id |
caadria2021_113 |
authors |
Fink, Theresa, Vuckovic, Milena and Petkova, Asya |
year |
2021 |
title |
KPI-Driven Parametric Design of Urban Systems |
doi |
https://doi.org/10.52842/conf.caadria.2021.2.579
|
source |
A. Globa, J. van Ameijde, A. Fingrut, N. Kim, T.T.S. Lo (eds.), PROJECTIONS - Proceedings of the 26th CAADRIA Conference - Volume 2, The Chinese University of Hong Kong and Online, Hong Kong, 29 March - 1 April 2021, pp. 579-588 |
summary |
We present a framework for data-driven algorithmic generation and post-evaluation of alternative urban developments. These urban developments are framed by a strategic placement of diverse urban typologies whose spatial configurations follow design recommendations outlined in existing building and zoning regulations. By using specific rule-based generative algorithms, different spatial arrangements of these urban typologies, forming building blocks, are derived and visualized, given the aforementioned spatial, legal, and functional regulations. Once the envisioned urban configurations are generated, these are evaluated based on a number of aspects pertaining to spatial, economic, and thermal (environmental) dimensions, which are understood as the key performance indicators (KPIs) selected for informed ranking and evaluation. To facilitate the analysis and data-driven ranking of derived numeric KPIs, we deployed a diverse set of analytical techniques (e.g., conditional selection, regression models) enriched with visual interactive mechanisms, otherwise known as the Visual Analytics (VA) approach. The proposed approach has been tested on a case study district in the city of Vienna, Austria, offering real-world design solutions and assessments. |
keywords |
Urban design evaluation; parametric modelling; urban simulation; environmental performance; visual analytics |
series |
CAADRIA |
email |
|
full text |
file.pdf (5,214,764 bytes) |
references |
Content-type: text/plain
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last changed |
2022/06/07 07:50 |
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