Altair HyperStudy is a multidisciplinary design exploration and optimization software that empowers engineers and designers to enhance product performance and robustness. By integrating advanced mathematical methods, predictive modeling, and data mining techniques, HyperStudy efficiently navigates the design space of any system model. Its intuitive user interface, combined with seamless integration into Altair's HyperWorks platform, makes design exploration accessible even to non-experts.
Key Features and Functionality:
- Multidisciplinary Optimization: Supports optimization across various domains, including structural, electromagnetics, computational fluid dynamics , thermal, and multi-body dynamics, facilitating comprehensive product development.
- Solver-Neutral Open Environment: Seamlessly integrates with Altair simulation solutions and interfaces with third-party tools, allowing flexible and efficient design studies.
- Data Mining Tools: Offers extensive post-processing and data-mining capabilities to help engineers quickly understand complex design problems and explore large datasets.
- Guided Process: Provides a step-by-step process for study definition and results analysis, enhancing usability with features like reports and archives.
- Automatic Data Generation: Automatically creates intelligent design variants, manages runs, and extracts results, supporting multi-execution solver runs and leveraging Altair's high-performance computing solutions.
- Proven Mathematical Methods: Utilizes design of experiments, response surface modeling, and optimization techniques suitable for large finite element analysis models, with machine learning capabilities from imported or collected data.
Primary Value and Problem Solved:
HyperStudy enables engineers to improve product performance by delivering lighter, safer, and more cost-effective products while reducing development time. It increases productivity and return on investment by guiding multidisciplinary teams to gain insights from simulations and testing data, leading to optimal design solutions. By facilitating smart and efficient design space exploration, HyperStudy reduces trial-and-error iterations, saving time throughout the entire design process.
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AltairProduct Description
Altair HyperStudy is a multidisciplinary design exploration and optimization software that empowers engineers and designers to enhance product performance and robustness. By integrating advanced mathematical methods, predictive modeling, and data mining techniques, HyperStudy efficiently navigates the design space of any system model. Its intuitive user interface, combined with seamless integration into Altair's HyperWorks platform, makes design exploration accessible even to non-experts.
Key Features and Functionality:
- Multidisciplinary Optimization: Supports optimization across various domains, including structural, electromagnetics, computational fluid dynamics , thermal, and multi-body dynamics, facilitating comprehensive product development.
- Solver-Neutral Open Environment: Seamlessly integrates with Altair simulation solutions and interfaces with third-party tools, allowing flexible and efficient design studies.
- Data Mining Tools: Offers extensive post-processing and data-mining capabilities to help engineers quickly understand complex design problems and explore large datasets.
- Guided Process: Provides a step-by-step process for study definition and results analysis, enhancing usability with features like reports and archives.
- Automatic Data Generation: Automatically creates intelligent design variants, manages runs, and extracts results, supporting multi-execution solver runs and leveraging Altair's high-performance computing solutions.
- Proven Mathematical Methods: Utilizes design of experiments, response surface modeling, and optimization techniques suitable for large finite element analysis models, with machine learning capabilities from imported or collected data.
Primary Value and Problem Solved:
HyperStudy enables engineers to improve product performance by delivering lighter, safer, and more cost-effective products while reducing development time. It increases productivity and return on investment by guiding multidisciplinary teams to gain insights from simulations and testing data, leading to optimal design solutions. By facilitating smart and efficient design space exploration, HyperStudy reduces trial-and-error iterations, saving time throughout the entire design process.