Cartographic generalization yesterday and today

Paweł Cebrykow
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引用次数: 4

Abstract

Abstract The author presents evolution of views on cartographic generalization since it was defined by Emil von Sydow (1866) until today. It is divided into three chapters which present the evolution of views on cartographic generalization, models of generalization and digital generalization, respectively. Views on the topic of generalization evolved in the direction of broadening the term itself and towards a different perception of its nature. Originally generalization was understood as a process which can be performed on maps only. Now the prevailing understanding is that it begins earlier, at the conceptual stage of map making. Determination of the method of contents’ presentation is an indication of such generalization. The character of generalization is another important aspect of the discussion on its nature. The notion of a subjective nature of generalization, expressed, among others, by Max Eckert (1921), was originally predominant. Later there also appeared different opinions, allowing its objectivization (K.A. Saliszczew 1998). This direction helped to result in automation of the process of generalization of map contents. Currently a dualism in perceiving generalization can be observed, with a strong bias towards its objective aspect. In a separate chapter the author discusses conceptual models of generalization proposed by: L. Ratajski (1967, 1973), J. Morrison (1974), B.G. Nickerson (1988), K.E. Brassel and R. Weibel (1988), as well as R.B. McMaster and K.S. Shea (1992). They are divided into the universal models of theoretical character and those constructed for the purpose of computer automation of the process. Attempts at digital generalization which currently develop in the context of generalization of general, and especially topographic maps, are discussed separately. Most important algorithms concerning generalization of linear objects are presented chronologically, concluding with a description of comprehensive generalization systems. The summary presents two main conclusions. Firstly – work on generalization will continue to consider the geographical context during the process. Secondly – generalization of thematic, and especially statistical maps is the prospective direction.
昨天和今天的制图综合
摘要本文介绍了自埃米尔·冯·赛多(Emil von Sydow, 1866)提出制图综合概念至今,制图综合观点的演变。全文共分三章,分别介绍了制图综合、综合模式和数字综合的发展历程。关于泛化这一主题的看法朝着扩大这一术语本身的方向发展,并朝着对其性质的不同看法发展。最初,泛化被理解为只能在地图上执行的过程。现在普遍的理解是,它开始得更早,在地图制作的概念阶段。内容呈现方法的确定是这种概括的一种指示。概括的性质是讨论其性质的另一个重要方面。马克思·埃克特(1921)所表达的泛化的主观本质的概念最初是占主导地位的。后来也出现了不同的观点,使其客观化(K.A. Saliszczew 1998)。这一方向有助于实现地图内容概化过程的自动化。目前可以观察到在感知概括的二元论,对其客观方面的强烈偏见。在另一章中,作者讨论了L. Ratajski(1967, 1973)、J. Morrison(1974)、B.G. Nickerson(1988)、K.E. Brassel和R. Weibel(1988)以及R.B. McMaster和K.S. Shea(1992)提出的泛化概念模型。它们分为理论性质的通用模型和为过程的计算机自动化目的而构建的模型。数字综合的尝试,目前发展的背景下,一般,特别是地形图的综合,分别讨论。本文按时间顺序介绍了有关线性对象泛化的最重要算法,最后对综合泛化系统进行了描述。摘要提出了两个主要结论。首先,泛化工作将在过程中继续考虑地理环境。其次,专题地图,特别是统计地图的泛化是未来的发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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