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Design and Optimization of Mechatronic Systems Using a Holistic and Parametric Simulation Approach

机译:使用整体和参数仿真方法的机电系统设计与优化

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In the field of vibration technology mechatronic systems are frequently used for noise and vibration control, condition monitoring or energy harvesting. Numerical simulations and optimizations support the virtual design and development process. Yet, most systems are usually designed as auxiliary systems based on existing host structures and are optimized for only one main purpose (e.g. maximum vibration reduction). Time costly parameter optimizations with complex models in late phases of the development process are still common. In this paper a holistic approach for the design and optimization of mechatronic systems is presented. Efficient and parametric models of the mechanical host structure are integrated within a multi-objective optimization environment for mechatronic systems. This will help to accelerate product development cycles and enables fast parameter studies in combination with detailed and accurate numerical models. The performance of the proposed approach is demonstrated by an exemplary application, where the structural dynamics, vibration control and energy flows are considered within a holistic optimization.
机译:在振动技术领域,机电系统经常用于噪声和振动控制,条件监测或能量收集。数值模拟和优化支持虚拟设计和开发过程。然而,大多数系统通常被设计为基于现有主机结构的辅助系统,并且仅针对一个主要目的进行优化(例如,最大减振)。在开发过程的后期阶段中具有复杂模型的时间昂贵参数优化仍然很常见。本文介绍了机电系统设计和优化的整体方法。机械宿主结构的高效和参数模型集成在机电系统的多目标优化环境中。这将有助于加速产品开发周期,并使快速参数研究与详细和准确的数值模型结合。通过示例性应用证明了所提出的方法的性能,其中结构动态,振动控制和能量流量被认为在整体优化范围内。

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