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Bi-Level Integrated System Synthesis (BLISS) for Concurrent and Distributed Processing

机译:并行和分布式处理的双层集成系统综合(BLISS)

摘要

The paper introduces a new version of the Bi-Level Integrated System Synthesis (BLISS) methods intended for optimization of engineering systems conducted by distributed specialty groups working concurrently and using a multiprocessor computing environment. The method decomposes the overall optimization task into subtasks associated with disciplines or subsystems where the local design variables are numerous and a single, system-level optimization whose design variables are relatively few. The subtasks are fully autonomous as to their inner operations and decision making. Their purpose is to eliminate the local design variables and generate a wide spectrum of feasible designs whose behavior is represented by Response Surfaces to be accessed by a system-level optimization. It is shown that, if the problem is convex, the solution of the decomposed problem is the same as that obtained without decomposition. A simplified example of an aircraft design shows the method working as intended. The paper includes a discussion of the method merits and demerits and recommendations for further research.
机译:本文介绍了一种新版本的双层集成系统综合(BLISS)方法,旨在优化由同时工作并使用多处理器计算环境的分布式专业小组进行的工程系统的优化。该方法将整体优化任务分解为与学科或子系统相关的子任务,在这些学科或子系统中,局部设计变量众多,而单个系统级优化的设计变量相对较少。子任务的内部操作和决策是完全自主的。它们的目的是消除局部设计变量,并生成各种可行的设计,其行为由响应面表示,并由系统级优化访问。结果表明,如果问题是凸的,则分解问题的解与未分解时的解相同。飞机设计的简化示例显示了该方法按预期工作。本文讨论了该方法的优缺点,并提出了进一步研究的建议。

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