2012/07/11 by Yan Sun, Dan A. Ralescu, Sun, Yan +2 · 1 citation
Computer Science · Mathematics · #52A22 #62H10 #62H12 #FOS: Mathematics #Fuzzy Systems and Optimization #Neural Networks and Applications #Statistical Methods and Inference #Statistics Theory (math.ST) #math.ST #msc:52A22 #msc:62H10 #msc:62H12 #stat.TH
paper · pdf · doi:10.48550/arxiv.1207.2740
To appear in Annals of the Institute of Statistical Mathematics; 21 pages, 4 figures
openalex publication_date 2012/07/11 · arxiv created 2014/01/21 · arxiv updated 2014/01/22 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
Many statistical data are imprecise due to factors such as measurement errors, computation errors, and lack of information. In such cases, data are better represented by intervals rather than by single numbers. Existing methods for analyzing interval-valued data include regressions in the metric space of intervals and symbolic data analysis, the latter being proposed in a more general setting. However, there has been a lack of literature on the distribution-based inferences for interval-valued data. In an attempt to fill this gap, we extend the concept of normality for random sets by Lyashenko (1983) and propose a normal hierarchical model for random intervals. In addition, we develop a minimum contrast estimator (MCE) for the model parameters, which we show is both consistent and asymptotically normal. Simulation studies support our theoretical findings, and show very promising results. Finally, we successfully apply our model and MCE to a real dataset.