g$YD+0.NQ0

SLR_CMB$(C7)$YD+0.WGT

$(ID)$YD+0.CRD

$(ID)$YD+0.FIX

neqsel_$YD+0.txt

$(GX)$(SAT)$YD+0.CRD

$(GX)?$YD+0.ELE

$(GX)$(SAT)$YD+0.ERP,IEP

$(GX)$(SAT)$YD+0.GCC

$(GX)$(SAT)$YD+0.SLR

SNX of combined solution (station coordinates loosely constained, all dUT fixed, orbits pre-eliminated, RGB stacked)
200
U_ADDNEQ_C
AB

$LX$g$YD+0.NQ0

SLR_CMB$(C7)$YD+0.WGT

$(ID)$YD+0.CRD

neqsel_$YD+0.txt

$(C7)$(SAT)$YD+0.NQ0,SNX

SNX$YD+0.SLR

Satellite specific SP3-orbits for ILRS (station coordinates and ERP fixed, RGB satellite specific)
250
U_ADDNEQ_C
AB

$LX$g$YD+0.NQ0

SLR_CMB$(C7)$YD+0.WGT

$(ID)$YD+0.CRD

neqsel_$YD+0.txt

$(CF)?$YD+0.ELE

$(CF)$(SAT)$YD+0.ERP

260
U_ORBGEN_P
0
AB
261
U_ORBGEN_S
PARALLEL=260

$(CF)$(IS)$YD+0.ELE

$(CF)$(SAT)$YD+0.ERP

$(CF)$(IS)$YD+0.STD
271
U_STDPRE_S
0
A
L51

$(CF)$(IS)$YD+0.STD

$(CF)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

$(CF)$(IS)$YD+0$(LS).PRE
272
U_STDPRE_S
0
A
L52

$(CF)$(IS)$YD+0.STD

$(CF)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

$(CF)$(IS)$YD+0$(LS).PRE
273
U_STDPRE_S
0
B
L53

$(CF)$(IS)$YD+0.STD

$(CF)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

$(CF)$(IS)$YD+0$(LS).PRE
274
U_STDPRE_S
0
B
L54

$(CF)$(IS)$YD+0.STD

$(CF)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

$(CF)$(IS)$YD+0$(LS).PRE
Orbit comparisons with satellite specific solution
310
U_ORBCMP_P
C7
LX
0
AB
311
U_ORBCMP_S
PARALLEL=310

$(C7)$(IS)$YD+0.PRE

$(LX)$(IS)$YD+0.PRE

$(C7)$(SAT)$YD+0.ERP

$(C7)$(IS)$YD+0.STD

ORBCMP$YD+0.$(C7)$(IS)_$(LX)$(IS)

CMP$YD+0M7_$(C7)$(IS)_$(LX)$(IS).LST,OUT

Orbit comparisons with prediction (7 days ago)
320
U_ORBCMP_P
C7
EXT
7
AB
321
U_ORBCMP_S
PARALLEL=320

$(C7)$(IS)$YD+0.PRE

$(EXT)$(IS)$YD-7.PRE

$(C7)$(SAT)$YD+0.ERP

$(C7)$(IS)$YD+0.STD

ORBCMP$YD+0.$(C7)$(IS)_$(EXT)$(IS)

CMP$YD+0M7_$(C7)$(IS)_$(EXT)$(IS).LST,OUT

Compare station coordinates with apriori (FIX or ALL stations) and check stability
400
U_HELMR1_S

$(ID)$YD+0.CRD

$(C7)$(SAT)$YD+0.CRD

$(CRDINF).VEL,PSD

HLM$YD+0$(C7)_ALL.OUT
410
U_HELMR1_S

$(ID)$YD+0.CRD

$(C7)$(SAT)$YD+0.CRD

$(CRDINF).VEL,PSD

$(ID)$YD+0.FIX

HLM$YD+0$(C7)_FIX.OUT
420
U_COMPAR_2
C7
10
$(C7)$(SAT)$yyddd.CRD

COMPAR2$(SAT)$YD+0.lst

COMP$YD+0_$(C7)$(SAT).PLT,OUT

Convert predicted STD-orbits to PRE
519
U_STDPRE_P
PRED
AB
520
U_STDPRE_S
PARALLEL=519

$(EXT)$(IS)$YD+0.STD

$(EXT)$(SAT)$YD+0.ERP

$(C7)$(SAT)$YD+0.CRD

Comparison with group-specific solutions (if existing)
550
U_HELMR1_P
AB
551
U_HELMR1_S
PARALLEL=550

$(LX)$(IS)$YD+0.CRD

$(C7)$(SAT)$YD+0.CRD

$(ID)$YD+0.FIX

HLM$YD+0$(C7)$(SAT)$(LX)$(IS)_FIX.OUT
560
U_STDDIF_P
AB
561
U_STDDIF_S
PARALLEL=560

$(C7)$(IS)$YD+0.STD

$(LX)$(IS)$YD+0.STD

DIF$YD+0$(C7)$(IS)_$(LX)$(IS).PLT,OUT
End of BPE
900
U_ILRS_PRC
C7
SOL
AB

$(C7)$(SAT)$YD+0.OUT

RES$YD+0$(C7)A.OUT

RES$YD+0$(C7)B.OUT

CMP$YD+0M7_$(C7)A_$(EXT)A.OUT

CMP$YD+0M7_$(C7)B_$(EXT)B.OUT

HLM$YD+0$(C7)_ALL.OUT

HLM$YD+0$(C7)_FIX.OUT

COMP$YD+0_$(C7)$(SAT).OUT

ILRS7D_$(C7).$Y_$+0
910
U_SAVE_OBS

????$YD+0?.RZH,O

????$YD+00.MET

990
BPE_CLN2
35
999
BPE_BYE
-25
SLR