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The myriads of Alife: Importing complex systems and self-organization into engineering

机译:无数的Alife:将复杂的系统和自组织导入工程

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On the one hand, phenomena of spontaneous pattern formation are generally random and repetitive, whereas, on the other hand, complicated heterogeneous architectures are the product of human design. Biological organisms are rather unique examples of natural systems that are both self-organized and architectured. Can we export their precise self-formation capabilities to technological systems? To address this issue, I have proposed a new field of research called “Morphogenetic Engineering” [9], which explores the artificial design and implementation of autonomous systems capable of developing complex, heterogeneous morphologies. Particular emphasis is set on the programmability and controllability of self-organization, properties that are often underappreciated in complex systems science—while, conversely, the benefits of self-organization are often underappreciated in engineering methodologies.
机译:一方面,自发模式形成的现象通常是随机且重复的,而另一方面,复杂的异构体系结构是人类设计的产物。生物是自组织和构造的自然系统的相当独特的例子。我们可以将其精确的自我形成能力导出到技术系统中吗?为了解决这个问题,我提出了一个新的研究领域,称为“形态发生工程学” [9],它探讨了能够开发复杂,异构形态的自主系统的人工设计和实现。特别强调的是自组织的可编程性和可控制性,这些属性在复杂系统科学中常常被低估了,而相反,自组织的好处在工程方法学中却常常被低估了。

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