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Uncertainty in Inverted Pendulum Thrust Measurements
Author(s) -
Jon Mackey,
Scott J. Hall,
Thomas Haag,
Peter Y. Peterson,
Hani Kamhawi
Publication year - 2018
Publication title -
2018 joint propulsion conference
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.242
H-Index - 10
DOI - 10.2514/6.2018-4516
Subject(s) - inverted pendulum , thrust , control theory (sociology) , computer science , geodesy , aerospace engineering , physics , geology , environmental science , engineering , artificial intelligence , control (management) , nonlinear system , quantum mechanics
An uncertainty analysis of a common configuration of electric propulsion thrust stand is presented. The analysis applies to inverted pendulum thrust stands operating in a null-coil configuration with in-situ calibration. Several sources of bias and precision uncertainty are discussed, propagated, and combined to form conservative estimates of the relative and absolute thrust uncertainties. A case study of the NASA Glenn Research Center Vacuum Facility 6 thrust stand is presented. For the thruster investigated, the uncertainty was estimated to be ±6.9mN over the entire span of thrust. This uncertainty represents a maximum instrument bias introduced by the thrust stand. The paper does not address repeatability of actual thrust measurements, as this is generally beyond the influence of the thrust stand and can be dependent on a large number of factors.

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