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Simulating the Construction of Conceptual Space Architecture to Explore the Potential of Combined Asteroid Mining and Space-based 3D Manufacturing

机译:模拟概念空间架构的构建探讨广告生挖掘和基于空间3D制造的潜力

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Space-based manufacturing is considered a crucial next step for the further development of human settlement in space. There are vast quantities of building resources distributed throughout space, with asteroids among the most apparent candidates for large-scale mining and resource provision. In this presentation, we present a hybrid simulation model in which building materials extracted from asteroids are used in a differential 3D manufacturing process to create expanding modular space architecture. This work is part of the larger research programme E|A|S (Evolving Asteroid Starships) in which concepts for self-developing and evolvable interstellar spacecraft are being created by the DSTART team at Delft University of Technology. A high-level 'factory model' has been created that simulates the different steps of an entire production chain. The functions of the core disjunct components of the model range from mining, processing, storage, and 3D printing to biological life support and habitation. The model's backbone consists of a heuristic based on a decision tree that handles multiple incoming production requests. Architectural production is needed to cope with (1) population growth of the inhabitants, and (2) the need for replacement of modules due to space weathering caused by particle impact and structural fatigue caused by high-energy cosmic radiation. The simulation model combines DEVS (discrete event system specification) and DESS (differential equation system specification) approaches and includes an abstract animated visualization. The model allows the user to keep track of material flows, bottlenecks and production efficiencies. In a series of simulation experiments three parameters are varied: (1) system properties (including aspects such as processing speed and storage capacity), (2) resource availability (by varying the chemical composition of the asteroids), and (3) production demand (which depends on population dynamics and the need for module replacem
机译:基于空间的制造被认为是一个至关重要的下一步,以进一步发展空间的人类沉降。在整个空间中分布了大量的建筑资源,在大规模采矿和资源规划中最明显的候选人中有广告域。在本介绍中,我们介绍了一种混合模拟模型,其中从小行星中提取的建筑材料用于差动3D制造过程中以产生扩展模块化空间架构。这项工作是较大的研究计划E |(不断发展的小行星星舰)的一部分,其中在DSTORT技术大学的DSTART团队正在创建自我发展和不可溶解的星际航天器的概念。创建了一个高级“工厂模型”,用于模拟整个生产链的不同步骤。模型的核心分离组件的功能范围从采矿,加工,储存和3D打印到生物生命的支持和居所。该模型的骨干包括基于处理多个传入生产请求的决策树的启发式。需要建筑生产来应对(1)居民的人口增长,并(2)由于高能宇宙辐射引起的颗粒冲击和结构疲劳引起的空气风化,需要更换模块。仿真模型组合了DEVS(离散事件系统规范)和DESS(差分方程式系统规范)方法,包括抽象动画可视化。该模型允许用户跟踪材料流动,瓶颈和生产效率。在一系列仿真实验中,三个参数变化:(1)系统性质(包括处理速度和存储容量等方面),(2)资源可用性(通过改变小行星的化学成分)和(3)生产需求(取决于人口动态以及模块替代的需求

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