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首页> 外文期刊>Structural and multidisciplinary optimization >Optimal design of a parallel beam system with elastic supports to minimize flexural response to harmonic loading using a combined optimization algorithm
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Optimal design of a parallel beam system with elastic supports to minimize flexural response to harmonic loading using a combined optimization algorithm

机译:具有弹性支撑件的平行光束系统的最优设计,以最大限度地利用组合优化算法最小化对谐波载荷的弯曲响应

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摘要

Mechanical systems subject to vibration are prevalent across many industries. Although potentially different in application, they sometimes share the need to minimize aspects of flexural deformation given harmonic loading and the need to consider a variety of both input and response-based constraints in the process. Practical design efforts also sometimes include the need for consideration of the optimal response of a platform-style product, including responses of multiple design variants supported by a common base structure. Harmonic problems can be especially challenging to optimize due to the likelihood that the response will be multi-modal; influenced by system natural frequencies throughout the design space. Further, analysis of these systems often involves large and complex computer models which require significant resources to execute. A harmonically loaded, platform-style parallel beam system with multiple family variants is used as an example in this work to demonstrate a proposed method for identifying an optimum in a constrained, multi-modal response environment with consideration for Expensive Black Box Functions (EBBF). The presented method proposes a combined approach where the high modality, EBBF's domain is first surveyed for potential areas of optimal response using a method of Steepest Feasible Descent (SFD), followed by a local search in the optimal region using a more efficient direct search method. The method of SFD is a modification of the classical method of Steepest Descent, made useful for constrained models by a penalty system including both deterministic and programmatic methods. A sensitivity-based search vector method also helps to manage situations where significant difference in magnitude exists among the design variables. Evidentiary support for these key program elements is provided using standardized test functions. The effectiveness of the method is demonstrated by seeking a minimum flexural response for a parallel beam system subj
机译:在许多行业的振动受到振动的影响。虽然潜在的应用程序中可能不同,但它们有时共享需要最小化弯曲变形的方面,给出谐波加载,并且需要考虑该过程中基于输入和响应的基于约束的需要。实用的设计工作也有时包括考虑平台式产品的最佳响应,包括通过共同的基础结构支持的多种设计变体的反应。由于响应是多模态的可能性,谐波问题可能特别具有挑战性;受到整个设计空间系统自然频率的影响。此外,对这些系统的分析通常涉及大型和复杂的计算机模型,这需要大量资源执行。具有多个家庭变体的谐波加载的平台式并行光束系统用作本工作中的示例,以演示一个提出的方法,用于考虑昂贵的黑盒功能(EBBF)的受约束的多模态响应环境中的最佳方法。呈现的方法提出了一种组合方法,其中高模态,EBBF域首次用于使用陡峭可行的下降(SFD)的方法进行最佳响应的潜在区域,然后使用更有效的直接搜索方法在最佳区域中进行本地搜索。 SFD的方法是陡峭血压的经典方法的修改,使包括惩罚系统的受约束模型,包括确定性和编程方法。基于灵敏度的搜索矢量方法还有助于管理设计变量之间存在显着差异的情况。使用标准化的测试功能提供对这些关键程序元素的证据支持。通过寻求平行光束系统SUBJ的最小弯曲响应来证明该方法的有效性

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