Bodily Processing: What Progress Has Been Made in Understanding the Embodiment of Computing Systems?

IF 0.1 0 PHILOSOPHY
Martina Properzi
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引用次数: 2

Abstract

" In this article I will address the issue of the embodiment of computing sys-tems from the point of view distinctive of the so-called Unconventional Computation, focusing on the paradigm known as Mor-phological Computation. As a first step, I will contextualize Morphological Computa-tion within the disciplinary field of Embod-ied Artificial Intelligence: broadly con-ceived, Embodied Artificial Intelligence may be characterized as embracing both conventional and unconventional ap-proaches to the artificial emulation of natu-ral intelligence. Morphological Computa-tion stands out from other paradigms of unconventional Embodied Artificial Intelli-gence in that it discloses a new, closer kind of connection between embodiment and computation. I will further my investigation by briefly reviewing the state-of-the-art in Morphological Computation: attention will be given to a very recent trend, whose core concept is that of “organic reconfigu-rability”. In this direction, as a final step, two advanced cases of study of organic or living morphological computers will be pre-sented and discussed. The prospect is to shed some light on our title question: what progress has been made in understanding the embodiment of computing systems? Keywords: Embodied Artificial Intelligence; Morphological Computation; Reservoir Compu-ting Systems; Organic Reconfigurability; 3D Bio-Printed Synthetic Corneas; Xenobots "
身体处理:在理解计算系统的具体化方面取得了什么进展?
在这篇文章中,我将从所谓的非常规计算的独特观点来解决计算系统的具体化问题,重点关注被称为形态-生理计算的范式。作为第一步,我将把形态计算置于嵌入式人工智能学科领域的背景下:广义上来说,嵌入式人工智能可以被描述为采用传统和非常规的方法来模拟自然智能。形态计算从其他非传统的具身人工智能范式中脱颖而出,因为它揭示了一种新的、更紧密的具身与计算之间的联系。我将通过简要回顾形态计算的最新技术来进一步研究:关注最近的一个趋势,其核心概念是“有机可重构性”。在这个方向上,作为最后一步,将提出和讨论有机或活体形态计算机的两个高级研究案例。它的前景是为我们的标题问题提供一些启示:在理解计算系统的体现方面取得了哪些进展?关键词:具身人工智能;形态学运算;水库计算系统;有机重构性;3D生物打印合成角膜;Xenobots”
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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