基于不确定性和成本的电磁执行器质量一致性鲁棒设计方法

J. Deng, Xiaohan Liu, G. Zhai
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引用次数: 0

摘要

为了应对激烈的市场竞争,高性价比、高质量、高可靠性的电磁执行器的设计和优化提出了各种挑战。特别是,制造过程中的不确定性不可避免地导致实际输出特性与理论设计值之间存在较大偏差。目前的研究还没有充分综合考虑成本和不确定性,虽然它们可以提高批量一致性,但给出的设计优化方案可能不是最优的。针对这一问题,提出了一种同时考虑多种不确定性、贡献率波动、制造成本和质量损失的自适应鲁棒公差设计方法。提出了一种定量的认知不确定性模型,可以有效地描述认知不确定性的变化。提出了能真实反映优化过程中制造成本和成本贡献率变化的成本模型和成本贡献率模型。此外,将传统RTD方法、不确定性模型和贡献率模型相结合,提出了一种新的自适应RTD方法,该方法可以在成本增加最小的情况下给出更接近实际的优化解。最后,以某电磁作动器为例,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uncertainty and Cost Based Robust Design Approach for Quality Consistency of Electromagnetic Actuators
In order to cope with the fierce competition in the marketplace, the design and optimization of cost-effective, high-quality and highly reliable electromagnetic actuators presents various challenges. In particular, uncertainties in the manufacturing process inevitably lead to large deviations between the actual output characteristics and the theoretical design values. State-of-art have not considered cost and uncertainty comprehensively enough, and although they can improve batch consistency, the design optimization solution given may not be optimal. To address this issue, this paper proposes an adaptive robust tolerance design (RTD) method that simultaneously considers multiple uncertainties, contribution rate fluctuation, manufacturing cost and quality loss. A quantitative model of epistemic uncertainty is proposed, which can effectively describe the variation of epistemic uncertainty. A cost model and a cost contribution rate model are then proposed, which can realistically reflect the changes in manufacturing cost and cost contribution rate during the optimization process. In addition, a new adaptive RTD method is proposed by combining the traditional RTD method, the uncertainty model and the contribution rate model, which can propose an optimization solution closer to the actual one with minimal cost increase. Finally, the validity of the method is verified using an electromagnetic actuator as an example.
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