首页> 外文会议>Design automation conference;ASME international design engineering technical conferences and computers and information in engineering conference >CHANGING SUBSYSTEM INFORMATION STRATEGIES USING WEIGHTED OBJECTIVES: INCREASING ROBUSTNESS TO BIASED INFORMATION PASSING
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CHANGING SUBSYSTEM INFORMATION STRATEGIES USING WEIGHTED OBJECTIVES: INCREASING ROBUSTNESS TO BIASED INFORMATION PASSING

机译:使用加权目标更改子系统信息策略:增加对偏置信息传递的鲁棒性

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Complex system design requires managing competing objectives between many subsystems. Previous field research has demonstrated that subsystem designers may use biased information passing as a negotiation tactic and thereby reach sub-optimal system-level results due to local optimization behavior. One strategy to combat the focus on local optimization is an incentive structure that promotes system-level optimization. This paper presents a new subsystem incentive structure based on Multi-disciplinary Optimization (MDO) techniques for improving robustness of the design process to such biased information passing strategies. Results from simulations of different utility functions for a test suite of multi-objective problems quantify the system robustness to biased information passing strategies. Results show that incentivizing subsystems with this new weighted structure may decrease the error resulting from biased information passing.
机译:复杂的系统设计需要管理许多子系统之间相互竞争的目标。先前的现场研究表明,子系统设计人员可能会使用有偏见的信息传递作为协商策略,从而由于局部优化行为而达到次优的系统级结果。消除对局部优化的关注的一种策略是促进系统级优化的激励结构。本文提出了一种基于多学科优化(MDO)技术的新子系统激励结构,以提高设计过程对这种有偏见的信息传递策略的鲁棒性。一个多目标问题测试套件的不同效用函数的仿真结果量化了系统对有偏见的信息传递策略的鲁棒性。结果表明,采用这种新的加权结构激励子系统可以减少由于信息传递有偏差而导致的错误。

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