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SuperResolution Enhancement Test

Specifications. HardwareCanon 20D CameraCanon EF 600mm f/4.0L IS USM LensCanon EF 1.4x II ExtenderTripod: Dynatran AT-818Image Settings20 Input Images, SS: 1/1000, f/8.0, ISO: 100Effective Focal Length: 840mmTest SettingsTest Time: March 7, 2006 4:40 pm

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SuperResolution Enhancement Test

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    1. SuperResolution Enhancement Test Pedro Davalos Angelo Bianchini Ramon Rivera Matt Wilson Igor Carron Mar 8, 2006

    2. Specifications Hardware Canon 20D Camera Canon EF 600mm f/4.0L IS USM Lens Canon EF 1.4x II Extender Tripod: Dynatran AT-818 Image Settings 20 Input Images, SS: 1/1000, f/8.0, ISO: 100 Effective Focal Length: 840mm Test Settings Test Time: March 7, 2006 4:40 pm – 4:42 pm KCLL 072253Z 14017KT 10SM BKN036 BKN065 26/17 A2997 RMK AO2 SLP145 T02560172 Winds: 20mph, cloudy, Temp: 78° F Camera was indoors with the garage door open Distance Away from O&M Building: 3.08 miles (16,240 ft) Enhancer Settings UCSC-MDSP Iterative Norm One

    3. Test Setup

    4. Test Setup

    5. Full Frame

    6. Original (Cropped)

    7. Input Video

    8. “Enhanced” Output

    9. “Enhanced” Output: Cropped

    10. Comparison

    11. Conclusion Jitters proved to be important. Current UCSC-MSDP software is not able to handle jitters Other superresolution imagery algorithm (Vorontsov) will be implemented. In either algorithm, we may need to solve the jitter issue first through processing (optic flow) and then attempts both superresolution algorithms. Jitter issue may also have to be addressed at the hardware level (Inertial information, heavy base,….)

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