An Exploratory Study on Optimal Iterative Design Schedules with the Consideration of Design Quality and Resource Constraints
Autor: | Theresia Daisy Nattali Suparman, Cathy C.W. Hung, Sou-Sen Leu |
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Jazyk: | angličtina |
Rok vydání: | 2021 |
Předmět: |
Mathematical optimization
Schedule Iterative design Process (engineering) Computer science Geography Planning and Development TJ807-830 010501 environmental sciences Management Monitoring Policy and Law Design structure matrix TD194-195 01 natural sciences Renewable energy sources Scheduling (computing) 0502 economics and business Genetic algorithm genetic algorithm GE1-350 iterative schedule 0105 earth and related environmental sciences resource constraint Environmental effects of industries and plants Renewable Energy Sustainability and the Environment 05 social sciences quality equation Environmental sciences Resource allocation Engineering design process 050203 business & management design structure matrix |
Zdroj: | Sustainability, Vol 13, Iss 4584, p 4584 (2021) Sustainability Volume 13 Issue 8 |
ISSN: | 2071-1050 |
Popis: | The classical dependency structure matrix (DSM) can effectively deal with iterative schedules that are highly coupled and interdependent, such as the design process and the concurrent process. Classical DSM generally follows the assumption that the least iteration occurs to achieve the shortest completion time. Nevertheless, the assumption may not hold because tasks ought to be re-visited several times if the design qualities do not meet the requirements. This research proposed a novel iterative scheduling model that combines the classical DSM concept with quality equations. The quality equations were used to determine the number of tasks that ought to be re-visited for fulfilling quality requirements during the iterative design process. Moreover, resources for concurrent activities are generally limited in the real world. Resource allocation should be incorporated in scheduling to avoid the waste and shortage of resources on a design project. This research proposed a new iterative scheduling model based on the classical DSM to optimize the iterative activities’ structure in terms of minimizing completion time with the consideration of design quality under resource constraints. A practical design schedule was introduced to demonstrate the applicability of the proposed DSM algorithm. |
Databáze: | OpenAIRE |
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