scholarly journals PROBLEMS AND FEATURES OF INTELLIGENT DESIGN OF ROOFS/INTELEKTINIO PROJEKTAVIMO PROBLEMOS IR YPATYBĖS RENOVUOJANT STOGUS

1999 ◽  
Vol 5 (4) ◽  
pp. 265-271
Author(s):  
Daiva Makutėnienė ◽  
Lionginas Čiupaila

Intelligent computer-aided design is impossible without the object of design, component parts, participants of the process and analysis of their relations. The control of these relations was performed without computer. Therefore the processes flew without optimal criteria and technics of optimisation. Renovation of a building will depend on three most important concerned groups involved in the process: customers; designing organisations; building and constructing organisations. The entire process of design—from the idea to complete documentation—must be planned and executed with consideration of goals aspired by the interested parties—customers, designers and construction organisations. This process should realise the cycles of design, co-ordination and expertise of final solution. There are one-stage or two-stage design processes in traditional design process (Fig 2). Development of the project by one or two stages is pointed out by the design task of customer and depends upon technical complexity of the object. Complex objects are designed by a two-stage design process. One-stage design (Fig 3) is used, when the object is not complicated and includes many typical constructions. A great deal of graphics, economical data, accepted standards, rules are used in today's design process. While designing a building, the information flow could be controlled with the help of intelligent systems of design. Some information systems can be applied to different parts of a building. Fig 4 represents the structure of information system for roof design. Any part of information system is a complex object. Parts of information system for roof design are related to graphical-geometrical information. Relations between elements of roof intelligent design system are represented in Fig 5. Structure of some elements of information system (Fig 6) and internal relations are complex and manifold, so managing is possible only by intelligent design system. During the process of intelligent system design the same participants take part as in the traditional process: customers, design organisations, building and constructing organisations, but the relations between these participants are of a new quality. Fig 7 represents the relations between traditional participants and the flow of up-to-date information. The process of intelligent design differs from the traditional one by the following features: the intelligent system includes features of traditional design (design, expertise, coordination, renewing), but it is the system of new technology and quality due to the possibility of real optimisation; the process of renovation of dwelling houses roofs has an important feature, namely, a possibility for the unification of the design process. Rational composition of unificated projects can and must be supported by computer aided graphical and non-graphical databases with possibilities of the intelligent design; relations between data groups of a design object (Fig 7—A, B, C and D) can be managed by computer intelligent software. The intelligent process has some problems: the main stages of the roof design are related to considerations and financial possibilities of customers, aesthetical and architectural evaluation. These stages are related by three main interested groups (customers, design organisations, building and constructing organisations) and other institutions of the government. They can be optimised only by computer at intelligent level; the problem of information flowing, because methods of presentation of data must be co-ordinated with customers, design organisations, building and constructing organisations. Control techniques must be provided for its managing; data and knowledge bases must be continuously formed and renewed until using “Internet” and other modern methods for information transmission.

2013 ◽  
Vol 378 ◽  
pp. 552-557
Author(s):  
Jeng Jong Lin

An intelligent design system, which can generate a variety of patterns for a designer to evaluate each of them and scoring them by preference, is of great value to be created and developed by using genetic algorithm in this study. Through the assistance of the GA-based intelligent system, a fabric designer can proceed with the design process in a more flexible and effective way to obtain innovative weave structure. The problem of running out of creative inspiration for a designer can thus be eliminated.


2018 ◽  
Vol 158 ◽  
pp. 01021
Author(s):  
Tamara Kostyuchenko ◽  
Nelya Indygasheva

Control moment gyroscope or two-axis balking gyroscope is used in spacecraft orientation systems. The control moment gyroscope is a complex electromechanical system with different parameters which connect by means of specific instant and inverse dependences. This fact could complicate the design process as of getting the optimal parameters the search of construction variations becomes harder. To simplify the control moment gyroscope designing process and increase its efficiency the computer-aided design system could be as highly useful. The computer-aided design system which is used in the present research and described in the article consists of five main subsystems. They cover the main stages of control moment gyroscope designing.


2011 ◽  
Vol 130-134 ◽  
pp. 3416-3420
Author(s):  
Lv Yuan Wang ◽  
Huan Li ◽  
Jun Huang ◽  
Yue Lan Xu ◽  
Ying Gao

Lots of information including vary raw materials components and mechanical properties should be involved in the electrode design process. It was very difficult to manage them. In this article, an effective solution by simulating the artificial design process of electrode was presented in the design of intelligent electrode design system (IEDS). That successfully realized series functions such as electrode formula management, electrode intelligent design. Shared file, named pipe, and file mapping were proposed to solve the communication problem between design module and prediction module which were developed by using different languages and platforms.


2012 ◽  
Vol 235 ◽  
pp. 288-293
Author(s):  
Fei Yu ◽  
Tian Yu Feng

The TLCADS(The Computer Aided Design Intelligent Design System of Threshing parts of Combined Harvester)which is developed by adopting the principle of expert system, parameterization design method and database technology, can greatly improve the efficiency and quality of the design of Threshing parts of Combined Harvester with the functions of general parameterization design,systematic of components,engineering drawing and computer analysis.


Author(s):  
Yanwei Zhao ◽  
Wanliang Wang ◽  
Yingli Zhang ◽  
Zhengchu Wang

The divergent tree method was adopted in this paper, and an illustrative example of tool storage design in the machining center was given to describe the divergent thinking in the conceptual design process of mechanical products. Firstly general divergent tree method was applied to get various schemes of storage, then the primary schemes were achieved by using the measure of known characteristics, finally the excellent degree appraisal approach was applied to find out the optimum one. In addition, an intelligent computer aided conceptual design system of tool storage based on the divergent tree method and excellent degree appraisal approach was demonstrated in this paper.


2014 ◽  
Vol 501-504 ◽  
pp. 2554-2557
Author(s):  
Li Yi Zhang ◽  
Qun Wei ◽  
Wei Bo Yin ◽  
Xing Guang Liu

The classification of the main structure is introduced in Hydraulic flat steel gates intelligent design system, shape parameters, attributes parameters and constraints forms of basic components are established, and method of collection, storage and extraction of associated information in related components is invented. Grid line is selected as the skeleton-driven to make all components associated. The methods above-mentioned are used to construct the intelligent design system of Hydraulic flat steel gates, which is built on the Autodesk Inventor, and in which the computation, modeling, automatic detailing are combined, and which has broad application prospects after successful application of certain steel gate design project.


Author(s):  
Hauhua Lee ◽  
Sanjay Goel ◽  
Siu S. Tong ◽  
Brent Gregory ◽  
Scott Hunter

This paper describes our approach and experiences in constructing the Turbine Auto–Designer (TAD), an automated concurrent design system for aircraft engine turbines. In TAD, the design process is modeled based on the computer programs of a representative design system. It integrates three domains of the manual design process: preliminary design, detailed aerodynamic design, and detailed mechanical design. The manual design of turbines is an iterative redesign process involving the use of many sets of Computer Aided–Engineering (CAE) programs. The entire design process is modeled at four levels: analysis, automation, optimization, and concurrency. TAD is implemented with Engineous, a generic software shell for engineering design. Parts of TAD are already in use in day–to–day design practice for low–pressure turbines. In many cases of preliminary design, TAD can obtain better results quicker than the optimum obtained manually. Results also show that, for detailed aerodynamic analysis, the system can reduce the cycle time from days to hours.


2012 ◽  
Vol 271-272 ◽  
pp. 847-851
Author(s):  
Wen Zhi She ◽  
Li Zhi Gu ◽  
Zong Zhi Zhou

The computer-aided design is applied more and more widely in the engineering field. In order to enhance the design efficiency of the V-belt transmission, combined the computer-aided design with the optimization design. With the analysis on the characteristics of chart data in the traditional design, put forward a programmed method for the data, lists, charts in the ordinary V-belt transmission design, by using the linear weighted sum method with VB as a programming language, to establish the optimal mathematical model. A sample has been carried out and results have shown that the programmed method may simplify the design process and reach the purpose of improving the design efficiency and accuracy.


2010 ◽  
Vol 24 (10) ◽  
pp. 1963-1967 ◽  
Author(s):  
Hong Seok Lim ◽  
Yong Woo Kim ◽  
Man Hoi Koo ◽  
Hak In Gimm ◽  
Hong Hee Yoo

2014 ◽  
Vol 945-949 ◽  
pp. 446-449
Author(s):  
Ai Min Li ◽  
Fa Rong Kou ◽  
Qin Yu Niu ◽  
Hai Bo Tian

Product design and development becomes increasingly knowledge-intensive and collaborative. It is very difficult to meet currently imperious needs for the traditional design mode, knowledge managing methods and the geometry-centric application tool. Designers require more generic knowledge of design and design process and more intelligent system. It establishes the FBPSS framework system supporting modeling of product function, behavior, principle, state and structure. Based on this FBPSS framework system, ontology-based product design system is developed through design knowledge repositories.


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