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Autopoiesis + extended cognition + nature = can buildings think?

机译:自我生成+扩展认知+自然=建筑物可以思考吗?

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To incorporate metabolic, bioremedial functions into the performance of buildings and to balance generative architecture's dominant focus on computational programming and digital fabrication, this text first discusses hybridizing Maturana and Varela's biological theory of autopoiesis with Andy Clark's hypothesis of extended cognition. Doing so establishes a procedural protocol to research biological domains from which design could source data/insight from biosemiotics, sensory plants, and biocomputation. I trace computation and botanic simulations back to Alan Turing's little-known 1950s Morphogenetic drawings, reaction-diffusion algorithms, and pioneering artificial intelligence (AI) in order to establish bioarchitecture's generative point of origin. I ask provocatively, Can buildings think? as a question echoing Turing's own, "Can machines think?".
机译:为了将代谢,生物修复功能纳入建筑物的性能并平衡生成式建筑在计算程序设计和数字制造方面的主要关注,本文首先讨论了将Maturana和Varela的自生生物学理论与安迪·克拉克(Andy Clark)的扩展认知假设相结合的问题。这样做建立了一个程序性协议来研究生物领域,从中可以从设计中获取来自生物符号学,感觉植物和生物计算的数据/见解。我将计算和植物模拟追溯到Alan Turing鲜为人知的1950年代形态学绘图,反应扩散算法和开创性的人工智能(AI),以建立生物架构的生成起点。我挑衅地问,建筑物可以思考吗?作为一个回应图灵自己的问题,“机器可以思考吗?”。

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