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fmadiot committed Sep 23, 2024
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Expand Up @@ -477,7 +477,7 @@ <h4>Gabriel Moreno (Brazilian Center for Research in Energy and Materials)</h4>
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<h3>Enhancing Industrial Equipment Reengineering with Model-Based Systems Engineering</h3>
<span class="descr">WEDNESDAY 20th of NOVEMBER | 3:35 pm UTC+1&nbsp;&nbsp;&nbsp;<button class="tag">digital thread</button>&nbsp;<button class="tag">semiconductor equipment</button></span>
<span class="descr">WEDNESDAY 20th of NOVEMBER | 3:35 pm UTC+1&nbsp;&nbsp;&nbsp;<button class="tag">re-engineering</button>&nbsp;<button class="tag">industrial manufacturing</button></span>
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<p>In the dynamic environment of industrial manufacturing, the continuous improvement of machinery is essential to maintain competitiveness and meet evolving quality standards. This presentation explores the reengineering of a quality test machine for bottles using Model-Based Systems Engineering (MBSE) using Capella.</p>
<p>At the beginning the quality test machine is introduced, detailing its current functionalities and the challenges necessitating its improvement. Using Capella, the existing system is modeled with the aim to create a comprehensive representation of the machine's current state. This model serves as the foundation for identifying improvement opportunities and defining the system's constraints and potential areas for optimization. Subsequently, a model with the proposed enhancements is developed and presented.</p>
Expand Down Expand Up @@ -523,7 +523,7 @@ <h4>Thomas Nägele (TNO-ESI)</h4>
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<h3>Realizing the Full Value of MBSE Models through Digital Thread Implementation at Applied Materials</h3>
<span class="descr">WEDNESDAY 20th of NOVEMBER | 5:15 pm UTC+1&nbsp;&nbsp;&nbsp;<button class="tag">re-engineering</button>&nbsp;<button class="tag">industrial manufacturing</button></span>
<span class="descr">WEDNESDAY 20th of NOVEMBER | 5:15 pm UTC+1&nbsp;&nbsp;&nbsp;<button class="tag">digital thread</button>&nbsp;<button class="tag">semiconductor equipment</button></span>
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<p>Model-Based Systems Engineering (MBSE) has redefined the paradigms of systems engineering, and Capella stands out as a quintessential MBSE tool. One of the emergent challenges in this space is the seamless translation of information from MBSE models into actionable data for downstream applications. Historically, the product design and validation processes have been reliant on cross-functional engineering teams collaborating with standalone documentations/systems thus making it slower and ineffective to do design iteration.</p>
<p>Using a case-study from the semiconductor equipment industry, our presentation describes a method of leveraging Capella MBSE models to streamline the Product Development process by establishing end to end traceability from Requirements to MBSE Models to CAD and CAE digital artifacts. Utilizing Teamcenter, Pycapellambse, Jupyter Notebook, we automated the extraction of vital MBSE model objects and its design parameters, essential for generating the relevant input for CAE analysis. Also seamlessly integrating Capella (SMW) into Teamcenter where Requirements and CAD artifacts are managed thus enabling the creation of Digital Thread. Having this type of tight connections between various digital artifacts from upstream to downstream in an enterprise level PLM system provides the much-needed data accessibility, fidelity and helps Engineers do quick Impact Analysis when there is a request for change in requirements or design.</p>
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