Search NASAโŒ• Search

NASA NTRS ยท 20110024111

Analytic Method for Computing Instrument Pointing Jitter

Abstract

A new method of calculating the root-mean-square (rms) pointing jitter of a scientific instrument (e.g., a camera, radar antenna, or telescope) is introduced based on a state-space concept. In comparison with the prior method of calculating the rms pointing jitter, the present method involves significantly less computation. The rms pointing jitter of an instrument (the square root of the jitter variance shown in the figure) is an important physical quantity which impacts the design of the instrument, its actuators, controls, sensory components, and sensor- output-sampling circuitry. Using the Sirlin, San Martin, and Lucke definition of pointing jitter, the prior method of computing the rms pointing jitter involves a frequency-domain integral of a rational polynomial multiplied by a transcendental weighting function, necessitating the use of numerical-integration techniques. In practice, numerical integration complicates the problem of calculating the rms pointing error. In contrast, the state-space method provides exact analytic expressions that can be evaluated without numerical integration.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Bayard, David. 2003-01-01. Analytic Method for Computing Instrument Pointing Jitter. https://ntrs.nasa.gov/citations/20110024111

Cite the original work for its findings. Save a collection to share your selection of sources.