首页> 外文会议>Conference on Geospatial Information Technology and Applications; 20070525-27; Nanjing(CN) >The approach for shortest paths in fire succor based on component GIS technology
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The approach for shortest paths in fire succor based on component GIS technology

机译:基于组件GIS技术的救火中最短路径的方法

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Fire safety is an important issue for the national economy and people's living. Efficiency and exactness of fire department succor directly relate to safety of peoples' lives and property. Many disadvantages of the traditional fire system have been emerged in practical applications. The preparation of pumpers is guided by wireless communication or wire communication, so its real-time and accurate performances are much poorer. The information about the reported fire, such as the position, disaster and map, et al., for alarm and command was processed by persons, which slows the reaction speed and delays the combat opportunity. In order to solve these disadvantages, it has an important role to construct a modern fire command center based on high technology. The construction of modern fire command center can realize the modernization and automation of fire command and management. It will play a great role in protecting safety of peoples' lives and property. The center can enhance battle ability and can reduce the direct and indirect loss of fire damage at most. With the development of science technology, Geographic Information System (GIS) has becoming a new information industry for hardware production, software development, data collection, space analysis and counseling. With the popularization of computers and the development of GIS, GIS has gained increasing broad applications for its strong functionality. Network analysis is one of the most important functions of GIS, and the most elementary and pivotal issue of network analysis is the calculation of shortest paths. The shortest paths are mostly applied to some emergent systems such as 119 fire alarms. These systems mainly require that the computation time of the optimal path should be 1-3 seconds. And during traveling, the next running path of the vehicles should be calculated in time. So the implement of the shortest paths must have a high efficiency. In this paper, the component GIS technology was applied to collect and record the data information (such as, the situation of this disaster, map and road status et al) of the reported fire firstly. The ant colony optimization was used to calculate the shortest path of fire succor secondly. The optimization results were sent to the pumpers, which can let pumpers choose the shortest paths intelligently and come to fire position with least time. The programming method for shortest paths is proposed in section 3. There are three parts in this section. The elementary framework of the proposed programming method is presented in part one. The systematic framework of GIS component is described in part two. The ant colony optimization employed is presented in part three. In section 4, a simple application instance was presented to demonstrate the proposed programming method. There are three parts in this section. The distributed Web application based on component GIS was described in part one. The optimization results without traffic constraint were presented in part two. The optimization results with traffic constraint were presented in part three. The contributions of this paper can be summarized as follows. (1) It proposed an effective approach for shortest paths in fire succor based on component GIS technology. This proposed approach can achieve the real-time decisions of shortest paths for fire succor. (2) It applied the ant colony optimization to implement the shortest path decision. The traffic information was considered in the shortest path decision using ant colony optimization. The final application instance suggests that the proposed approach is feasible, correct and valid.
机译:消防安全是国民经济和人民生活的重要问题。消防部门救助的效率和准确性直接关系到人民生命财产安全。在实际应用中已经出现了传统消防系统的许多缺点。抽油机的准备工作是通过无线通信或有线通信进行的,因此其实时性和精确性要差得多。有关人员所处理的有关所报告火力的信息,例如警报,命令的位置,灾难和地图等,会降低反应速度并延迟战斗机会。为了解决这些弊端,建设以高科技为基础的现代化消防指挥中心具有重要作用。现代消防指挥中心的建设可以实现消防指挥与管理的现代化和自动化。它将在保护人民生命和财产安全方面发挥重要作用。该中心可以增强战斗能力,并且最多可以减少直接和间接的火伤损失。随着科学技术的发展,地理信息系统(GIS)已成为硬件生产,软件开发,数据收集,空间分析和咨询的新兴信息产业。随着计算机的普及和GIS的发展,GIS以其强大的功能获得了越来越广泛的应用。网络分析是GIS的最重要功能之一,网络分析最基本,最关键的问题是最短路径的计算。最短路径主要应用于某些紧急系统,例如119个火灾报警器。这些系统主要要求最佳路径的计算时间应为1-3秒。并且在行驶过程中,应及时计算车辆的下一条行驶路线。因此,最短路径的实现必须具有很高的效率。本文首先采用组件式GIS技术对所报告火灾的数据信息(如灾情,地图和道路状况等)进行收集和记录。其次,采用蚁群优化算法计算救火的最短路径。优化结果已发送给抽水机,抽水机可以让抽水机智能地选择最短路径,并以最少的时间到达火场。第3节提出了最短路径的编程方法。本节分为三部分。在第一部分中介绍了所提出的编程方法的基本框架。第二部分介绍了GIS组件的系统框架。第三部分介绍了采用的蚁群优化方法。在第4节中,提供了一个简单的应用程序实例来演示所提出的编程方法。本节分为三个部分。第一部分描述了基于组件GIS的分布式Web应用程序。第二部分介绍了无流量约束的优化结果。第三部分介绍了交通约束条件下的优化结果。本文的贡献可归纳如下。 (1)提出了一种基于组件GIS技术的有效的最短路径求救方法。该提议的方法可以实现最短路径的实时求救决策。 (2)应用蚁群算法实现最短路径决策。在使用蚁群优化的最短路径决策中考虑了交通信息。最终的应用实例表明,所提出的方法是可行,正确和有效的。

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