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Environmental optimization of urban transportation network, using GIS and genetic algorithm

机译:城市交通网络环境优化,采用GIS和遗传算法

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Today, transportation is one of the most important and effective infrastructures and at the same time is the basis for development and adaptive development, and this has caused the attention of managers and planners to the category of transportation. But with regard to the focus of transport planners on accesses and other dynamic aspects of urban transport, its environmental impact has been severely neglected. The city of Petaling Jaya, as an important and religious-tourist metropolis, requires the use of an efficient way of organizing and managing transport, which is not in conflict with other sectors of development, especially the environment. The present research aims to achieve this goal for the first time in the field of study. In this research, after studying the sources, environmental indicators related to transportation were identified, and five important indicators were determined. Then, these indicators were located locally and using GIS maps of transportation network and utilities of Qom and with Bachelor's opinions are rated. In this way, the map of the Petaling Jaya network is networked, and the indicators in each cell are separately reviewed and rated from 1 to 9 for each indicator. To determine the final status of each cell, the results of the GIS are entered into the MATLAB software, and the results are derived using the genetic algorithm. In order to be able to achieve an optimal environmental situation, we need to make changes in the road network or change the locations that are more sensitive to transport pollution, the results of which are presented in the pictures featured in this paper. The results of this study showed that 40% of the network cells were in an inappropriate state, 35% in the state of appropriate, and 25% in an environmentally sound condition. The results from the optimal map of the transport network show that by transferring some of the uses, especially residential areas to areas around the city and with less pollution, there is a significant change in the status of cellular networks, in which cells with a score of 3 (inappropriate) and points 2 and 1 (relatively appropriate and appropriate) will change. Therefore, transferring parts of the city from the city to the surrounding area is a good way to reduce the impact of pollution.
机译:今天,交通是最重要而有效的基础设施之一,同时是发展和适应性发展的基础,这导致管理人员和规划者对运输类别的关注。但关于交通规划者对城市交通的访问和其他动态方面的重点,其环境影响严重忽视。作为一个重要和宗教旅游大都市的八平静的城市需要利用有效的组织和管理运输方式,这与其他发展部门相冲突,特别是环境。本研究旨在在研究领域的第一次实现这一目标。在本研究中,在研究来源后,确定与运输有关的环境指标,并确定了五种重要指标。然后,这些指标位于本地,并使用QOM的运输网络和公用事业的GIS地图,并获得学士的意见。以这种方式,Petaling Jaya网络的地图是联网的,并且每个小区中的指示器被分别对每个指示器进行审查和评定1到9。要确定每个单元格的最终状态,GIS的结果将输入MATLAB软件,并使用遗传算法导出结果。为了能够实现最佳的环境局面,我们需要在道路网络中进行更改或改变对运输污染更敏感的位置,结果在本文中的特色中呈现。该研究的结果表明,40%的网络细胞处于不恰当的状态,适当状态下35%,在环境声音条件下25%。运输网络的最佳地图结果表明,通过将一些用途转移到城市周围的区域和污染较少,蜂窝网络的地位存在显着变化,其中细胞得分3(不合适)和点2和1(相对适当且适当)会改变。因此,将城市的部分从城市转移到周围地区是减少污染影响的好方法。

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