![]() |
![]() |
-->[TOC] [INTRO] [DOCS] [OVERVIEW]
[ADEOS HOME]
AAPS REPORT FORMATS
Product Order Report
The primary output report for the AAPS is the Product Order Report which contains two data records: the Product Order Results record.Product Order Parameters Record
The AAPS External Interface Specification (document A-1) defines the format and content of the AAPS Product Order (as received from SMC). The product order parameters record is identical in format to the product order received fromSMC. However, the content may vary slightly,depending on the relevance of individual fields, as described below :
- Product Order received from SMC
In the case that the product order is received from SMC, and not modified by the AAPS operator in any way, then the product order parameters record will be an exact copy of the incoming order, except that certain irrelevant or ignored fields (e.g. polarstereographic map projection parameters) will be filled with asterisks.- Product Order edited by AAPS Operator
In the case that a product order which has been received from SMC is edited by the AAPS operator, then the product order parameters record will be copied, as described above, except any fields changed by the operator will show the new values entered by the operator.- Product Order created by AAPS Operator
In the event that an AAPS operator creates a new product order, then :
- irrelevant fields will be filled with asterisks;
- field a for which the operator has selected the default will be filled with the actual default value used by the system.
Product Order Results Record
The product order results record (also referred to as the "processing work results") is composed of fixed length ASCII fields delimited by blanks (spaces). Each ASCII field is padded by blanks, if necessary, to fill each fixed length field. In the case of an HIS merged product, only information pertaining to the multispectral image will be repoorted. Table A-1 below defines the content of the product order results record. ('b' is rsed represent single byte of blank space in the table)
Product Order Report - Product Order Results Record Field # Number
of BytesDescription (Definition and Contents) Time Data 1 8 Scene center date = YYYYMMDD
YYYY : A.D.year
MM : Month
DD : Day2 1 Blank 3 12 Scene center time = HH:MM:SS.TTT
HH : Hours
MM : Minutes
SS : Seconds
TTT : milliseconds4 1 Blank 5 8 Scene starting date = YYYYMMDD
YYYY : A.D.year
MM : Month
DD : Day6 1 Blank 7 12 Scene starting time = HH:MM:SS.TTT
HH : Hours
MM : Minutes
SS : Seconds
TTT : milliseconds8 1 Blank 9 8 Scene completion date = YYYYMMDD
YYYY : A.D.year
MM : Month
DD : Day10 1 Blank 11 12 Scene completion time = HH:MM:SS.TTT
HH : Hours
MM : Minutes
SS : Seconds
TTT : milliseconds12 1 Blank Scene Location Data 13 7 Scene center latitude = SNN.NNN
Latitude value between -90.000°~b90.000°14 1 Blank 15 8 Scene center longitude = SNNN.NNN
Longitude value between - 179.999°~b180.000°16 1 Blank 17 7 Scene top-left latitude = SNNN.NNN
nn.nnn : latitude value between - 90.000°~b90.000°18 1 Blank 19 8 Scene top-left longitude = SNNN.NNN
Longitude value between - 179.999°~b180.000°20 1 Blank 21 7 Scene top-right latitude = SNN.NNN
Latitude value between -90.000B~b90.000B22 1 Blank 23 8 Scene top-right longitude = SNN.NNN
Longitude value between -179.999°~b180.000°24 1 Blank 25 7 Scene bottom-left latitude = SNN.NNN
Latitude value between - 90.000°~b90.000°26 1 Blank 27 8 Scene bottom-left longitude = SNNN.NNN
Longitude value between - 179.999°~b180.000°28 1 Blank 29 7 Scene bottom-right latitude = SNN.NNN
Latitude value between - 90.000°~b90.000°30 1 Blank 31 8 Scene bottom-right longitude = SNNN.NNN
Longitude value between - 179.999°~b180.000°32 1 Blank Scene Size 33 5 Number of Pixels = NNNNN
Value between bbb0 ~ 9999934 1 Blank 35 5 Number of Lines = NNNNN
Value between bbb0 ~ 9999936 1 Blank Sun Angle (at product center) 37 6 Elevation angle = SNN.NN
Value between - 90°~b90°38 1 Blank 39 6 Azimuth angle = NNN.NN
Value between bb0.00°~ 360.00°40 1 Blank Incident Angles 41 6 Off-nadir pointing angle (from telemetry) = SNN.NN
Value between -40°~ b40°42 1 Blank 43 5 Angel of Incidence (co-elevation) =SNN.N
S ='R' or 'L'
NN.N between 'b0.0' - '90.0'(degrees)44 1 Blank 45 5 Angel of Orientaion = NNN.N
Value between bb0.0°~ 359.9°46 1 Blank 47 8 Processed Date (just before product output) = YYYYMMDD
YYYY : A.D.year
MM : Month
DD : Day48 1 Blank 49 12 Processed Time (just before product output) =HH:MM:SS.TTT
HH : Hours
MM : Minutes
SS : Seconds
TTT : milliseconds50 1 Blank 51 10 System Version = UVWXY****
U : System Management Component
V : AVNIR Processing Version
W : OCTS Processing Version
X : Check Processing Component Version
Y : Database Management Component52 1 Blank 53 2 Gain Mode (Band1) = XX
'0b' : Low
'1b' : Normal
'2b' : High
'3b' : Super54 1 Blank 55 2 Gain Mode (Band2) = XX (see above for XX) 56 1 Blank 57 2 Gain Mode (Band3) =XX (see above for XX) 58 1 Blank 59 2 Gain Mode (Band4) = XX (see above for XX) 60 1 Blank 61 2 Gain Mode (BandP) = XX (see above for XX) 62 1 Blank Primary Inspection Results 63 1 Quality evaluation result (QER) = X
'G' : Good
'P' : Poor
'F' : Fair
'N' : Unevaluated64 1 Blank 65 5 Number of lost lines = NNNNN
Value between bbbb0 ~ 9999966 1 Blank 67 1 TLM limit check = X
'O' : OK
'N' : NG68 1 Blank 69 1 Orbit limit check = X
'O' : OK
'N' : NG70 1 Blank 71 1 Attitude limit check = X
'O' : OK
'N' : NG72 1 Blank 73 1 Method of cloud coverage evaluation = X
'M' : Visual74 1 Blank 75 2 Cloud coverage = XX
'00' : 0~2%
'01' : 3~10%
'02' : 11~20%
'03' : 21~30%
'04' : 31~40%
'05' : 41~50%
'06' : 51~60%
'07' : 61~70%
'08' : 71~80%
'09' : 81~90%
'10' : 91~100%
'99' : Unevaluated76 1 Blank 77 1 Cloud coverage evaluation of top left area = N
0 : 0~9%
1 : 10~24%
2 : 25~100%
9 : Unevaluated78 1 Blank 79 1 Cloud coverage evaluation of top right area =N
Valid values are the same as those of the top left area80 1 Blank 81 1 Cloud coverage evaluation of bottom left area =N
Valid values are the same as those of the top left area82 1 Blank 83 1 Cloud coverage evaluation of bottom right area =N
Valid values are the same as those of the top left area84 1 Blank Saturation Percentages for Bands 1~5(%)
(if not used, then 0.00)85 5 Band 1 = NN.NN 86 1 Blank 87 5 Band 2 = NN.NN 88 1 Blank 89 5 Band 3 = NN.NN 90 1 Blank 91 5 Band 4 = NN.NN 92 1 Blank 93 5 Band P = NN.NN 94 1 Blank Exposure Coefficients for Bands 1~5
(if not used, then 0.0000)95 6 Band 1 = N.NNNN 96 1 Blank 97 6 Band 2 = N.NNNN 98 1 Blank 99 6 Band 3 = N.NNNN 100 1 Blank 101 6 Band 4 = N.NNNN 102 1 Blank 103 6 Band P = N.NNNN 104 1 Blank 105 2 Processing report code =NN 106 1 Blank 107 10 Database version for correction = **WX*****
W : DB(AVNIR calibration coefficients) Version
X : DEM Correction Data
0: Not Used
1: Japan Land Institute DEM Used
2: Reserved for Future Use108 1 Blank 109 10 Software version = ******* 110 1 Blank 111 3 Number of bands = NNN
NNN : for BSQ
bb1 : for BIL112 1 Blank 113 6 Size of product in MB = NNNN.N 114 1 Blank 115 10 D1 cassette number = DSSNNNNNNN
D : 'D'(fixed)
SS : System code ('11' for recorking system, '12' for processing system)
NNNNNNN : Scheme number (the number is unique)
0-8999999 : Master tape
9000000-9999000 : Work tape
9999001-9999999 : Cleaning tape116 1 Blank 117 6 Start position of recording = NNNNNN 118 1 Blank 119 3 Number of recordings = NNN(Total number of files) 120 1 Line Feed = 0A (Hex) Product Order Log
Product Order Log Example Correction Product Order Execution Log Prod. control no. : K0951115 Prod. control br. no.: 003 Work no . : 43 Work class code : 222 Priority : 1 Desired completion Date : 19960101 Satellite type : A1 Sensor type : AVM Sensor mode : MOB Opeion flag : CFGI RSP path no .: 52 RSP frame no .: 290 Processing level : 1B2 Subsampled image req .: Y Map projection : UTM Resampling : CC Completion date : 1995.12.02 Completion time : 20: 59: 36 Scene center date : 1995.01.01 Scene center time : 03: 20: 44 Raw data quality : N Processed data quality : N Missing lines : 2 Cloud cover : 99 TL cloud cover : 9 TR cloud cover : 9 BL cloud cover : 9 BR cloud cover : 9 Input D-1 Id : D110000113 Input recorded Id no .: 1 Output D-1 Id : MEDIA_ID Output start file no .: 1 Number of bands : 3 Termination code : 00 Software version : 02 Database version : 02 <created : 1995.12.02 11: 53: 29> 1995.12.02 19: 32: 24 Info AapsControlPanel WCU: 0000 Work order was started by operator demo. 1995.12.02 20: 59: 40 Info WOC_MergeWoController WOB: 0028 Work order stage changed to Completed.Image Navigation Processing Report
Image Navigation Processing Report provides an example of an Image Navigation Processin Report. In the report, the Attitude Correction Coefficients are only included when navigation is applied, and may include results for an arbitrary number of frequencies (controlled by Image Navigation configuration parameters in System Parameters database).Image Navigation Processing Report Work Order Id: K0951115 003 43 Complection date: 1995.12.02 Completion time: 19: 57: 15 ------------------------------------------------------------------------------------- Satellite: AD1 Sensor: AVNM Acquisition date: 1995.01.01 Acquisition time: 03: 20: 45 ------------------------------------------------------------------------------------- Left Strip Right Strip ---------- ----------- Correlation Results : --------------------- Nbr of Good Samples : 16100 14972 Nbr of Bad Samples : 70 1259 Navigation Processing Statistics (Panchromatic Pixels) ------------------------------------------------------ Deviation on Focal Plane BEFORE Navigation application : Left Strip Right Strip ---------- ----------- Line Pixel Line Pixel ---- ----- ---- ----- Maximum: 3.5044 4.9152 2.7824 4.3223 Minimum: -5.6009 -3.5565 -7.3745 -3.5600 Average: -0.2896 0.1871 -0.4775 0.2062 Std. Deviation: 1.5409 1.7348 1.3709 1.6325 Deviation on Focal Plane AFTER Navigation application : Left Strip Right Strip ---------- ----------- Line Pixel Line Pixel ---- ----- ---- ----- Maximum: 1.1734 2.1356 0.7195 2.3488 Minimum: -5.7597 -3.3393 -5.3865 -2.9513 Average: -2.1002 -0.5345 -2.1367 -0.4423 Std. Deviation: 1.4187 1.0277 1.3316 1.0098 Image Navigation Results : -------------------------- Navigation Applined : Y Attitude Correction Coefficients Applied (10 uradians (Pan Pixel) ) : ---------------------------------------------------------------------- Roll Pitch Yaw ---- ----- --- Frequency : 1.0800 Sin Coeff: -0.0012959 0.0036182 0.0035866 Cos Coeff: -0.0003337 0.0028082 0.0021414 Frequency : 1.0900 Sin Coeff: 0.0000046 0.0001967 0.0003266 Cos Coeff: 0.0000252 -0.0000329 0.0000976 Frequency : 2.4200 Sin Coeff: -0.0000588 -0.0005172 -0.0011324 Cos Coeff: -0.0001516 0.0002555 0.0002278
[TOC] [INTRO] [DOCS] [OVERVIEW]
[ADEOS HOME]
![]() |
![]() Last Update: 02 July 1998 |
Comments to:
![]() |