6–11 Jun 2021
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America/Toronto timezone
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Robust Design from Systems Physics

7 Jun 2021, 15:45
5m
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Oral (Non-Student) / Orale (non-étudiant(e)) Applied Physics and Instrumentation / Physique appliquée et de l'instrumentation (DAPI / DPAI) M3-8 Applied Physics (DAPI) / Physique appliquée (DPAI)

Speaker

Prof. Greg van Anders (Queen's University)

Description

A crucial challenge in engineering modern, integrated systems is to produce robust designs. However, quantifying the robustness of a design is less straightforward than quantifying the robustness of products. For products, in particular engineering materials, intuitive, plain language terms of strong versus weak and brittle versus ductile take on precise, quantitative meaning in terms of stress–strain relationships. Here, we show that a “systems physics” framing of integrated system design produces stress–strain relationships in design space. From these stress–strain relationships, we find that both the mathematical and intuitive notions of strong versus weak and brittle versus directly characterize the robustness of designs. We use this to show that the relative robustness of designs against changes in problem objectives has a simple graphical representation. This graphical representation, and its underlying stress–strain foundation, provide new metrics that can be applied to classes of designs to assess robustness from feature- to system-level.

Authors

Dr Andrei Klishin (University of Pennsylvania) Alec Kirkley (University of Michigan) Prof. David Singer (University of Michigan) Prof. Greg van Anders (Queen's University)

Presentation materials

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