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GENETIC ALGORITHM-BASED SEARCHING METHOD FOR PIPING PATH ROUTING IN COAL-FIRED BOILER BUILDINGS

机译:基于燃煤锅炉建筑物管道路径路径的基于遗传算法的搜索方法

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Power plant design using digital engineering based on 3-D computer-aided design has become a mainstream technology because of possessing higher speed and improvement in design accuracy. To take a coal-fired boiler building as an example, it has many complex structures with several million parts including the boiler itself, large fans, steel structures, and piping in varying sizes. Therefore, it is not easy to maintain integrity of the whole design throughout all the many engineering processes.We have developed a smart design system for coal-fired boiler buildings to solve the integrity problem. This system is capable of creating and allocating 3-D models automatically in accordance with various technical specifications and engineering rules.Lately, however, there has been a growing demand for more effectiveness of the developed system. We have begun to look into the feasibility of further improvements of the system function. The first point to note, when considering effectiveness, is the piping path routing process in the coal-fired boiler building. The quantity of piping is large, and it has a considerable impact on performance of the whole plant because hot steam is fed into the steam turbine and cold steam is taken from it through the piping. A considerable number of studies have been made on automatic searching methods of piping path routing. Although, the decision of piping path routing by using the Dynamic Programming method is most commonly, a previously decided routing becomes an interference object because of the single searching method. Therefore, basically, the later the order of the routing becomes, the longer the length of the routing becomes. To overcome this problem, in this paper we have proposed a new searching method based on the Genetic Algorithm (GA). The GA is a multipoint searching algorithm based on the mechanics of natural selection and natural genetics. Virtual prohibited cells are introduced into the proposed search method as a new idea. The virtual prohibited cells are located in a search space. The different paths are generated by avoiding the virtual prohibited cells while searching for the piping path routing. The optimum locations of the prohibited cells which are expressed in a genotype are obtained by using the GA in order to get a lot of paths independent of the order of the routing.The proposed method was evaluated using a simple searching problem. The results showed that many effective paths are generated by making the virtual prohibited cells.
机译:基于3-D计算机辅助设计的基于3-D计算机辅助设计的电厂设计已成为主流技术,因为具有更高的设计精度的速度和提高。为了拍摄燃煤锅炉建筑,作为一个例子,它具有许多复杂的结构,其中包括锅炉本身,大型风扇,钢结构和管道不同尺寸的零件。因此,在所有许多工程过程中保持整体设计的完整性并不容易。我们开发了一种用于燃煤锅炉建筑的智能设计系统,以解决完整性问题。该系统能够根据各种技术规范和工程规则自动创建和分配3-D型号。然而,对于发达系统的更有效性,这一需求日益增长。我们已经开始展望进一步改进系统功能的可行性。在考虑有效性时,首次注意到的第一点是燃煤锅炉建筑中的管道路径路径过程。管道的数量很大,并且对整个工厂的性能具有相当大的影响,因为热蒸汽进入蒸汽轮机,并且冷蒸汽通过管道取出。对管道路径路径的自动搜索方法进行了相当多的研究。虽然,通过使用动态编程方法的管道路径路由的决定是最常见的,因此由于单个搜索方法,先前定义的路由成为干扰对象。因此,基本上,稍后的路由顺序变成了路由的长度越长。为了克服这个问题,在本文中,我们提出了一种基于遗传算法(GA)的新搜索方法。 Ga是基于自然选择和自然遗传学的机制的多点搜索算法。将虚拟禁止的单元格引入所提出的搜索方法作为新想法。虚拟禁止的单元格位于搜索空间中。通过在搜索管道路径路由时避免虚拟禁止的单元来生成不同的路径。通过使用GA获得以基因型表达的禁止细胞的最佳位置,以便获得与路由顺序无关的大量路径。使用简单的搜索问题评估所提出的方法。结果表明,通过制作虚拟禁止的细胞来产生许多有效的路径。

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