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A collective-based adaptive symbiotic model for surface reconstruction in area-based stereo

机译:基于集体的自适应共生模型,用于基于区域立体的曲面重建

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This paper proposes a novel optimization algorithm for image-space matching and three-dimensional space analysis, using an adapted scheme of evolutionary computation that employs the concept of symbiosis in a collective of homogeneous populations. It is applied to the automatic generation of disparity surfaces used for depth estimation in stereo vision. The global task of approximating the complete disparity surface is decomposed to a large number of smaller local problems, each solvable by a smaller processing unit. Coevolution is sustained in such a way as to counteract the arbitrary decomposition of the original super-problem, so that the local evolutions of all the subproblems become interlocked. This, in the long run, provides a consistent global solution, and it does so via an asynchronous and massively parallel architecture. The entire surface is partitioned to a set of adjoining patches represented by distinct species or populations, with phenotypes corresponding to different polynomial functionals. The credit assignment functions take into account both self and symbiotic terms in an adaptive and dynamic manner, in order to produce disparity patches that are fit within their own domain and at the same time fit in association with their symbionts. This persistent propagation of local interactions to a global scale throughout evolution generates a unified disparity surface composed of the many smaller patch surfaces.
机译:本文提出了一种适用于图像空间匹配和三维空间分析的新型优化算法,该算法采用了经过改进的进化计算方案,该方案采用了在同质种群中共生的概念。它应用于自动生成用于立体视觉中深度估计的视差表面。逼近完整视差表面的全局任务被分解为大量较小的局部问题,每个局部问题都可以由较小的处理单元解决。协同进化以抵消原始超问题的任意分解的方式得以维持,因此所有子问题的局部演化变得相互联系。从长远来看,这将提供一致的全局解决方案,并且它是通过异步大规模并行架构实现的。整个表面被划分为一组由不同物种或种群代表的邻接斑块,其表型对应于不同的多项式函数。信用分配功能以自适应和动态的方式同时考虑了自我和共生术语,以产生适合其自身域并同时与其共生体相适应的差异补丁。局部相互作用在整个进化过程中持续传播到全球范围,产生了由许多较小的面块表面组成的统一视差表面。

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