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Optimization Support Tools Product List

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Multi-Objective Robust Design Optimization Support Tool 'modeFRONTIER'

Supports optimization of multi-objective functions! Commercial robust optimization tool.

"modeFRONTIER" is a general-purpose design support tool developed by the Italian optimization technology specialist ESTECO s.r.l. It supports multi-objective optimization and has continued to incorporate our methods, algorithms, and result processing functions since its launch in 2001, primarily in collaboration with various universities. In addition to merely outputting optimal solutions, it has newly introduced the CAP function to assist designers in contemplating why a solution is optimal, evolving further as a decision support tool. 【Features】 ■ Equipped with advanced optimization methods, experimental design methods, and response surface approximation methods ■ Supports multi-objective robust design optimization and multi-objective tolerance design optimization ■ Includes a variety of post-processing functions such as statistical analysis, multivariate analysis, and CAP ■ Interface compatible with Japanese (Windows) and English environments ■ Standardly equipped with dedicated nodes for direct access to various tools (such as CATIA V5, ANSYS Workbench, MATLAB, LabVIEW, etc.) *For more details, please download the PDF or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • Contract Analysis

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Case Studies of Optimization Support Tool Utilization [Reduction of Development Man-Hours and Cost Savings]

By utilizing optimization support tools, development man-hours can be reduced! Costs can be cut!

We are currently offering a collection of case studies utilizing the general-purpose optimization support tool "modeFRONTIER"! 【Contents of the Case Study Collection】 ■ Mitsuba Corporation Utilized optimization support tools to enhance the efficiency of magnetic field analysis ■ Mitsubishi Chemical Corporation Utilized optimization support tools to address technical challenges in chemical development ■ Honda R&D Co., Ltd. Utilized optimization support tools in the development and design of motorcycles ■ Denso Corporation Solved thermal issues for engine ECUs *For more details, please request the materials or view the PDF data available for download.

  • Company:IDAJ
  • Price:Other
  • simulator
  • Other analyses
  • Analysis Services

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[Optimization Case] Streamlining Circuit Design

What is the method to increase the efficiency of circuit design by 10 times?! Solved with modeFRONTIER!

The adjustment of inverter circuit parameters used in various products greatly affects the performance of the products. Therefore, we propose the multi-purpose robust design optimization support tool "modeFRONTIER." This tool automatically searches for resistance values and voltages that minimize losses and strain rates, enabling the efficiency of circuit design. 【Case Study】 ■ Issue: Efficiency of circuit design ■ Proposed Product: Multi-purpose robust design optimization support tool "modeFRONTIER" ■ Benefits: Automatic search for resistance values and voltages that minimize losses and strain rates *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses

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[Case Study] Optimization of Automobile Suspension

We will introduce a case that achieved both improved ride comfort and driving performance with optimization support tools!

We would like to introduce a case study of optimizing automotive suspension using our "modeFRONTIER." Automotive suspension needs to balance conflicting conditions such as improving ride comfort and driving performance. The way this balance is achieved can be considered the tuning of the vehicle. "modeFRONTIER" supports the optimization of these conflicting conditions and assists in design based on the designer's values, such as tuning. 【Case Study】 ■ Software Used: modeFRONTIER, ADAMS ■ Challenge: Improving ride comfort and driving performance ■ Result: Addressing the optimization of conflicting conditions *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Application of Optimization Technology to Race Cars

Optimize race car suspension components! Meeting multiple design requirements!

This document introduces a case study on applying modeFRONTIER to MSC.ADAMS for various optimizations related to race car suspension. In the suspension system, which is governed by various factors such as load on the front and rear wheels, moments during cornering, and stress during acceleration, it is necessary to simultaneously satisfy multiple design requirements. The various optimization algorithms, response surface methods, and statistical processing functions offered by modeFRONTIER are recognized as effective even in the highly demanding world of racing. 【Case Study】 ■ Software Used: modeFRONTIER, MSC.ADAMS ■ Challenge: Simultaneously satisfy multiple design requirements ■ Effect: Various optimization algorithms, response surface methods, and statistical processing functions are effective *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Optimization of Thermal Analysis for Brembo Disc Brakes

Introducing a case study that achieved multi-purpose function optimization of disc brakes!

We would like to introduce a case study from Brembo using our "modeFRONTIER" for improving the performance of disc brakes. The goal was to minimize the corning angle caused by heat generation and also to minimize the deformation of the disc brake itself through multi-objective function optimization. For shape modification and mesh generation, we used CATIA V5, Patran, and ICEM, and established an automated calculation execution environment using LSF for parallel computing. In this problem, "modeFRONTIER" successfully explored the Pareto optimal solutions using nine design parameters, and it has been recognized as a very significant tool in design development. 【Case Study】 ■ Software Used: modeFRONTIER, MSC.Nastran, ICEM ■ Challenge: Multi-objective function optimization ■ Result: Automatic exploration of Pareto optimal solutions using nine design parameters *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Analysis Case] Exploration of Optimal Conditions for CVD Etching Process

Exploring optimal conditions! Introducing examples of utilizing multi-dimensional display charts!

We will introduce a case study of exploring optimal conditions for the etching process, coupled with the detailed chemical reaction analysis program CHEMKIN. In the problem setup, we varied the raw gas supply amount (SCCM) and oxygen concentration, aiming to find the operating point where the outlet C2F6 concentration and CF4 concentration are minimized, while maximizing the etching rate (minimizing the film formation rate). As a result of the calculations, it became clear that there is a trade-off relationship between C2F6 concentration and etching rate. Subsequently, we successfully extracted preferred solutions from the multidimensional display chart of "modeFRONTIER." [Case Study] - Software Used: modeFRONTIER, CHEMKIN - Objective: Exploration of optimal conditions for the etching process - Effect: Comparison of preferred solutions using multidimensional display charts *For more details, please refer to the external link or feel free to contact us.*

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Optimization of Methane Combustion Conditions

Exploring optimal solutions in trade-off relationships! Introducing examples of utilizing multidimensional display charts.

We will introduce a case study on the optimization of methane combustion conditions, integrated with the detailed chemical reaction analysis program "CHEMKIN." In the problem setup, we varied the equivalence ratio Φ, preheating temperature Tin, and residence time τ to explore the operating points where the concentrations of NO, CO, and CH4 are minimized. Generally, the concentrations of NO and the trade-off relationship between CO and CH4 related to combustion efficiency exhibit strong nonlinearity, requiring comprehensive judgment to select the optimal solution. Even in such complex optimization calculations, we provide accurate consulting through the exploration capabilities of "modeFRONTIER" and our technical support. 【Case Study】 ■ Software Used: modeFRONTIER, CHEMKIN ■ Objective: Selection of the optimal solution considering the trade-off relationship between NO concentration and the concentrations of CO and CH4 related to combustion efficiency. ■ Effect: Accurate consulting provided through multidimensional display charts. *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Optimization of Hydrocarbon Reforming Reaction Process

Introducing an optimization case that performed comprehensive result evaluation with rich post-processing features!

We will introduce a case where our "modeFRONTIER" was applied to optimize the hydrocarbon reforming reaction process. By coupling with the detailed chemical reaction analysis program CHEMKIN, we varied the pressure P, preheating temperature Tin, amount of oxygen, and amount of water vapor to explore the operating point where the H2 concentration is maximized and the CH4 and CO concentrations are minimized. This problem is highly nonlinear, and as a result of multi-objective optimization, it was found that the set of optimal solutions becomes discrete between CO and CH4. Even in such cases, by utilizing the rich post-processing capabilities of modeFRONTIER, comprehensive result evaluation becomes possible. 【Case Study】 ■ Software Used: modeFRONTIER, CHEMKIN ■ Objective: To explore the operating point where the H2 concentration is maximized and the CH4 and CO concentrations are minimized ■ Result: It was found that the set of optimal solutions becomes discrete between CO and CH4 ■ Effect: Comprehensive result evaluation is possible by using the rich post-processing capabilities *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Streamlining the Evaluation of Pedestrian Protection Performance and Further Technical Advancement

Reduced performance prediction for each model from approximately 40 hours to 10 seconds! Performance evaluation possible without using CAE.

We would like to introduce a case where Honda R&D used our AI consulting services to streamline pedestrian protection performance evaluation and further deepen their technology. The company attempted to explore solutions from both pedestrian protection and rigidity perspectives, but felt there were limitations to this approach. Therefore, they tried a technique that involved machine learning to reproduce various conditions. As a result of the implementation, the performance prediction time, which previously took about 40 hours per model, was reduced to approximately 10 seconds. 【Case Study】 ■ Software Used: modeFRONTIER ■ Objective: To explore solutions from both pedestrian protection and rigidity perspectives ■ Challenge: There may or may not be common design variables in optimization calculations ■ Method: Constructing an agent that can evaluate performance without using CAE ■ Result: Reduced performance prediction time from about 40 hours per model to approximately 10 seconds *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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Logistics Business Optimization Support Tool "RaLC"

[With simulation video] Experience a realistic recreation of current and future manufacturing and logistics sites; please watch the 3D logistics simulation.

RaLC is our original logistics simulation software that enables the preliminary verification of new logistics system establishment/reconstruction plans. It realistically reproduces the current and future logistics sites in a virtual space, making visible the issues and areas for improvement, such as potential bottlenecks and waste.

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Production line business optimization support tool RaAP.

Visualization of investment effects and improvement effects! 3D layout design simulator RaAP.

RaAP (Rapid Analysis and Planning) enables the analysis and visualization of manufacturing site layouts, equipment, personnel, processes, and workflows. By applying strategic methods that utilize 3D simulation technology, it guides customers in optimizing their operations, uncovering improvement points hidden in manufacturing environments such as factories and production lines, in addition to relying on intuition and experience. Improving challenges in manufacturing often incurs "time" and "cost." When attempting to implement the CAP-Do cycle in the field, there are many cases where things do not go smoothly. RaAP is widely used as a tool for improvement verification in production technology and manufacturing departments. By instantly displaying production equipment, worker procedures, and workflows in 3D from the entire manufacturing site on a computer, it makes problems and areas for improvement more visible, promoting integration between management and the field.

  • Other information systems
  • simulator
  • others

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[Case Study] Isuzu Central Research Institute

Automating the analysis of a vast number of cases! Examples of software that contribute to improving operational efficiency.

This time, we would like to introduce a case where our "modeFRONTIER" was effectively utilized to improve the development efficiency of diesel engines. At Isuzu Central Research Institute, "modeFRONTIER" is used to integrate and automate software. By streamlining processes and eliminating unnecessary experiments, they maintain a style where many researchers can conduct a large number of meaningful experiments at the same cost. [Case Study] ■ Software Used: modeFRONTIER ■ Challenge: Analysis of a vast number of cases ■ Result: By integrating and automating the software, unnecessary experiments were eliminated. *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Automatic Fitting of 1D Engine Analysis Tool

Strict fitting completed in a short time! Introducing a case of multi-purpose optimization.

We would like to introduce a case study where we performed automatic fitting of a one-dimensional engine analysis tool using our "modeFRONTIER." We set design variables for parts that could not be accurately read from 2D drawings into 3D shapes, as well as parameters that are difficult to measure in experiments (a total of 14 variables). We established two objective functions: one for minimizing the squared difference between measured and calculated values, and another for expressing variability as standard deviation, with the goal of minimizing both. As a result, a fitting that is difficult to achieve through experience alone was completed in a short time. 【Case Study】 ■ Software Used: modeFRONTIER, GT-POWER ■ Challenge: Fitting between measured and calculated values ■ Method: Executed multi-objective optimization with a total of two objective functions ■ Result: Precise fitting completed in a short time *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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[Case Study] Optimization of Engine RPM Feedback Control Gain

Demonstrating its power in the development of embedded control environments! Introducing examples of the use of optimization support tools.

We would like to introduce a case study where we optimized the feedback control gain for engine RPM using our "modeFRONTIER." By using "modeFRONTIER" to optimize the control parameters within Simulink, we propose a method to design control characteristics at the algorithm design stage. The control target is an automotive engine modeled in GT-POWER. The throttle opening was controlled via PID feedback to maintain the engine speed at a specified value. 【Case Study】 ■ Software Used: modeFRONTIER, GT-POWER, MATLAB/Simulink ■ Objective: Optimize control parameters within Simulink using modeFRONTIER ■ Control Target: Automotive engine modeled in GT-POWER ■ Results - Controlled engine speed to the specified value - Simultaneously optimized parameters in GT-POWER *For more details, please refer to the external link or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator

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