The vision of the Cluster of Excellence Integrative Computational Design and Construction for Architecture (EXC IntCDC) is to harness the full potential of digital technologies in order to rethink design, fabrication and construction based on integration and interdisciplinarity, with the goal of enabling game-changing innovation in the building sector as it can only occur through highly integrative fundamental research in an interdisciplinary, large-scale research undertaking.

The Cluster aims to lay the methodological foundations for a profound rethinking of the design and building process and related building systems by adopting an integrative computational approach based on interdisciplinary research encompassing architecture, structural engineering, building physics, engineering geodesy, manufacturing and system engineering, computer science and robotics, social sciences and humanities. We aim to bundle the internationally recognised competencies in these fields of the University of Stuttgart and the Max Planck Institute for Intelligent Systems to accomplish our research mission.

The Cluster’s Industry Consortium will ensure direct knowledge exchange, transfer and rapid impact. Taking into account the significant difference between the building industry and other industries, we will tackle the related key challenges of achieving a higher level of integration, performance and adaptability, and we will address the most important building typologies of multi-storey buildings, long-span buildings, and the densification of urban areas.

The Cluster’s broad methodological insights and interdisciplinary findings are expected to result in comprehensive approaches to harnessing digital technologies, which will help to address the ecological, economic and social challenges that current incremental approaches cannot solve.

We envision IntCDC to significantly shape the future of architecture and the building industry through a higher-level integration of computational design and engineering methods, effective cyber-physical (tightly interlinked computational and material) robotic construction processes and new forms of human-machine collaboration, efficient and sustainable next-generation building systems, and socio-cultural and ethical reflection. Thus, the Cluster will have significant impact on creating the conditions required for a liveable and sustainable future built environment, high-quality yet affordable architecture and a novel digital building culture.
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31 to 40 of 71 Results
May 23, 2024 - EXC IntCDC RP 3: Multi-Storey Wood Building System
Udaykumar, Keerthana; Orozco, Luis; Krtschil, Anna; Menges, Achim; Knippers, Jan, 2024, "Timber Column Slab Solver", https://doi.org/10.18419/DARUS-4172, DaRUS, V1
This dataset contains an agent-based exploration of the design space for modular slab and column systems. The primary objective is to equip designers with the ability to pinpoint structural configurations that adhere to Serviceability Limit State (SLS) deflection criteria from the beginning of the design process. The methods represent an innovative...
May 22, 2024 - EXC IntCDC Research Project 21 'Modular Data Architecture for Preparation, Annotation and Exchange for Conceptual Design'
Skoury, Lior; Wortmann, Thomas, 2024, "Multi-protocol Messaging and Streaming Broker for Grasshopper (RabbitMQ_GH)", https://doi.org/10.18419/DARUS-4193, DaRUS, V1
RabbitMQ GH is a Grasshopper plugin for implementing RabbitMQ messaging capabilities to exchange data between external applications and Grasshopper scripts in real time, with a high degree of flexibility and scalability. INSTALLATION Erlang installation Download the current Erlang version installer and follow the default setup in the installation w...
May 16, 2024 - Visualisierungsinstitut der Universität Stuttgart
Koch, Maurice; Pathmanathan, Nelusa; Weiskopf, Daniel; Kurzhals, Kuno, 2024, "Dataset for "How Deep Is Your Gaze? Leveraging Distance in Image-Based Gaze Analysis"", https://doi.org/10.18419/DARUS-4141, DaRUS, V1, UNF:6:sGarZdQENrgDcSTnOSbSeA== [fileUNF]
This dataset was recorded in an AR environment comprised of three physical and three virtual scene objects. Four participants were instructed to gaze at the six objects from different depth levels (50cm, 150cm, 300cm) in two orders (left-to-right, right-to-left). There are seven trials per condition, which equals 42 recordings in total. More detail...
May 15, 2024 - EXC IntCDC RP 3: Multi-Storey Wood Building System
Orozco, Luis; Krtschil, Anna; Skoury, Lior; Knippers, Jan; Menges, Achim, 2024, "Reinforcement Arrangement Data", https://doi.org/10.18419/DARUS-4181, DaRUS, V1
This repository contains three computational hollow timber slab reinforcement arrangement methods and their results when applied to a testing setup representing the architectural goals of the developed timber building system. The testing setup includes the floor plate boundaries, column locations, and results of a finite element analysis. The FEA,...
May 7, 2024 - EXC IntCDC Research Project 3 'Co-Design of Multi-Storey Timber Building Systems for Building Stock Extension'
Krtschil, Anna; Orozco, Luis; Shah, Anand; Chen, Tzu-Ying; Menges, Achim; Knippers, Jan, 2024, "Replication Data for: Structural development of a novel punctually supported timber building system for multi-storey construction", https://doi.org/10.18419/DARUS-4166, DaRUS, V1, UNF:6:CgMKEPQT3HoCQ7EFUf5Aog== [fileUNF]
This dataset contains the experimental data of the tension tests of a stepped 3-layer Cross-Laminated Timber (CLT) connection that is described in the related publication. The dataset contains load and displacement values. The stepped edge connection is tested for different horizontal connection angles: 0, 30, 50 and 80 degrees. Three specimen (a,...
Apr 10, 2024 - EXC IntCDC Research Project 29 'COLife: More-Than-Human Perspective to Codesign'
Davidova, Marie; Porqueddu, Elena; Behnam, Hananeh; Valverde Rojas, María Claudia; Zímová, Kateřina; Gazdová, Kateřina; Sweeting, Ben; Goodbun, John; Perera, Dulmini; Sadler, Simon; Huthöfer, Stefanie, 2024, "COLife_04 - Multi-Scale More-than-Human Atlas Gigamaping, Ecosystem Mapping and CoDesigning", https://doi.org/10.18419/DARUS-4123, DaRUS, V1, UNF:6:rYSRFONRqVBOzoG7Tj9Imw== [fileUNF]
The dataset presents the Multi-Scale More-than-Human Atlas Gigamapping Workshop output that should evaluate and suggest new developments of COLife project prototyping. We also gathered the ecological check data and planted new species with gardening and seedbombs. This was all elaborated in the workshop and speculated on within the 'Enacting Bateso...
Apr 3, 2024 - EXC IntCDC Research Project 29 'COLife: More-Than-Human Perspective to Codesign'
Davidova, Marie; Prokop, Šimon; Zímová, Kateřina; Goryczka, Kateřina; Michálek, Ondřej; Psaras, Michalis; Konatzii, Panagiota; Kyprianou, Stefanos; Vučić, Marko; Hanzlík, Krištof; Trgala, Kamil; Oberhofnerová, Eliška, 2024, "COLridor - Responsive Wood Insect Hotels", https://doi.org/10.18419/DARUS-4117, DaRUS, V1, UNF:6:riO2bjLr1WMBhu0Y14DeAA== [fileUNF]
The dataset is releasing fabrication data of two prototypes produced in Prague - TreeHugger CZ and Nicosia - TreeHugger CY. These are responsive wood insect hotels produced in 2017 and 18, respectively. The data were adapted for Rhino 8. TreeHugger CY also involves instructions. The codesign process with stakeholders from TreeHugger CZ was register...
Mar 28, 2024 - ISW Timo König Cornuspline path planning algorithm for the fabrication of coreless wound fibre-polymer composite structures
König, Timo, 2024, "Replication Data for: Cornuspline path planning algorithm for the fabrication of coreless wound fiber-polymer composite structures", https://doi.org/10.18419/DARUS-3577, DaRUS, V1, UNF:6:LRhHzlkFvUo/LckJmnuntQ== [fileUNF]
This dataset contains all the validation data that presented within the paper "Cornuspline path planning algorithm for the fabrication of coreless wound fiber-polymer composite structures". This paper presents a spline path planning algorithm based on clothoids. This algorithm considers both the process requirements and the dynamic characteristics...
Mar 13, 2024 - EXC IntCDC Research Project 19 'Co-Design Methods for Developing Distributed Cooperative Multi-Robot Systems for Construction'
Leder, Samuel; Siriwardena, Lasath; Menges, Achim, 2024, "ABxM.DistributedRobotics.RADr: Agent-based Design and Control of multiple Roaming Autonomous Distributed robots (RADr)", https://doi.org/10.18419/DARUS-4058, DaRUS, V1
ABxM.DistributedRobotics.RADr is an add-on to ABxM.Core for agent-based design and control of multiple Roaming Autonomous Distributed robots (RADr) that assemble hexagonal digital materials. The add-on contains various agent system constructs and utilities for simulation of the swarm within Rhino/Grasshopper and control of physical swarm of wheeled...
Mar 5, 2024 - EXC IntCDC Research Project 19 'Co-Design Methods for Developing Distributed Cooperative Multi-Robot Systems for Construction'
Leder, Samuel; Kragl, Philipp; Menges, Achim, 2024, "Roaming Autonomous Distributed robot (RADr)", https://doi.org/10.18419/DARUS-4059, DaRUS, V1
Roaming Autonomous Distributed robot (RADr) is a two-wheeled mobile robot that can assemble hexagonal digital materials. This dataset contains the 3D models for a RADr and a digital material that the RADr can actively grab with an electromagnet and move around (in 3dm and STEP file format). On top of each, there are retroreflective markers so that...
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