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Describe ReferencePeaks here. Test 11: ReferencePeaks

Take PIT020 as the only maplet in MAPLIST.TXT. Generate 5cm images of the topography (which is based at TAG Site 1). Then we build a MAPLET, saving the MAPLETs flatMapVect at several states.


=== Simple Variations ===
Groups of images - (adjusted for 5cm)
 * Test11A - Detailed Survey. Eric (Has 11 images, very low in sample space)
 * Test11B - Min Orbit B (by hand, calculate the minimum requirement)
 * Test11C - Average Orbit B (use a random Orbit B solution with 3 unique observation/illumination conditions)
 * Test11D - Best Orbit B (as we did before)
 * Test11E - Optimum Collection (as we did before)
|| Name || Sun Az || Sun Zenith || S/C Az || S/C Zenith ||
|| Optimum Collection1 || 0, 90, 180, 270 || 45 || every 20 || 45 ||
|| Optimum Collection2 || 135 || 30 || every 20 || 45 ||
 * Test11U - Criss Cross (combine both of these sets)
|| Name || Sun || S/C Az || S/C Zenith ||
|| Criss Cross 1 || 80, 60, 40, 20, 0, -20, -40, -60, -80 || 45 || 45 ||
|| Criss Cross 2 || 45 || 0, 180 || 80, 60, 40, 20, 0 ||
   


=== Variations ===
Spacecraft Azimuth Variations
|| Name || Sun || S/C Az || S/C Zenith ||
|| Test11F || 45, 0, -45 || every 20 || 45 ||
|| Test11G|| 45, 0, -45 || every 30 || 45 ||
|| Test11H|| 45, 0, -45 || every 45 || 45 ||
|| Test11I|| 45, 0, -45 || every 60 || 45 ||
|| Test11J|| 45, 0, -45 || every 90 || 45 ||

Sun Variations
|| Name || Sun || S/C Az || S/C Zenith ||
|| Test11K|| 30 || every 45 || 45 ||
|| Test11L|| 30 -30 || every 45 || 45 ||
|| Test11M|| -45, -45 || every 45 || 45 ||
|| Test11N|| 30, 0, -30 || every 45 || 45 ||
|| Test11P|| 45, 30, 0, -30, -45 || every 45 || 45 ||
|| Test11Q|| 60, 45, 30, 0, -30, -45, -60 || every 45 || 45 ||
|| Test11R|| 60, 30, -30, -60 || every 45 || 45 ||

Spacecraft Zenith Variations
|| Name || Sun || S/C Az || S/C Zenith ||
|| Test11S|| 45, 0, -45 || every 45 || 0, 30, 60 ||
|| Test11T|| 45, 0, -45 || every 45 || 0, 20, 40, 60, 80 ||
|| Test11U|| 45, 0, -45 || every 45 || 0, 14, 30, 45, 60, 75 ||


=== Hill Data ===
I have created the following hills for testing
 * PIT007 - 7 deg tilt
 * PIT014 - 14 deg tilt
 * PIT020 - 20 deg tilt <-- Let's use this one
 * PIT030 - 30 deg tilt
 * PIT045 - 45 deg tilt
 * PIT060 - 60 deg tilt


=== Truth Maplets ===
 * -8.027 262.768
 * TRU20#, which # is the test number (letter). Build a truth MAPLET using TAG Site 1 center position. Use the b option with a PIT020.

=== Testing Maplets ===
 * Build a model MAPLET using TAG Site 1 center position. Do not load a base map for topography
 * Create MOD20#, which # is the test number (letter)
 * Align the images with the key location at 50/50.
 * Build template with 100
 * Do an auto align
 * Build height using the iteration template
 * Do flatMapVec and rename it to mod-20#-1
 * Repeat as necessary


Iteration Template
{{{
0
0
44
2
8 fill no data with shape slope
7
.01
6
y
y
2 condition with existing topo
.01
6
y
y
0 begin integration
.025
100
0
v
1
u
1
}}}
Line 5: Line 103:
Groups of images - (adjusted for 5cm)
 * Detailed Survey
 * Min Orbit B
 * Average Orbit B
 * Best Orbit B
 * Optimum Collection
=== Save States ===
Save the flatMapVect at the following
 * 1
 * 2
 * 3
 * 5
 * 10
 * 15
 * 20
Line 12: Line 113:
|| base || Sun || S/C Az || S/C Zenith ||
|| img || 45, 90, -45 || every 20 || 45 ||
|| img || 45, 90, -45 || every 30 || 45 ||
|| img || 45, 90, -45 || every 45 || 45 ||
|| img || 45, 90, -45 || every 60 || 45 ||
|| img || 45, 90, -45 || every 90 || 45 ||
|| img || 45, 90, -45 || every 180 || 45 ||
=== Examples ===

{{attachment:peak-img.png}}

Example of a 14 degree peak, measured at difference locations
{{attachment:14.png}}

Example of a 20 degree peak, measured over time
{{attachment:20.png}}

Test 11: ReferencePeaks

Take PIT020 as the only maplet in MAPLIST.TXT. Generate 5cm images of the topography (which is based at TAG Site 1). Then we build a MAPLET, saving the MAPLETs flatMapVect at several states.

Simple Variations

Groups of images - (adjusted for 5cm)

  • Test11A - Detailed Survey. Eric (Has 11 images, very low in sample space)
  • Test11B - Min Orbit B (by hand, calculate the minimum requirement)
  • Test11C - Average Orbit B (use a random Orbit B solution with 3 unique observation/illumination conditions)
  • Test11D - Best Orbit B (as we did before)
  • Test11E - Optimum Collection (as we did before)

Name

Sun Az

Sun Zenith

S/C Az

S/C Zenith

Optimum Collection1

0, 90, 180, 270

45

every 20

45

Optimum Collection2

135

30

every 20

45

  • Test11U - Criss Cross (combine both of these sets)

Name

Sun

S/C Az

S/C Zenith

Criss Cross 1

80, 60, 40, 20, 0, -20, -40, -60, -80

45

45

Criss Cross 2

45

0, 180

80, 60, 40, 20, 0

Variations

Spacecraft Azimuth Variations

Name

Sun

S/C Az

S/C Zenith

Test11F

45, 0, -45

every 20

45

Test11G

45, 0, -45

every 30

45

Test11H

45, 0, -45

every 45

45

Test11I

45, 0, -45

every 60

45

Test11J

45, 0, -45

every 90

45

Sun Variations

Name

Sun

S/C Az

S/C Zenith

Test11K

30

every 45

45

Test11L

30 -30

every 45

45

Test11M

-45, -45

every 45

45

Test11N

30, 0, -30

every 45

45

Test11P

45, 30, 0, -30, -45

every 45

45

Test11Q

60, 45, 30, 0, -30, -45, -60

every 45

45

Test11R

60, 30, -30, -60

every 45

45

Spacecraft Zenith Variations

Name

Sun

S/C Az

S/C Zenith

Test11S

45, 0, -45

every 45

0, 30, 60

Test11T

45, 0, -45

every 45

0, 20, 40, 60, 80

Test11U

45, 0, -45

every 45

0, 14, 30, 45, 60, 75

Hill Data

I have created the following hills for testing

  • PIT007 - 7 deg tilt
  • PIT014 - 14 deg tilt
  • PIT020 - 20 deg tilt <-- Let's use this one

  • PIT030 - 30 deg tilt
  • PIT045 - 45 deg tilt
  • PIT060 - 60 deg tilt

Truth Maplets

  • -8.027 262.768
  • TRU20#, which # is the test number (letter). Build a truth MAPLET using TAG Site 1 center position. Use the b option with a PIT020.

Testing Maplets

  • Build a model MAPLET using TAG Site 1 center position. Do not load a base map for topography
  • Create MOD20#, which # is the test number (letter)
  • Align the images with the key location at 50/50.
  • Build template with 100
  • Do an auto align
  • Build height using the iteration template
  • Do flatMapVec and rename it to mod-20#-1
  • Repeat as necessary

Iteration Template

0
0
44
2
8                fill no data with shape slope
7
.01
6
y
y
2                condition with existing topo
.01
6
y
y
0                begin integration
.025
100
0
v
1
u
1

Save States

Save the flatMapVect at the following

  • 1
  • 2
  • 3
  • 5
  • 10
  • 15
  • 20

Examples

peak-img.png

Example of a 14 degree peak, measured at difference locations 14.png

Example of a 20 degree peak, measured over time 20.png

ReferencePeaks_dep (last edited 2015-11-23 15:13:04 by EricPalmer)