The Branching Data Model, the Foundation for Automated Tree Visualization

H. P. Zellweger
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引用次数: 3

Abstract

The paper presents the newly discovered Branching Data Model; it is a building block for the tree structure. This arrangement of data originates in the relational table by formalizing the so-called parent-child data relations located between two attributes. A well-defined SQL SELECT statement, motivated by theoretical mathematics, establishes a uniform pattern of data relations in the table that has a tree structure. This query both exposes these data relations as well as models them. Program logic operates on these models to enable tree structures to expand and grow computationally. Labels on the nodes of these trees allow end-users to visualize the table's data content. An early form of artificial intelligence (AI) generalizes this data relationship beyond the database table. It uses brute force to verify that another type of Branching Data Model exists between the tables in a database system. The former type of data model is a conceptual model; it organizes the data contained in a database table into menu data for an end-user navigation interface. The latter is a linkage model that connects tables throughout the database system. Together, these two types of Branching Data Models enable program logic to generate database applications entirely by automation. This end-user applications are data-driven. They allow end-users to locate information in a database by visualizing its data content.
分支数据模型,自动树可视化的基础
本文介绍了新发现的分支数据模型;它是树形结构的组成部分。通过形式化位于两个属性之间的所谓的父子数据关系,这种数据安排起源于关系表。由理论数学驱动的定义良好的SQL SELECT语句在具有树结构的表中建立数据关系的统一模式。该查询既公开了这些数据关系,也为它们建模。程序逻辑在这些模型上操作,使树形结构能够在计算上扩展和增长。这些树节点上的标签允许最终用户可视化表的数据内容。人工智能(AI)的早期形式将这种数据关系推广到数据库表之外。它使用暴力来验证数据库系统中的表之间是否存在另一种类型的分支数据模型。前一类数据模型是概念模型;它将数据库表中包含的数据组织为最终用户导航界面的菜单数据。后者是连接整个数据库系统中的表的链接模型。这两种分支数据模型使程序逻辑能够完全自动化地生成数据库应用程序。这些终端用户应用程序是数据驱动的。它们允许最终用户通过可视化数据库的数据内容来定位数据库中的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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