Article ID Journal Published Year Pages File Type
764904 Defence Technology 2013 5 Pages PDF
Abstract

Compared with the one-dimensional trajectory correction technology which adjusts longitudinal range, not only does the two-dimensional trajectory correction technology adjust the force in velocity direction, but also need to modulate the lateral force or trajectory (perpendicular to the vertical plane of fire direction). Therefore, the structure of control cabin of two-dimensional trajectory correction projectile (TDTCP) is more complicated than that of one-dimensional trajectory correction projectile (ODTCP). To simplify the structure of control cabin of TDTCP and reduce the cost, a scheme of adding a damping disk to the control cabin of ODTCP has been developed recently. The damping disk is unfolded at the right moment during its flight to change the ballistic drift of spin stabilized projectile. For this technical scheme of TDTCP, a fast and accurate impact point prediction method based on Extended Kalman Filter was presented. An approximate formula for predicting the ballistic drift and trajectory correction quantity was deduced. And the lateral correction capability for different fire angles and its influencing factors were analyzed. All the work is valuable for further research.

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Physical Sciences and Engineering Engineering Control and Systems Engineering
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