复杂性工程:主观问题如何变成客观问题

IF 1.7 4区 工程技术 Q2 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Complexity Pub Date : 2025-07-03 DOI:10.1155/cplx/9728576
José Roberto C. Piqueira, Sérgio Henrique Vannucchi Leme de Mattos, Roberto Costa Ceccato
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引用次数: 0

摘要

本研究详细介绍了过去几十年所经历的重大技术进步,其对工程的影响,以及机器学习与数据科学如何有助于解决人类问题。这里的目标是基于Edgar Morin的作品建立“复杂性工程”的原则,并演示这些原则如何适用于处理复杂系统和与之相关的棘手问题的工程。因此,最初,一个历史的事件,发现和破坏性的发明标志着近几个世纪的工程。概念上的考虑和复杂性工程在不同知识领域的实际应用也显示。这个想法是为工程发展提供一个历史的视角,它开始于科学方法贡献出现之前,并基于对自然行为的准确观察。自从伽利略和牛顿的客观视野以来,科学进步强烈地影响了工程进步,导致了不可思议的奇迹的创造,允许了空间旅行,主要是提供了更舒适的日常生活。然而,两个重要的新问题已经出现:如何将这一进展与地球上的生命联系起来,以及如何利用现有的大数据来改进方法论工程态度。在本研究中,我们讨论了这些问题,我们已经证明,客观获得的大数据可以用来解决主观的人类问题,创造了一个新的学科,称为复杂性工程。复杂性工程在实际问题中的应用通过作者开发的研究实例来展示,这些研究涉及城市规划、心理健康和景观生态学,这些问题需要大量使用数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Complexity Engineering: How Subjective Issues Become Objective

Complexity Engineering: How Subjective Issues Become Objective

This study details the substantial technological progress experienced in the last few decades, its impact on engineering, and how machine learning along with data science can contribute to solving human problems. The objective here is to establish the principles of “complexity engineering,” based on the works of Edgar Morin, and to demonstrate how these principles are suitable for engineering to deal with complex systems and the wicked problems linked to them. Thus, initially, a history of the events, discoveries, and disruptive inventions that marked engineering in recent centuries is made. Conceptual considerations and practical applications of complexity engineering in different areas of knowledge are also shown. The idea is to provide a historical perspective of engineering development that started before the advent of scientific methodological contributions and is based on accurate observation of natural behaviors. Since Galileo and Newton’s objective vision, scientific progress strongly influenced engineering progress, leading to the creation of unthinkable wonders, allowing spatial trips, and mainly providing a more comfortable daily life. However, two important new issues have emerged: ways to relate this progress with life on Earth and techniques to use the big data available to improve methodological engineering attitude. In this study, these questions are discussed, and we have shown that objectively obtained big data can be used to address subjective human problems, creating a new discipline called complexity engineering. The applications of complexity engineering to real problems are presented using examples of research developed by the authors involving urban planning, mental health, and landscape ecology in problems that require massive use of data.

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来源期刊
Complexity
Complexity 综合性期刊-数学跨学科应用
CiteScore
5.80
自引率
4.30%
发文量
595
审稿时长
>12 weeks
期刊介绍: Complexity is a cross-disciplinary journal focusing on the rapidly expanding science of complex adaptive systems. The purpose of the journal is to advance the science of complexity. Articles may deal with such methodological themes as chaos, genetic algorithms, cellular automata, neural networks, and evolutionary game theory. Papers treating applications in any area of natural science or human endeavor are welcome, and especially encouraged are papers integrating conceptual themes and applications that cross traditional disciplinary boundaries. Complexity is not meant to serve as a forum for speculation and vague analogies between words like “chaos,” “self-organization,” and “emergence” that are often used in completely different ways in science and in daily life.
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