Paper
1 January 1980 Algorithms For Estimating Image Position
M. Elbaum, N. Orenstein, J. MacEachin
Author Affiliations +
Abstract
Using spatial images as the target signatures, we evaluate qualitatively the effects of target fading and signal- and background-generated shot noise on the accuracy and precision of estimates of target angular position (TAP). The estimates are derived from the photocounts registered by an array of detectors that sense image radiation noncoherently. The semi-classical theory of photocounting is used to relate the statistics of image radiation to the statistics of photocounts at the output of photodetectors. The photocounting statistics are taken to be Poisson and negative binomial for the limiting cases of self-luminous and laser-illuminated targets, respectively; the number of degrees of freedom associated with the negative binomial distribution provides a convenient measure of signal coherence. Preliminary analysis, with the help of the computer simulations, has established that performance of the TAP estimates (or algorithms) depends upon target fading which is, in turn, a function of target coherence and geometry. This dependence on target fading is most pronounced for the class of algorithms which employ the entire image to estimate its angular position (rather than only the image edge).
© (1980) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
M. Elbaum, N. Orenstein, and J. MacEachin "Algorithms For Estimating Image Position", Proc. SPIE 0252, Smart Sensors II, (1 January 1980); https://doi.org/10.1117/12.959489
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CITATIONS
Cited by 2 scholarly publications.
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KEYWORDS
Detection and tracking algorithms

Sensors

Statistical analysis

Image sensors

Image analysis

Image processing

Target detection

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