Results from photographic and laser tracking systems.
Photographic and laser satellite tracking systems, discussing orbital accuracy, range and timing
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Photographic and laser satellite tracking systems, discussing orbital accuracy, range and timing
ANNA 1B beacon satellite photographic tracking by Minitrack Optical Tracking System
Simultaneous determinations of tesseral harmonic coefficients of gravitational field, ground station coordinates, and orbital elements by satellite photographic tracking
Spectrum and scales of upper atmospheric turbulence determined by photographic tracking
Photographic tracking of comet during total solar eclipse
Spark chamber and deflection magnet to photograph tracks of cosmic ray electrons at balloon altitudes
Laser beam tracking of Beacon Explorer satellites
Gravity data from lunar orbiter tracking, discussing Kepler element role
Visual and photographic tracking of satellites for geodetic and triangulation data
A series of space simulation tests on FEP Teflon and other polymeric thermal control coatings was conducted using UV, electrons, protons and Lyman-alpha wavelength vacuum UV radiation. Interest was centered on simulating synchronous altitude radiation environment conditions. Physical changes in materials included loss of specularity and introduction of a high density of photographable tracking defects on a microscopic scale. An example shows the discharge of trapped electrons when dielectric strength is exceeded. This leaves a portion of the Teflon volume no longer clear, but diffusely transmitting and reflecting. Thermophysical changes included degradation of solar absorptance coefficients as much as five-fold. The situation that prevails for earth orbit contrasted with polymer performance in the solar wind. It is suggested that conductive overcoatings be developed for polymers and other flexible materials, comparable or superior to those available for fused silica SSMs.
The photographs taken by the Baker-Nunn cameras of the Smithsonian Astrophysical Observatory were formerly measured with Van Biesbroeck goniometers, but are now measured exclusively with Mann two-screw comparators. Instead of measuring point images, we usually have to measure oblong images, either trails or breaks (the latter produced by interruption of the exposure). We can therefore expect that the accuracy of the determination of their positions is more influenced by the personal errors than it is in conventional astrometry. Approximately 800 measurements were made on 34 images of different length, and, from these, the frequency distribution of settings was determined. Then the relationship between this distribution and the length of the image (trail or break) was examined, and the relationship between the "magnitude error" and the length of image was determined. Measurements were made at different angles formed by the trails and the reticle lines, and it was found that the accuracy was not affected by the angle of the setting. Position determinations have been made using reference stars at different distances. On the basis of these results, we can conclude that the accuracy is neither influenced by the distortion of the emulsion nor by the optical distortion within an area of a diameter of S cm (5°.8). We believe that we are justified in using the linear plate constant method, at least within this area. From numerous double and multiple measurements, the following standard errors were determined for a single position.
Balloon-borne spark chamber and magnet system for identifying and measuring momentum of cosmic radiation particles
Photoelectric formation technique for delineating tracks of energetic charged particles, such as heavy cosmic rays and products of nuclear collisions within large crystals of silver chloride
Star background to reduce position error in photographic geodetic observations
Probability of recording and tracking satellite images optically
Thermal and momentum eddy diffusivities computed from wind profile and turbulence of rocket released chemical clouds
Astrometric and photogrammetric plate reduction techniques evaluated for error reduction in photographic satellite tracking
Baker-Nunn photometry from Apollo tracking utilizing photographs for brightness, dynamics and duration of rocket exhausts and venting clouds