符号数据分析的新模型

IF 1.4 4区 计算机科学 Q2 STATISTICS & PROBABILITY
Boris Beranger, Huan Lin, Scott Sisson
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引用次数: 14

摘要

符号数据分析(SDA)是一个新兴的统计学领域,涉及理解和建模具有分布形式(即符号)的数据,如随机列表、区间和直方图。它是在感兴趣的统计单位是符号的前提下发展起来的,在这个层面上需要推理。在这里,我们考虑了一个不同的视角,这为SDA领域开辟了一个新的研究方向。我们假设,与标准统计分析一样,需要在个人层面的数据层面进行推断。然而,个体层面的数据是未观察到的,并且在分析之前被聚合为观察到的符号——基于组的分布值摘要。我们介绍了一种新的通用方法,用于基于底层测量水平数据的期望概率模型来构造符号数据的似然函数,同时只观察分布摘要。这种方法为新类别的符号设计和构造打开了大门,此外,将SDA开发为一种可行的工具,以实现和改进经典数据分析,特别是对于非常大和复杂的数据集。我们通过一些真实和模拟数据分析,包括对新型多元符号构造技术的研究,说明了SDA研究的这一新方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New models for symbolic data analysis

New models for symbolic data analysis

Symbolic data analysis (SDA) is an emerging area of statistics concerned with understanding and modelling data that takes distributional form (i.e. symbols), such as random lists, intervals and histograms. It was developed under the premise that the statistical unit of interest is the symbol, and that inference is required at this level. Here we consider a different perspective, which opens a new research direction in the field of SDA. We assume that, as with a standard statistical analysis, inference is required at the level of individual-level data. However, the individual-level data are unobserved, and are aggregated into observed symbols—group-based distributional-valued summaries—prior to the analysis. We introduce a novel general method for constructing likelihood functions for symbolic data based on a desired probability model for the underlying measurement-level data, while only observing the distributional summaries. This approach opens the door for new classes of symbol design and construction, in addition to developing SDA as a viable tool to enable and improve upon classical data analyses, particularly for very large and complex datasets. We illustrate this new direction for SDA research through several real and simulated data analyses, including a study of novel classes of multivariate symbol construction techniques.

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来源期刊
CiteScore
3.40
自引率
6.20%
发文量
45
审稿时长
>12 weeks
期刊介绍: The international journal Advances in Data Analysis and Classification (ADAC) is designed as a forum for high standard publications on research and applications concerning the extraction of knowable aspects from many types of data. It publishes articles on such topics as structural, quantitative, or statistical approaches for the analysis of data; advances in classification, clustering, and pattern recognition methods; strategies for modeling complex data and mining large data sets; methods for the extraction of knowledge from data, and applications of advanced methods in specific domains of practice. Articles illustrate how new domain-specific knowledge can be made available from data by skillful use of data analysis methods. The journal also publishes survey papers that outline, and illuminate the basic ideas and techniques of special approaches.
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