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Revisiting Interval Protection, a.k.a. Partial Cell Suppression, for Tabular Data

机译:重新访问间隔保护,也称为部分单元格抑制,用于表格数据

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Interval protection or partial cell suppression was introduced in "M. Fischetti, J.-J. Salazar, Partial cell suppression: A new methodology for statistical disclosure control, Statistics and Computing, 13, 13-21, 2003" as a "linearization" of the difficult cell suppression problem. Interval protection replaces some cells by intervals containing the original cell value, unlike in cell suppression where the values are suppressed. Although the resulting optimization problem is still huge-as in cell suppression, it is linear, thus allowing the application of efficient procedures. In this work we present preliminary results with a prototype implementation of Benders decomposition for interval protection. Although the above seminal publication about partial cell suppression applied a similar methodology, our approach differs in two aspects: (ⅰ) the boundaries of the intervals are completely independent in our implementation, whereas the one of 2003 solved a simpler variant where boundaries must satisfy a certain ratio; (ⅱ) our prototype is applied to a set of seven general and hierarchical tables, whereas only three two-dimensional tables were solved with the implementation of 2003.
机译:间隔保护或部分细胞抑制在“ M. Fischetti,J.-J. Salazar,部分细胞抑制:统计披露控制的新方法,统计与计算,2003年13月13-21日”中被引入为“线性化”。困难的细胞抑制问题。间隔保护用包含原始像元值的间隔替换某些像元,这与像元抑制中值被抑制的情况不同。尽管所产生的优化问题仍然很大,如细胞抑制,但它是线性的,因此可以应用有效的程序。在这项工作中,我们提供了用于间隔保护的Benders分解原型实现的初步结果。尽管以上有关部分细胞抑制的开创性出版物采用了类似的方法,但我们的方法在两个方面有所不同:(ⅰ)区间的边界在我们的实现中是完全独立的,而2003年的一个解决了一个更简单的变体,其中边界必须满足一定比例(ⅱ)我们的原型应用于一组七个通用表和层次表,而2003年的实施只解决了三个二维表。

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