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A nonlinear optimal guidance and control scheme for the atmospheric reentry of an RLV using pitch plane maneuver is presented.
Here, a designed fuzzy-PID controller for stabilization purpose of orientational phase of a docking maneuver is presented based on the Single Input Fuzzy Inference Motor (SIFIMs) dynamically connected Preferrer Fuzzy Inference Motor (PFIM).
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Numerical simulation results for a detumbling of a desired orientation maneuver are presented to illustrate the capability of the proposed attitude control method.
The results obtained for a test case attitude acquisition maneuver are presented and the benefit deriving from the command shaping technique evaluated and discussed.
A new feedforward algorithm for flexible spacecraft maneuvers is presented.
An example of position and attitude tracking maneuvers is presented and simulation results are included to show the performance of the proposed controllers.
The closed-loop simulation results of a roll agility maneuvering called "T90 maneuvering" are presented.
Drivers intending to perform simple crossing or merging maneuvers are presented with a lag and a series of gaps between vehicles in a conflicting traffic movement.
This convenient maneuver was present at over half the 3,600 funds tracked by TASS, the industry's largest tracking service and a unit of Oppenheimer Acquisition, according to "A Reality Check on Hedge Funds Returns," a working paper published by Free University in Amsterdam.
In this paper, a novel maneuvering prediction method is presented that seeks to provide the accuracy available from today state-of-the-art numerical viscous-flow tools but with significantly reduced computational cost.
In this paper, a fuzzy logic-based recursive least squares filter (FLRLSF) is presented for maneuvering target tracking (MTT) in situations of observations with unknown random characteristics.
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