2002Unpublished venueRequires access

Tracking constant speed targets using a kinematic constraint

W.D. Blair, G.A. Waston, A.T. Alouani

Open publisher page 8 citations

Abstract

The tracking of constant speed, maneuvering targets is addressed through the use of a kinematic constraint. The trajectory of any constant speed target must satisfy the kinematic constraint A.V=0, where A and V are the target acceleration and velocity, respectively. The kinematic constraint is included in the filtering process is a pseudomeasurement. The formulation derived for the constraint equation provides significantly better tracking performance than the original formulation. The rationale for formulation given is discussed and the improvement in tracking performance achieved demonstrated through simulation results.>

About this research paper

What this paper is about

The tracking of constant speed, maneuvering targets is addressed through the use of a kinematic constraint. The trajectory of any constant speed target must satisfy the kinematic constraint A.V=0, where A and V are the target acceleration and velocity, respectively. The kinematic constraint is included in the filtering process is a pseudomeasurement. The formulation derived for the constraint equation provides significantly better tracking performance than the original formulation. The rationale for formulation given is discussed and the improvement in tracking performance achieved demonstrated through simulation results.>

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The tracking of constant speed, maneuvering targets is addressed through the use of a kinematic constraint. The trajectory of any constant speed target must satisfy the kinematic constraint A.V=0, where A and V are the target acceleration and velocity, respectively. The kinematic constraint is included in the filtering process is a pseudomeasurement. The formulation derived for the constraint equation provides significantly better tracking performance than the original formulation. The rationale for formulation given is discussed and the improvement in tracking performance achieved demonstrated through simulation results.>

Key concepts: Kinematics, Constraint (computer-aided design), Constant (computer programming), Tracking (education), Acceleration, Trajectory, Computer science, Process (computing)

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