Knowledge Intensive CAD: Proceedings of the IFIP TC5 WG5.2 by Yusaku Shibata (auth.), Martti Mäntylä, Susan Finger, Tetsuo

By Yusaku Shibata (auth.), Martti Mäntylä, Susan Finger, Tetsuo Tomiyama (eds.)

Computer Aided layout (CAD) expertise performs a key position in cutting-edge complex production atmosphere. to lessen the time to industry, in achieving 0 disorder caliber the 1st time, and use on hand construction and logistics assets successfully, product and layout method wisdom protecting the full product life-cycle has to be used all through product layout. as soon as generated, this extensive layout wisdom could be made on hand to later life-cycle actions. as a result of the expanding quandary approximately worldwide environmental matters and speedily altering competitively priced scenario world wide, layout needs to show excessive functionality not just in caliber and productiveness, but additionally in life-cycle concerns, together with prolonged producer's legal responsibility. those pursuits require designers and engineers to take advantage of different types of layout wisdom intensively in the course of product layout and to generate layout info to be used in later levels of the product life-cycle resembling creation, distribution, operation, upkeep, reclamation, and recycling. for that reason, destiny CAD platforms needs to contain product and layout approach wisdom, which aren't explicitly handled within the present structures, of their layout instruments and layout item models.

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Extra info for Knowledge Intensive CAD: Proceedings of the IFIP TC5 WG5.2 International Conference on Knowledge Intensive CAD, 16–18 September 1996, Pittsburgh, PA, USA

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If there is no conflict among the received results, Gear Box Assembly resumes its work and revises some parameters of the top-case and low-case, such as the diameters of the bolt holes. The object data have to be loaded from the local or distributed database before the verification, and stored into these databases after that verification and modification. And finally, Gear Box Assembly sends an INFORM message to Project Manager with: content *OK*. 4. Afterward, when an agent will send a REQUEST message, firstly it verifies whether it sent a same REQUEST before and had obtained a result.

Computational Tool: This agent is responsible for engineering calculations. It may be a Finite Element Analysis tool, Optimizer or some other engineering computation tools. Currently it is a simulated Optimizer for gear box optimization. Database of Engineering Standards: A database of national engineering standards is imperative in the domain of mechanical CAD. This agent is used for searching required standard dimensions in the database of engineering standards. Following four Design agents are developed specially for an experimental design example, the Gear Box Design.

2. Figure 4. Shows examples of possible message paths among the main autonomous agents of DIDE in the local network. Figure 4 Possible message paths among the main DIDE agents. 4 CONCLUSION AND DISCUSSION The objective of our research is to develop a distributed intelligent design environment for supporting cooperation among the existing engineering tools and human specialists. The techniques of Distributed Artificial Intelligence provide a natural model for such applications. In this paper, we discussed a distributed architecture for an intelligent design environment based upon asynchronous cognitive agents combining a number of mechanisms already found in the literature.

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