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Method for discovering relationships in data by dynamic quantum clustering

机译:动态量子聚类发现数据关系的方法

摘要

Data clustering is provided according to a dynamical framework based on quantum mechanical time evolution of states corresponding to data points. To expedite computations, we can approximate the time-dependent Hamiltonian formalism by a truncated calculation within a set of Gaussian wave-functions (coherent states) centered around the original points. This allows for analytic evaluation of the time evolution of all such states, opening up the possibility of exploration of relationships among data-points through observation of varying dynamical-distances among points and convergence of points into clusters. This formalism may be further supplemented by preprocessing, such as dimensional reduction through singular value decomposition and/or feature filtering.
机译:根据动态框架基于对应于数据点的状态的量子力学时间演化来提供数据聚类。为了加快计算速度,我们可以在以原始点为中心的一组高斯波函数(相干态)中通过截断计算来近似时间相关的哈密顿形式。这允许对所有这些状态的时间演化进行分析评估,通过观察点之间变化的动态距离以及将点收敛到聚类,从而开启探索数据点之间关系的可能性。可以通过预处理(例如通过奇异值分解和/或特征过滤的尺寸缩减)进一步补充这种形式主义。

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