id |
caadria2018_065 |
authors |
Makki, Mohammed and Showkatbakhsh, Milad |
year |
2018 |
title |
Control of Morphological Variation Through Population Based Fitness Criteria |
doi |
https://doi.org/10.52842/conf.caadria.2018.1.153
|
source |
T. Fukuda, W. Huang, P. Janssen, K. Crolla, S. Alhadidi (eds.), Learning, Adapting and Prototyping - Proceedings of the 23rd CAADRIA Conference - Volume 1, Tsinghua University, Beijing, China, 17-19 May 2018, pp. 153-162 |
summary |
A primary challenge for the application of an evolutionary process as a design tool is the ability to maintain variation amongst design solutions while simultaneously increasing in fitness. The 'golden rule' of balancing exploration versus exploitation of solutions within the population becomes more critical when the solution set is required to present a controlled degree of phenotypic variation but ensure that convergence of the solution set continues towards increased levels of fitness. The experiments presented within this paper address the control of variation throughout the simulation by means of incorporating a population-based fitness criterion that is utilised as a fitness objective and is calculated dynamically throughout the algorithmic run in both single and multi objective design problems. |
keywords |
Architecture; Computation ; Evolution; Urban; Variation |
series |
CAADRIA |
email |
|
full text |
file.pdf (13,072,819 bytes) |
references |
Content-type: text/plain
|
Deb, K, Agrawal, S, Pratap, A and Meyarivan, T (2000)
A Fast Elitist Non-Dominated Sorting Genetic Algorithm for Multi-Objective Optimization: NSGA-II
, International Conference on Parallel Problem Solving From Nature, Paris, France, pp. 849-858
|
|
|
|
Fonseca, CM and Fleming, PJ (1993)
Genetic Algorithms for Multiobjective Optimization: Formulation, Discussion and Generalization.
, Proceedings of the Fifth International Conference on Genetic Algorithms, California, pp. 416-423
|
|
|
|
Goldberg, D (1989)
Genetic Algorithms in Search, Optimization, and Machine Learning
, Addison Wesley, Boston
|
|
|
|
Horn, J, Nafpliotis, N and Goldberg, DE (1994)
A Niched Pareto Genetic Algorithm for Multiobjective Optimization
, Proceedings of IEEE Conference, pp. 82-87
|
|
|
|
Knowles, JD and Corne, DW (2000)
Approximating the Nondominated Front Using the Pareto Archived Evolution Strategy
, Evolutionary computation, 8(2), pp. 149-172
|
|
|
|
Makki, M, Navarro, D and Farzaneh, A (2015)
The Evolutionary Adaptation of Urban Tissues through Computational Analysis
, Proceedings of eCAADe, Vienna, pp. 563-571
|
|
|
|
Srinivas, N and Deb, K (1994)
Muiltiobjective Optimization Using Nondominated Sorting in Genetic Algorithms
, Evolutionary computation, 2(3), pp. 221-248
|
|
|
|
Vierlinger, R (2013)
Multi Objective Design Interface
, Ph.D. Thesis, U. of Applied Arts
|
|
|
|
Zitzler, E and Thiele, L (1999)
Multiobjective Evolutionary Algorithms: A Comparative Case Study and the Strength Pareto Approach
, IEEE on Evolutionary Computation, pp. 257-271
|
|
|
|
Zitzler, E, Laumanns, M and Thiele, L (2001)
SPEA2: Improving the Strength Pareto Evolutionary Algorithm
, ETH Research Collection, 1, pp. 1-21
|
|
|
|
last changed |
2022/06/07 07:59 |
|