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Active Structure From Motion: Application to Point, Sphere, and Cylinder

机译:主动结构从运动:应用于点,球和圆柱

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摘要

In this paper, we illustrate the application of a nonlinear structure estimation from motion (SfM) strategy to three problems, namely 3-D structure estimation for 1) a point, 2) a sphere, and 3) a cylinder. In all three cases, an appropriate parameterization reduces the problem to the estimation of a single quantity. Knowledge of this estimated quantity and of the available measurements allows for then retrieving the full 3-D structure of the observed objects. Furthermore, in the point feature case, two different parameterizations based on either a planar or a spherical projection model are critically compared. Indeed, the two models yield, somehow unexpectedly, to different convergence properties for the SfM estimation task. The reported simulative and experimental results fully support the theoretical analysis and clearly show the benefits of the proposed active estimation strategy, which is in particular able to impose a to the estimation error equivalent to that of a reference linear second-order system with assigned poles.
机译:在本文中,我们说明了基于运动(SfM)策略的非线性结构估计在三个问题上的应用,即针对1)点,2)球体和3)圆柱体的3D结构估计。在所有三种情况下,适当的参数化都可以将问题简化为单个数量的估计。知道此估计数量和可用的测量值后,便可以获取所观察对象的完整3D结构。此外,在点特征情况下,严格地比较了基于平面或球形投影模型的两个不同的参数化。实际上,这两个模型以某种方式出乎意料地导致了SfM估计任务的不同收敛特性。所报告的仿真和实验结果完全支持理论分析,并清楚地表明了所提出的主动估计策略的优势,该策略尤其能够对与分配有极点的参考线性二阶系统产生相同的估计误差。

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