An integrated QFD and 2-tuple linguistic method for solution selection in crowdsourcing contests for innovative tasks
暂无分享,去创建一个
[1] Mohamed Zairi,et al. Key enablers for the effective implementation of QFD: a critical analysis , 2005, Ind. Manag. Data Syst..
[2] Kouroush Jenab,et al. Integration of AHP-QFD for selecting facility location , 2015 .
[3] Schahram Dustdar,et al. Auction-based crowdsourcing supporting skill management , 2013, Inf. Syst..
[4] Lei Zhang,et al. A new emergency decision support methodology based on multi-source knowledge in 2-tuple linguistic model , 2018, Knowl. Based Syst..
[5] Jizhong Zhao,et al. Task Assignment on Multi-Skill Oriented Spatial Crowdsourcing , 2015, IEEE Transactions on Knowledge and Data Engineering.
[6] Xiaoyue Liu,et al. Evaluating emergency response capacity by fuzzy AHP and 2-tuple fuzzy linguistic approach , 2012, Expert Syst. Appl..
[7] Hefin Rowlands,et al. Methods and techniques to help quality function deployment (QFD) , 2000 .
[8] Andrew W. H. Ip,et al. Explore the feasibility of adopting crowdsourcing for innovative problem solving , 2015, Ind. Manag. Data Syst..
[9] Wen-Chang Ko. Construction of house of quality for new product planning: A 2-tuple fuzzy linguistic approach , 2015, Comput. Ind..
[10] Jennifer Blackhurst,et al. A four-phase AHP–QFD approach for supplier assessment: a sustainability perspective , 2012 .
[11] Yucheng Dong,et al. Multi-granular unbalanced linguistic distribution assessments with interval symbolic proportions , 2015, Knowl. Based Syst..
[12] Ozcan Kilincci,et al. Fuzzy AHP approach for supplier selection in a washing machine company , 2011, Expert Syst. Appl..
[13] Sihem Amer-Yahia,et al. Task assignment optimization in knowledge-intensive crowdsourcing , 2015, The VLDB Journal.
[14] Abdollah Hadi-Vencheh,et al. A fuzzy AHP-DEA approach for multiple criteria ABC inventory classification , 2011, Expert Syst. Appl..
[15] Lotfi A. Zadeh,et al. The Concepts of a Linguistic Variable and its Application to Approximate Reasoning , 1975 .
[16] E. Ertugrul Karsak,et al. An integrated fuzzy MCDM approach for supplier evaluation and selection , 2015, Comput. Ind. Eng..
[17] Xuefeng Zhang,et al. User selection for collaboration in product development based on QFD and DEA approach , 2019, J. Intell. Manuf..
[18] Lauro Osiro,et al. A model based on 2-tuple fuzzy linguistic representation and Analytic Hierarchy Process for supplier segmentation using qualitative and quantitative criteria , 2017, Expert Syst. Appl..
[19] Lada A. Adamic,et al. Crowdsourcing with All-Pay Auctions: A Field Experiment on Taskcn , 2014, Manag. Sci..
[20] E. Ertugrul Karsak,et al. An integrated supplier selection methodology incorporating QFD and DEA with imprecise data , 2014, Expert Syst. Appl..
[21] Enrique Herrera-Viedma. Modeling the retrieval process for an information retrieval system using an ordinal fuzzy linguistic approach , 2001 .
[22] Yiwei Gong,et al. Estimating participants for knowledge-intensive tasks in a network of crowdsourcing marketplaces , 2017, Inf. Syst. Frontiers.
[23] Nuno Silva,et al. A survey of task-oriented crowdsourcing , 2015, Artificial Intelligence Review.
[24] Bilge Bilgen,et al. An integrated fuzzy QFD and TOPSIS methodology for choosing the ideal gas fuel at WWTPs , 2017 .
[25] Huishan Wu,et al. A novel framework to evaluate programmable logic controllers: a fuzzy MCDM perspective , 2016, J. Intell. Manuf..
[26] Francisco Rodrigues Lima Junior,et al. A fuzzy inference and categorization approach for supplier selection using compensatory and non-compensatory decision rules , 2013, Appl. Soft Comput..
[27] Abbas Keramati,et al. Supplier selection model using QFD-ANP methodology under fuzzy multi-criteria environment , 2018 .
[28] Paul Young,et al. Supplier selection paradigm: An integrated hierarchical QFD methodology under multiple-criteria environment , 2010, Appl. Soft Comput..
[29] Daren C. Brabham. Motivations for Participation in a Crowdsourcing Application to Improve Public Engagement in Transit Planning , 2012 .
[30] Vikas Kumar,et al. An Integrated QFD-TOPSIS Methodology for Supplier Selection in SMEs , 2011, 2011 Third International Conference on Computational Intelligence, Modelling & Simulation.
[31] Weiwei Wang,et al. Managing non-cooperative behaviors in consensus-based multiple attribute group decision making: An approach based on social network analysis , 2018, Knowl. Based Syst..
[32] Ramakrishnan Ramanathan,et al. Incorporating cost and environmental factors in quality function deployment using data envelopment analysis , 2009 .
[33] Francisco Herrera,et al. A 2-tuple fuzzy linguistic representation model for computing with words , 2000, IEEE Trans. Fuzzy Syst..
[34] Carlos Busso,et al. Increasing the Reliability of Crowdsourcing Evaluations Using Online Quality Assessment , 2016, IEEE Transactions on Affective Computing.
[35] Enrique Herrera-Viedma,et al. A Self-Management Mechanism for Noncooperative Behaviors in Large-Scale Group Consensus Reaching Processes , 2018, IEEE Transactions on Fuzzy Systems.
[36] Panagiotis G. Ipeirotis,et al. Quality management on Amazon Mechanical Turk , 2010, HCOMP '10.
[37] Eric Schenk,et al. Towards a characterization of crowdsourcing practices , 2011 .
[38] Eleonora Bottani,et al. A QFD-ANP Method for Supplier Selection with Benefits, Opportunities, Costs and Risks Considerations , 2018, Int. J. Inf. Technol. Decis. Mak..
[39] Jiafu Tang,et al. Rating technical attributes in fuzzy QFD by integrating fuzzy weighted average method and fuzzy expected value operator , 2006, Eur. J. Oper. Res..
[40] David Johnstone,et al. Factors influencing the decision to crowdsource: A systematic literature review , 2015, Information Systems Frontiers.
[41] R. Y. K. Fung,et al. Fuzzy expected value modelling approach for determining target values of engineering characteristics in QFD , 2005 .
[42] Francisco Herrera,et al. Incorporating filtering techniques in a fuzzy linguistic multi-agent model for information gathering on the web , 2004, Fuzzy Sets Syst..
[43] Enrique Herrera-Viedma,et al. Evaluating the information quality of Web sites: A methodology based on fuzzy computing with words , 2006, J. Assoc. Inf. Sci. Technol..
[44] Daren C. Brabham. MOVING THE CROWD AT THREADLESS , 2010 .
[45] Enrique Herrera-Viedma,et al. A recommender system for research resources based on fuzzy linguistic modeling , 2009, Expert Syst. Appl..
[46] J. Rezaei,et al. A supplier selection life cycle approach integrating traditional and environmental criteria using the best worst method , 2016 .
[47] Shu-Ping Wan,et al. 2-Tuple linguistic hybrid arithmetic aggregation operators and application to multi-attribute group decision making , 2013, Knowl. Based Syst..
[48] Martin Schreier,et al. The Value of Crowdsourcing: Can Users Really Compete with Professionals in Generating New Product Ideas? , 2009 .