Toward multi-species building envelopes: A critical literature review of multi-criteria decision-making for design support
暂无分享,去创建一个
Y. Grobman | Jens Joschinski | Mariasole Calbi | Verena Vogler | Shany Barath | Surayyn Uthaya Selvan | S. Saroglou | Verena Vogler | M. Calbi
[1] M. Schloter,et al. Creating ecologically sound buildings by integrating ecology, architecture and computational design , 2022, People and Nature.
[2] Diego Navarro-Mateu,et al. Decoding the Architectural Genome: Multi-Objective Evolutionary Algorithms in Design , 2022 .
[3] S. Lou,et al. Multi-objective building design optimization considering the effects of long-term climate change , 2021 .
[4] Mohamad Razkenari,et al. Design optimization of urban typologies: A framework for evaluating building energy performance and outdoor thermal comfort , 2021, Sustainable Cities and Society.
[5] Jianjun Zhao,et al. Life cycle cost assessment and multi-criteria decision analysis of environment-friendly building insulation materials - A review , 2021, Energy and Buildings.
[6] Todd Sanderson,et al. Cocoa suitability mapping using multi-criteria decision making: an agile step towards soil security , 2021, Soil Security.
[7] Arega Mulu,et al. Assessment of soil erosion rate and hotspot areas using RUSLE and multi-criteria evaluation technique at Jedeb watershed, Upper Blue Nile, Amhara Region, Ethiopia , 2021 .
[8] S. Avram,et al. GIS-Based Multi-Criteria Analysis Method for Assessment of Lake Ecosystems Degradation—Case Study in Romania , 2021, International journal of environmental research and public health.
[9] A. Prasad,et al. Optimal Design of Barrage Profile on Anisotropic Soil Using Multi‐Objective Optimization Approach , 2021, Water Resources Management.
[10] Tao Sun,et al. Ecological preservation based multi-objective optimization of coastal seawall engineering structures , 2021 .
[11] Chun-Ho Liu,et al. Performance evaluation of population-based metaheuristic algorithms and decision-making for multi-objective optimization of building design , 2021, Building and Environment.
[12] Y. Grobman,et al. Thermal performance of sculptured tiles for building envelopes , 2021 .
[13] T. Dindaroglu,et al. Multi-criteria analysis for mapping of environmentally sensitive areas in a karst ecosystem , 2021, Environment, Development and Sustainability.
[14] V. Chimonyo,et al. Multi-criteria suitability analysis for neglected and underutilised crop species in South Africa , 2021, PloS one.
[15] Dalia Streimikiene,et al. A Systematic Literature Review of Multi-Criteria Decision-Making Methods for Sustainable Selection of Insulation Materials in Buildings , 2021, Sustainability.
[16] Dirk Cattrysse,et al. Multi-Criteria Decision-Making Methods to Address Water Allocation Problems: A Systematic Review , 2021, Water.
[17] Yunsong Han,et al. Multi-objective Optimisation of a Free-form Building Shape to improve the Solar Energy Utilisation Potential using Artificial Neural Networks , 2021, CAADRIA proceedings.
[18] Ayse Gunay Kibarer,et al. Evaluation of stage IV brain cancer treatment techniques , 2021 .
[19] Maria Manso,et al. Green roof and green wall benefits and costs: A review of the quantitative evidence , 2021 .
[20] Virgilio Ciancio,et al. Multi-objective approach to the optimization of shape and envelope in building energy design , 2020 .
[21] Arda Agirbas,et al. Facade Optimization For An Education Building Using Multi-objective Evolutionary Algorithms , 2020 .
[22] O. Dengiz,et al. Site suitability analysis for potential agricultural land with spatial fuzzy multi-criteria decision analysis in regional scale under semi-arid terrestrial ecosystem , 2020, Scientific Reports.
[23] N. Bozali,et al. Assessment of the soil protection function of forest ecosystems using GIS-based Multi-Criteria Decision Analysis: A case study in Adıyaman, Turkey , 2020 .
[24] J. Xia,et al. Optimizing local climate zones to mitigate urban heat island effect in human settlements , 2020 .
[25] A. Maqsoom,et al. Soil erosion susceptibility mapping using a GIS-based multi-criteria decision approach: Case of district Chitral, Pakistan , 2020 .
[26] M. Allahyari,et al. Ecological potentials of trees, shrubs and hedge species for urban green spaces by multi criteria decision making , 2020 .
[27] Yoshiki Yamagata,et al. Decision support for retrofitting building envelopes using multi-objective optimization under uncertainties , 2020 .
[28] Jia Wang,et al. Approaches to Multi-Objective Optimization and Assessment of Green Infrastructure and Their Multi-Functional Effectiveness: A Review , 2020 .
[29] Mark J. Clayton,et al. A multi-objective optimization approach for climate-adaptive building envelope design using parametric behavior maps , 2020, Building and Environment.
[30] J. Olaniyan,et al. Soil suitability evaluation for production of improved Cassava ( Manihot esculenta ) varieties in Kwara State, Nigeria: A GIS-Based and Multi-Criteria analysis , 2020 .
[31] Hongzhong Chen,et al. A preference-based multi-objective building performance optimization method for early design stage , 2020, Building Simulation.
[32] Mehmet E. Ozbek,et al. Identification of the Criteria for Building Maintenance Decisions in Facility Management: First Step to Developing a Multi-Criteria Decision-Making Approach , 2020 .
[33] Maria Manso,et al. Green infrastructure and public policies: An international review of green roofs and green walls incentives , 2020 .
[34] Fatih Tüysüz,et al. An in-depth review of theory of the TOPSIS method: An experimental analysis , 2020 .
[35] Y. Hagos,et al. Soil erosion-prone area identification using multi-criteria decision analysis in Ethiopian highlands , 2020, Modeling Earth Systems and Environment.
[36] F. Loreto,et al. A Survey of Multiple Interactions Between Plants and the Urban Environment , 2020, Frontiers in Forests and Global Change.
[37] M. Türkeş,et al. Landslide susceptibility mapping for the Black Sea Region with spatial fuzzy multi-criteria decision analysis under semi-humid and humid terrestrial ecosystems , 2020, Theoretical and Applied Climatology.
[38] Javier Neila González,et al. A systematic review of genetic algorithm-based multi-objective optimisation for building retrofitting strategies towards energy efficiency , 2020 .
[39] Hongxing Yang,et al. Multi-criterion optimization of integrated photovoltaic facade with inter-building effects in diverse neighborhood densities , 2020 .
[40] Chun Jiang Zhu,et al. Identification of Priority Areas for Soil and Water Conservation Planning Based on Multi-Criteria Decision Analysis Using Choquet Integral , 2020, International journal of environmental research and public health.
[41] Thomas Wortmann,et al. Multi-Objective Optimization for Daylight Retrofit , 2020, eCAADe proceedings.
[42] Tuan Anh Pham,et al. Assessment of Plant Species for the Roadside at Vung Tau City of Vietnam Using Multi-criteria Analysis , 2020 .
[43] Ma Chenlong,et al. An Informed Method - Visualization for Multi-objective Optimization in Conceptual Design Phase , 2020, CAADRIA proceedings.
[44] J. Haymaker,et al. Constructing and Exploring Building Configurations Based on Design and Multi Performance Criteria , 2020 .
[45] H. Hassan,et al. Impact of window parameters on the building envelope on the thermal comfort, energy consumption and cost and environment , 2020, International Journal of Ventilation.
[46] José Nuno Beirão,et al. A Workflow for the Performance Based Design of Naturally Ventilated Tall Buildings Using a Genetic Algorithm (GA) , 2019, Blucher Design Proceedings.
[47] Pedro Santiago,et al. Evolutionary Optimization of Building Facade Form for Energy and Comfort in Urban Environment through BIM and Algorithmic Modeling A case study in Porto, Portugal , 2019 .
[48] Tansel Dökeroglu,et al. A survey on new generation metaheuristic algorithms , 2019, Comput. Ind. Eng..
[49] Jonathan Natanian,et al. A digital workflow to quantify regenerative urban design in the context of a changing climate , 2019, Renewable and Sustainable Energy Reviews.
[50] C. Hunold. Green Infrastructure and Urban Wildlife , 2019, Humanimalia.
[51] T. Auer,et al. Green Facades and Living Walls—A Review Establishing the Classification of Construction Types and Mapping the Benefits , 2019, Sustainability.
[52] D. Beckovsky,et al. Perspectives of moss species in urban ecosystems and vertical living-architecture: A review , 2019, Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications.
[53] Lindsay S. Miles,et al. Urbanization Shapes the Ecology and Evolution of Plant-Arthropod Herbivore Interactions , 2019, Front. Ecol. Evol..
[54] Xuemei Bai,et al. Physical and Non-Physical Benefits of Vertical Greenery Systems: A Review , 2019, Journal of Urban Technology.
[55] Yun Kyu Yi,et al. Building facade multi-objective optimization for daylight and aesthetical perception , 2019, Building and Environment.
[56] S. Kar,et al. Multi-Objective and Multi-Attribute Optimization for Sustainable Development Decision Aiding , 2019, Sustainability.
[57] S. A. Mahmood,et al. Toward GIS-Based Approach for Identification of Ecological Sensitivity Areas: Multi-Criteria Evaluation Technique for Promotion of Tourism in Soon Valley, Pakistan , 2019, Journal of the Indian Society of Remote Sensing.
[58] Gerardo Maria Mauro,et al. Building envelope design: Multi-objective optimization to minimize energy consumption, global cost and thermal discomfort. Application to different Italian climatic zones , 2019, Energy.
[59] Taehoon Hong,et al. A multi-objective optimization model for determining the building design and occupant behaviors based on energy, economic, and environmental performance , 2019, Energy.
[60] Xin Zhou,et al. Multi-objective optimization design of a complex building based on an artificial neural network and performance evaluation of algorithms , 2019, Adv. Eng. Informatics.
[61] O. Dengiz,et al. Site suitability assessment and mapping for rice cultivation using multi-criteria decision analysis based on fuzzy-AHP and TOPSIS approaches under semihumid ecological condition in delta plain , 2019, Paddy and Water Environment.
[62] Dong Kun Lee,et al. Modeling spatial climate change landuse adaptation with multi-objective genetic algorithms to improve resilience for rice yield and species richness and to mitigate disaster risk , 2019, Environmental Research Letters.
[63] Martina Artmann,et al. Urban sprawl, compact urban development and green cities. How much do we know, how much do we agree? , 2019, Ecological Indicators.
[64] Tjprc,et al. A Review on Applications of Multi-Criteria Decision Making (MCDM) For Solar Panel Selection , 2019, International Journal of Mechanical and Production Engineering Research and Development.
[65] Neil Golding,et al. A Multi Criteria Assessment Method for Identifying Vulnerable Marine Ecosystems in the North-East Atlantic , 2018, Front. Mar. Sci..
[66] Evangelos Bellos,et al. Parametric analysis and multi-objective optimization of a solar heating system for various building envelopes , 2018, Thermal Science and Engineering Progress.
[67] Parmanand Kumar,et al. Remote sensing for assessing soil erosion susceptibility of the lesser Himalayan watershed by Multi Criteria Analysis (MCA) of morphometry, hypsometry, and land cover , 2018, Remote Sensing.
[68] Tarun Kumar,et al. Watershed prioritization based on soil and water hazard model using remote sensing, geographical information system and multi-criteria decision analysis approach , 2018, Geocarto International.
[69] Patrick Janssen,et al. Multi-objective optimisation of building form, envelope and cooling system for improved building energy performance , 2018, Automation in Construction.
[70] Susana Rodrigues,et al. Multi-criteria Decision-Making in Waste Collection to Reach Sustainable Waste Management , 2018, Sustainable Solid Waste Collection and Management.
[71] Patrick J. O’Farrell,et al. A multi-criterion approach for prioritizing areas in urban ecosystems for active restoration following invasive plant control , 2018, Environmental Management.
[72] Farshad Kheiri,et al. A review on optimization methods applied in energy-efficient building geometry and envelope design , 2018, Renewable and Sustainable Energy Reviews.
[73] Luc Chouinard,et al. Multi-criteria decision-making methods for preliminary design of sustainable facades , 2018, Journal of Building Engineering.
[74] Mariano Bresciani,et al. GIS-based multi-criteria site selection for zebra mussel cultivation: Addressing end-of-pipe remediation of a eutrophic coastal lagoon ecosystem. , 2018, The Science of the total environment.
[75] Khalid M. Mosalam,et al. Performance-based engineering and multi-criteria decision analysis for sustainable and resilient building design , 2018, Structural Safety.
[76] I. G. Capeluto,et al. Rationalization methods in computer aided fabrication: A critical review , 2018, Automation in Construction.
[77] Cecilie Brandt-Olsen,et al. Biomorpher: Interactive evolution for parametric design , 2018, International Journal of Architectural Computing.
[78] Carlos Bartesaghi Koc,et al. Evaluating the cooling effects of green infrastructure: a systematic review of methods, indicators and data sources , 2018 .
[79] Tomohiro Fukuda,et al. Optimizing the evaluation of building envelope design for thermal performance using a BIM-based overall thermal transfer value calculation , 2018 .
[80] J. Ferreira,et al. Inclusion and exclusion criteria in research studies: definitions and why they matter , 2018, Jornal brasileiro de pneumologia : publicacao oficial da Sociedade Brasileira de Pneumologia e Tisilogia.
[81] Forrest J. Masters,et al. Multi-Objective Optimal Design of a Building Envelope and Structural System Using Cyber-Physical Modeling in a Wind Tunnel , 2018, Front. Built Environ..
[82] Davide Geneletti,et al. Multi‐criteria decision analysis for nature conservation: A review of 20 years of applications , 2018 .
[83] Nyoman Gunantara,et al. A review of multi-objective optimization: Methods and its applications , 2018 .
[84] XIAOFEI SHEN,et al. Environmental Parametric Multi-Objective Optimization for High Performance Facade Design , 2018, CAADRIA proceedings.
[85] Ermias Sisay,et al. Mapping soil erosion potential zones with a geo-spatial application of multi-criteria evaluation technique model in highlands of Ethiopia , 2018 .
[86] Xiao-Ning Shen,et al. EVALUATING THE MULTI-OBJECTIVE OPTIMIZATION METHODOLOGY FOR PERFORMANCE-BASED BUILDING DESIGN IN PROFESSIONAL PRACTICE , 2018 .
[87] Frank Witlox,et al. Livelihood alternatives model for sustainable rangeland management: a review of multi-criteria decision-making techniques , 2019, Environment, Development and Sustainability.
[88] Yu Xiao,et al. Guidance on Conducting a Systematic Literature Review , 2017 .
[89] B. Muys,et al. Multi‐criteria‐based Plant Species Selection for Gully and Riverbank Stabilization in a Sub‐humid Tropical Area , 2017 .
[90] K. Soanes,et al. The value of virtual conferencing for ecology and conservation , 2017, Conservation biology : the journal of the Society for Conservation Biology.
[91] Pan Delu,et al. Zoning of Hangzhou Bay ecological red line using GIS-based multi-criteria decision analysis , 2017 .
[92] I. G. Capeluto,et al. External shading in buildings: comparative analysis of daylighting performance in static and kinetic operation scenarios , 2017 .
[93] Gang Liu,et al. Integrated Building Envelope Design Process Combining Parametric Modelling and Multi-Objective Optimization , 2017 .
[94] Jérémie Bourdon,et al. A multi-objective constraint-based approach for modeling genome-scale microbial ecosystems , 2017, PloS one.
[95] Nadia Darwiche-Criado,et al. Comparing Two Multi-Criteria Methods for Prioritizing Wetland Restoration and Creation Sites Based on Ecological, Biophysical and Socio-Economic Factors , 2017, Water Resources Management.
[96] Thomas Wortmann,et al. Opossum - Introducing and Evaluating a Model-based Optimization Tool for Grasshopper , 2017 .
[97] Elif Ensari,et al. Computational Decision Support for an Airport Complex Roof Design A Case Study of Evolutionary Optimization for Daylight Provision and Overheating Prevention , 2017 .
[98] Ji-Hyun Lee,et al. Thermal and Daylighting Optimization of Complex 3D Faceted Façade for Office Building , 2017, Proceedings of the 35th International Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe) [Volume 1].
[99] Sema Alaçam,et al. Algorithm Driven Design: Comparison of Single-Objective and Multi-Objective Genetic Algorithms in the Context of Housing Design , 2017 .
[100] V. Urios,et al. A critical review of multi-criteria decision making in protected areas , 2016 .
[101] Li He,et al. A tempo-spatial-distributed multi-objective decision-making model for ecological restoration management of water-deficient rivers , 2016 .
[102] Norbert Harmathy,et al. Multi-criterion optimization of building envelope in the function of indoor illumination quality towards overall energy performance improvement , 2016 .
[103] Antoni Moore,et al. GIS-based multi-criteria analysis of breeding habitats for recolonising species: New Zealand sea lions , 2016 .
[104] Nathan C. Brown,et al. Design for structural and energy performance of long span buildings using geometric multi-objective optimization , 2016 .
[105] Ji-Hyun Lee,et al. Daylighting Based Parametric Design Exploration of 3D Facade Patterns , 2016 .
[106] A. Keshtkar,et al. Multi-criteria analysis in Artemia farming site selection for sustainable desert ecosystems planning and management (case study: Siahkouh Playa, Iran) , 2016, Environmental Earth Sciences.
[107] Yasha Jacob Grobman,et al. Microclimate on building envelopes: testing geometry manipulations as an approach for increasing building envelopes' thermal performance , 2016 .
[108] Anh Tuan Nguyen,et al. A performance comparison of multi-objective optimization algorithms for solving nearly-zero-energy-building design problems , 2016 .
[109] T. Pukkala,et al. Integrated use of GIS, remote sensing and multi-criteria decision analysis to assess ecological land suitability in multi-functional forestry , 2016, Journal of Forestry Research.
[110] Dexuan Song,et al. Research on Urban Heat-Island Effect☆ , 2016 .
[111] Dragan Ćoćkalo,et al. Application of multi criteria decision making to urban planning: A review , 2016 .
[112] Pan Lei,et al. Multi-objective optimization for building performance design considering thermal comfort and energy consumption , 2016, 2016 35th Chinese Control Conference (CCC).
[113] Swades Pal. Identification of soil erosion vulnerable areas in Chandrabhaga river basin: a multi-criteria decision approach , 2016, Modeling Earth Systems and Environment.
[114] Mark Sanderson,et al. Conferences versus journals in computer science , 2015, J. Assoc. Inf. Sci. Technol..
[115] A. Akay,et al. Assessment of ecological passages along road networks within the Mediterranean forest using GIS-based multi criteria evaluation approach , 2015, Environmental Monitoring and Assessment.
[116] Mario Sassone,et al. The early design stage of a building envelope: Multi-objective search through heating, cooling and lighting energy performance analysis , 2015 .
[117] Gerardo Maria Mauro,et al. Design of the Building Envelope: A Novel Multi-Objective Approach for the Optimization of Energy Performance and Thermal Comfort , 2015 .
[118] Michela Turrin,et al. Sports building envelope optimization using multi-objective multidisciplinary design optimization (M-MDO) techniques: Case of indoor sports building project in China , 2015, 2015 IEEE Congress on Evolutionary Computation (CEC).
[119] Andrea Presciutti,et al. Retroreflective façades for urban heat island mitigation: Experimental investigation and energy evaluations , 2015 .
[120] S. Simić,et al. Prioritization of Soil Erosion Vulnerable Areas Using Multi-Criteria Analysis Methods , 2015 .
[121] C. Daniels,et al. Green infrastructure as life support: urban nature and climate change , 2015 .
[122] E. Borgogno-Mondino,et al. Soil quality and landscape metrics as driving factors in a multi-criteria GIS procedure for peri-urban land use planning , 2015 .
[123] Paul Shepherd,et al. Multi-objective Optimisation of Building Geometry for Energy Consumption and View Quality , 2015 .
[124] Rosaria de F. S. M. Russo,et al. Criteria in AHP: A Systematic Review of Literature , 2015, ITQM.
[125] M. Montazeri,et al. Ranking Plant Species for Stabilizing SandDune to Combat Desertification by Multi-Criteria Decision Making Methods of ELECTRE and LINEAR Assignment , 2014 .
[126] S. Hernández-Daumás,et al. A Multi-Criteria Index for Ecological Evaluation of Tropical Agriculture in Southeastern Mexico , 2014, PloS one.
[127] Hwang Yi,et al. Automated generation of optimised building envelope: simulation based multi-objective process using evolutionary algorithm , 2014 .
[128] Joachim Krois,et al. GIS-based multi-criteria evaluation to identify potential sites for soil and water conservation techniques in the Ronquillo watershed, northern Peru , 2014 .
[129] Benny Raphael,et al. Multi-Criteria Decision Making for the Design of Building Façade , 2014 .
[130] Zoe Jordan,et al. Developing the review question and inclusion criteria. , 2014, The American journal of nursing.
[131] Edmundas Kazimieras Zavadskas,et al. State of art surveys of overviews on MCDM/MADM methods , 2014 .
[132] V. Loftness,et al. Multi-objective optimization of building envelope for energy consumption and daylight , 2014 .
[133] Wei Yan,et al. BIM-based Parametric Building Energy Performance Multi-Objective Optimization , 2014, Proceedings of the 32nd International Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe) [Volume 2].
[134] D. Gossard,et al. Multi-objective optimization of a building envelope for thermal performance using genetic algorithms and artificial neural network , 2013 .
[135] Joseph Iwaro,et al. The impact of sustainable building envelope design on building sustainability using Integrated Performance Model , 2013 .
[136] Prasenjit Chatterjee,et al. Selection of materials using multi-criteria decision-making methods with minimum data , 2013 .
[137] David Rutten,et al. Galapagos: On the Logic and Limitations of Generic Solvers , 2013 .
[138] Gwo-Hshiung Tzeng,et al. Comments on “Multiple criteria decision making (MCDM) methods in economics: an overview” , 2012 .
[139] Robert Aish,et al. Progress Towards Multi-Criteria Design Optimisation Using Designscript With Smart Form, Robot Structural Analysis and Ecotect Building Performance Analysis" , 2012 .
[140] Diego Andina,et al. Continuous multi-criteria methods for crop and soil conservation planning on La Colacha (Río Cuarto, Province of Córdoba, Argentina) , 2012 .
[141] P. Janssen,et al. Multi-criteria evolutionary optimisation of building enveloped during conceptual stages of design , 2012, Proceedings of the 17th Conference on Computer Aided Architectural Design Research in Asia (CAADRIA).
[142] Dimitrios Gounaridis,et al. ASSESSING SOIL EROSION RISK FOR RHODES ISLAND, GREECE WITH A GIS-BASED MULTI-CRITERIA DECISION ANALYSIS , 2012 .
[143] Robert F. Boehm,et al. Passive building energy savings: A review of building envelope components , 2011 .
[144] E. Zavadskas,et al. Multiple criteria decision making (MCDM) methods in economics: an overview , 2011 .
[145] Hong Min Kim,et al. Multi-objective optimization in urban design , 2011, SpringSim.
[146] B. Muys,et al. Tree species selection for land rehabilitation in Ethiopia: from fragmented knowledge to an integrated multi-criteria decision approach , 2011, Agroforestry Systems.
[147] Yu-zhi Li,et al. A Multi-Objective Model for Evaluation of Road-Region Ecosystem Stability , 2011 .
[148] Mark A. Goddard,et al. Scaling up from gardens: biodiversity conservation in urban environments. , 2010, Trends in ecology & evolution.
[149] O. Bossdorf,et al. Climate-neutral ecology conferences: just do it! , 2010, Trends in ecology & evolution.
[150] I. G. Capeluto,et al. Non-Linear Architectural Design Process , 2010 .
[151] J. Chéry,et al. Multi-criteria spatialization of soil organic carbon sequestration potential from agricultural intensification in Senegal , 2010 .
[152] Ludo Waltman,et al. Software survey: VOSviewer, a computer program for bibliometric mapping , 2009, Scientometrics.
[153] Paul D. Hallett,et al. Potential of multi‐objective models for risk‐based mapping of the resilience characteristics of soils: demonstration at a national level , 2009 .
[154] 吕一旭 Yixu Lu. 引言 (Introduction) , 2009, Provincial China.
[155] F. Samu,et al. From multi-criteria approach to simple protocol: Assessing habitat patches for conservation value using species rarity , 2008 .
[156] Ian Mell. Green Infrstructure: concepts and planning , 2008 .
[157] Camille Salinesi,et al. MCDM Techniques Selection Approaches: State of the Art , 2007, 2007 IEEE Symposium on Computational Intelligence in Multi-Criteria Decision-Making.
[158] Eckart Zitzler,et al. Are All Objectives Necessary? On Dimensionality Reduction in Evolutionary Multiobjective Optimization , 2006, PPSN.
[159] Eva Ocelíková,et al. Multi-criteria decision making methods , 2005 .
[160] Leslie K. Norford,et al. Shape Generation Using Pareto Genetic Algorithms: Integrating Conflicting Design Objectives in Low-Energy Architecture , 2003, CAADRIA proceedings.
[161] Ferdinando Villa,et al. A GIS-based method for multi-objective evaluation of park vegetation , 1996 .
[162] O. Guillitte,et al. Bioreceptivity : a new concept for building ecology studies , 1995 .
[163] Antony D. Radford,et al. A multicriteria model for building performance and design , 1987 .