自然启发计算领域是否有助于实现逼真的功能?

IF 1.6 4区 计算机科学 Q4 COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE Artificial Life Pub Date : 2023-11-01 DOI:10.1162/artl_a_00407
Alexandros Tzanetos
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引用次数: 0

摘要

人工智能背后的主要想法很简单:如果我们研究生命系统,开发出具有 "逼真 "特性的新型实用计算系统,会怎么样?进化计算正是这样出现的。研究人员从进化原理中汲取灵感,开发出解决难题的智能方法。这些方法的有效性促使研究人员从生物体和系统中寻找灵感,并将进化概念扩展到其他受自然启发的想法中。近年来,自然启发计算每年推出的算法数量呈指数级增长。作者们声称,他们受到自然界中某种行为的启发,提出了一种栩栩如生的算法。然而,在大多数情况下,数学背景与行为并不匹配。因此,问题是,是否所有受自然启发的算法都能保持栩栩如生?此外,其中是否包含对计算有贡献的想法?本研究旨在:(a) 介绍一些有助于实现计算系统逼真特征的自然启发方法;(b) 讨论是否需要新的逼真特征。
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Does the Field of Nature-Inspired Computing Contribute to Achieving Lifelike Features?
The main idea behind artificial intelligence was simple: what if we study living systems to develop new, practical computing systems that possess “lifelike” properties? And that’s exactly how evolutionary computing emerged. Researchers came up with ideas inspired by the principles of evolution to develop intelligent methods to tackle hard problems. The efficacy of these methods made researchers seek inspiration in living organisms and systems and extend the evolutionary concept to other nature-inspired ideas. In recent years, nature-inspired computing has exhibited an exponential increase in the number of algorithms that are presented each year. Authors claim that they are inspired by a behavior found in nature to come up with a lifelike algorithm. However, the mathematical background does not match the behavior in the majority of these cases. Thus the question is, do all nature-inspired algorithms remain lifelike? Also, are there any ideas included that contribute to computing? This study aims to (a) present some nature-inspired methods that contribute to achieving lifelike features of computing systems and (b) discuss if there is any need for new lifelike features.
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来源期刊
Artificial Life
Artificial Life 工程技术-计算机:理论方法
CiteScore
4.70
自引率
7.70%
发文量
38
审稿时长
>12 weeks
期刊介绍: Artificial Life, launched in the fall of 1993, has become the unifying forum for the exchange of scientific information on the study of artificial systems that exhibit the behavioral characteristics of natural living systems, through the synthesis or simulation using computational (software), robotic (hardware), and/or physicochemical (wetware) means. Each issue features cutting-edge research on artificial life that advances the state-of-the-art of our knowledge about various aspects of living systems such as: Artificial chemistry and the origins of life Self-assembly, growth, and development Self-replication and self-repair Systems and synthetic biology Perception, cognition, and behavior Embodiment and enactivism Collective behaviors of swarms Evolutionary and ecological dynamics Open-endedness and creativity Social organization and cultural evolution Societal and technological implications Philosophy and aesthetics Applications to biology, medicine, business, education, or entertainment.
期刊最新文献
Complexity, Artificial Life, and Artificial Intelligence. Neurons as Autoencoders. Evolvability in Artificial Development of Large, Complex Structures and the Principle of Terminal Addition. Investigating the Limits of Familiarity-Based Navigation. Network Bottlenecks and Task Structure Control the Evolution of Interpretable Learning Rules in a Foraging Agent.
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