Landscape Design Methodology: Pattern formation through the use of Cellular Automata

The purpose of this study is to develop a landscape design methodology based on the use of a Cellular Automaton (CA) algorithm in order to introduce the plant-plant interaction factor in the plantating design of a site. This design methodology introduces the relationships between neighboring individ...

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Main Authors: Sergi Abellán Sanfélix, Marcel Bilurbina Camps, Marilena Christodoulou
Format: Article
Language:Catalan
Published: Elisava Barcelona School of Design and Engineering 2019-07-01
Series:Temes de Disseny
Subjects:
Online Access:https://192.168.73.126/index.php/Temes/article/view/417795
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author Sergi Abellán Sanfélix
Marcel Bilurbina Camps
Marilena Christodoulou
author_facet Sergi Abellán Sanfélix
Marcel Bilurbina Camps
Marilena Christodoulou
author_sort Sergi Abellán Sanfélix
collection DOAJ
description The purpose of this study is to develop a landscape design methodology based on the use of a Cellular Automaton (CA) algorithm in order to introduce the plant-plant interaction factor in the plantating design of a site. This design methodology introduces the relationships between neighboring individuals of different species as parameters for the project. These parameters are codified in order to define the Cellular Automaton rules. Parameters related to the growth and morphologic characteristics of the species as well as programmatic and aesthetic parameters of the project may be introduced as rules that influence the behavior of the CA algorithm. The algorithm developed is called NNB-CA (Natural Neighbouring Behaviour Cellular Automata) and it is based on John Conway’s original “Game of Life” CA. The design methodology takes in account site conditions and is developed in two phases. In the first one, starting with a list of species, a preselection of species is done taking into account the site’s parameters and it defines which species are able to populate on each area of the discretized site. In the second phase, the CA algorithm is run applying the relational rules with the selected species. This iterative process is applied until it reaches an equilibrium state. Rules related to the competition between species according to their growing characteristics are studied comparing an analog/natural evolutive process using rapidly developing plants and the corresponding digital process that simulates the analog one.
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issn 2604-9155
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language Catalan
publishDate 2019-07-01
publisher Elisava Barcelona School of Design and Engineering
record_format Article
series Temes de Disseny
spelling doaj-art-8acd10cc1f0a45c2bd56eaa44d6915f02025-08-20T02:22:33ZcatElisava Barcelona School of Design and EngineeringTemes de Disseny2604-91552604-60322019-07-0135Landscape Design Methodology: Pattern formation through the use of Cellular AutomataSergi Abellán Sanfélix0https://orcid.org/0000-0002-8709-8404Marcel Bilurbina Camps1https://orcid.org/0000-0001-8295-0277Marilena Christodoulou2https://orcid.org/0000-0003-1077-9110AE LandAE LandAE LandThe purpose of this study is to develop a landscape design methodology based on the use of a Cellular Automaton (CA) algorithm in order to introduce the plant-plant interaction factor in the plantating design of a site. This design methodology introduces the relationships between neighboring individuals of different species as parameters for the project. These parameters are codified in order to define the Cellular Automaton rules. Parameters related to the growth and morphologic characteristics of the species as well as programmatic and aesthetic parameters of the project may be introduced as rules that influence the behavior of the CA algorithm. The algorithm developed is called NNB-CA (Natural Neighbouring Behaviour Cellular Automata) and it is based on John Conway’s original “Game of Life” CA. The design methodology takes in account site conditions and is developed in two phases. In the first one, starting with a list of species, a preselection of species is done taking into account the site’s parameters and it defines which species are able to populate on each area of the discretized site. In the second phase, the CA algorithm is run applying the relational rules with the selected species. This iterative process is applied until it reaches an equilibrium state. Rules related to the competition between species according to their growing characteristics are studied comparing an analog/natural evolutive process using rapidly developing plants and the corresponding digital process that simulates the analog one. https://192.168.73.126/index.php/Temes/article/view/417795cellular automatondigital landscape architecturealgorithmic designcommunity dynamicsdigital ecosystem
spellingShingle Sergi Abellán Sanfélix
Marcel Bilurbina Camps
Marilena Christodoulou
Landscape Design Methodology: Pattern formation through the use of Cellular Automata
Temes de Disseny
cellular automaton
digital landscape architecture
algorithmic design
community dynamics
digital ecosystem
title Landscape Design Methodology: Pattern formation through the use of Cellular Automata
title_full Landscape Design Methodology: Pattern formation through the use of Cellular Automata
title_fullStr Landscape Design Methodology: Pattern formation through the use of Cellular Automata
title_full_unstemmed Landscape Design Methodology: Pattern formation through the use of Cellular Automata
title_short Landscape Design Methodology: Pattern formation through the use of Cellular Automata
title_sort landscape design methodology pattern formation through the use of cellular automata
topic cellular automaton
digital landscape architecture
algorithmic design
community dynamics
digital ecosystem
url https://192.168.73.126/index.php/Temes/article/view/417795
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AT marcelbilurbinacamps landscapedesignmethodologypatternformationthroughtheuseofcellularautomata
AT marilenachristodoulou landscapedesignmethodologypatternformationthroughtheuseofcellularautomata