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Visual-inertial state estimation based on Chebyshev polynomial optimization

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arxiv 2404.01150 v1 pith:MGX4NBY6 submitted 2024-04-01 cs.RO

classification cs.RO
keywords chebyshevmethodpolynomialvisual-inertialestimationoptimizationstateacceleration
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This paper proposes an innovative state estimation method for visual-inertial fusion based on Chebyshev polynomial optimization. Specifically, the pose is modeled as a Chebyshev polynomial of a certain order, and its time derivatives are used to calculate linear acceleration and angular velocity, which, along with inertial measurements, constitute dynamic constraints. This is coupled with a visual measurement model to construct a visual-inertial bundle adjustment formulation. Simulation and public dataset experiments show that the proposed method has better accuracy than the discrete-form preintegration method.

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