Application of an optimal filter for inflatable sphere data processingThe improvement in the sphere data processing, concerning the signal to noise ratio, is discussed. Frequency analysis of the radar data is effectuated. It reveals a specific frequency component in the radar angle error, which may originate from the tracking radar mechanism itself. An optimal (Wiener) filter is applied to the radar data in order to suppress the systematic angular error components selectively. Using this technique, a significant improvement in the signal to noise ratio is achieved. The resolution of sphere measurements, previously limited by the length of the polynomial filter in the sphere data processing algorithm, is improved.
Document ID
19900004533
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Lee, H. S. (SM Systems and Research Corp. Landover, MD., United States)
Schmidlin, F. J. (NASA Wallops Flight Facility Wallops Island, VA., United States)
Michel, W. (Dayton Univ. Wallops Island, VA., United States)
Date Acquired
September 6, 2013
Publication Date
June 1, 1989
Publication Information
Publication: ESA, European Rocket and Balloon Programs and Related Research