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A general framework for multi-resolution visualization.

机译:多分辨率可视化的通用框架。

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摘要

Multi-resolution visualization (MRV) systems are widely used for handling large amounts of information. These systems look different but they share many common features. The visualization research community lacks a general framework that summarizes the common features among the wide variety of MRV systems in order to help in MRV system design, analysis, and enhancement. This dissertation proposes such a general framework.; This framework is based on the definition that a MRV system is a visualization system that visually represents perceptions in different levels of detail and allows users to interactively navigate among the representations. The visual representations of a perception are called a view. The framework is composed of two essential components: view simulation and interactive visualization.; View simulation means that an MRV system simulates views of non-existing perceptions through simplification on the data structure or the graphics generation process. This is needed when the perceptions provided to the MRV system are not at the user's desired level of detail. The framework identifies classes of view simulation approaches and describes them in terms of simplification operators and operands (spaces). The simplification operators are further divided into four categories, namely sampling operators, aggregation operators, approximation operators, and generalization operators. Techniques in these categories are listed and illustrated via examples. The simplification operands (spaces) are also further divided into categories, namely data space and visualization space. How different simplification operators are applied to these spaces is also illustrated using examples.; Interactive visualization means that an MRV system visually presents the views to users and allows users to interactively navigate among different views or within one view. Three types of MRV interface, namely the zoomable interface, the overview + context interface, and the focus + detail interface, are presented with examples. Common interaction tools used in MRV systems, such as zooming and panning, selection, distortion, overlap reduction, previewing, and dynamic simplification are also presented.; A large amount of existing MRV systems are used as examples in this dissertation, including several MRV systems developed by the author based on the general framework. In addition, a case study that analyzes and suggests possible improvements for an existing MRV system is described. These examples and the case study reveal that the framework covers the common features of a wide variety of existing MRV systems, and helps users analyze and improve existing MRV systems as well as design new MRV systems.
机译:多分辨率可视化(MRV)系统被广泛用于处理大量信息。这些系统看起来不同,但是它们具有许多共同的特征。可视化研究社区缺乏一个通用框架来概括各种MRV系统之间的共同特征,以帮助MRV系统设计,分析和增强。本文提出了这样一个总体框架。该框架基于以下定义:MRV系统是一种可视化系统,可以直观地表示不同级别的感知,并允许用户在表示之间进行交互导航。感知的视觉表示称为视图。该框架由两个基本组件组成:视图模拟和交互式可视化。视图模拟是指MRV系统通过简化数据结构或图形生成过程来模拟不存在的感知的视图。当提供给MRV系统的感知未达到用户所需的详细程度时,这是必需的。该框架识别视图模拟方法的类别,并根据简化运算符和操作数(空间)进行描述。简化算子又分为四类,即抽样算子,集合算子,逼近算子和归纳算子。通过示例列出并说明了这些类别中的技术。简化操作数(空间)也进一步分为几类,即数据空间和可视化空间。使用示例还说明了如何将不同的简化运算符应用于这些空间。交互式可视化意味着MRV系统以可视方式向用户呈现视图,并允许用户在不同视图之间或一个视图内进行交互导航。通过示例介绍了三种类型的MRV界面,即可缩放界面,概述+上下文界面以及焦点+详细界面。还介绍了MRV系统中常用的交互工具,例如缩放和平移,选择,失真,重叠减少,预览和动态简化。本文以大量现有的MRV系统为例,包括作者根据通用框架开发的几种MRV系统。此外,还介绍了一个案例研究,该案例分析并提出了对现有MRV系统可能的改进的建议。这些示例和案例研究表明,该框架涵盖了各种现有MRV系统的共有功能,并可以帮助用户分析和改进现有MRV系统以及设计新的MRV系统。

著录项

  • 作者

    Yang, Jing.;

  • 作者单位

    Worcester Polytechnic Institute.;

  • 授予单位 Worcester Polytechnic Institute.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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