CNN and the evolution of complex information systems in nature and technology

K. Mainzer
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引用次数: 3

Abstract

Cellular neural/nonlinear networks (CNN) are considered as the emergence of a new paradigm of complexity in the information age. In the framework of nonlinear dynamical systems, they can be compared with other paradigms of complexity (e.g., synergetics) as far as they are mathematically formalized. The dogma of local activity demonstrates remarkable advantages for computer simulations of pattern formation and pattern recognition in nature (e.g., diffusion-reaction processes, morphogenesis, artificial life, neural networks), but especially for nonlinear information processing in computer and chip technology. In the information age, nonlinear information processing and communication in global networks like the Internet are a challenge of complexity management. Ubiquitous computing is the future of a globalized world. The recent debate in sociology, economics, and philosophy on 'globalism' and 'localism' underlines the importance of the CNN paradigm for social, economic, and cultural systems.
CNN与复杂信息系统在自然和技术上的演变
细胞神经/非线性网络(CNN)被认为是信息时代出现的一种新的复杂性范式。在非线性动力系统的框架中,只要它们是数学形式化的,它们就可以与其他复杂的范式(例如,协同学)进行比较。局部活动的教条在自然界模式形成和模式识别的计算机模拟(例如,扩散反应过程、形态发生、人工生命、神经网络)中显示出显著的优势,特别是在计算机和芯片技术中的非线性信息处理方面。在信息时代,互联网等全球网络中的非线性信息处理和通信对复杂性管理提出了挑战。无处不在的计算是全球化世界的未来。最近在社会学、经济学和哲学中关于“全球主义”和“地方主义”的争论强调了CNN范式对社会、经济和文化系统的重要性。
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