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Finding the Shortest Paths in Izmir Map by Using Slime Molds Images

机译:通过使用粘液模具图像在Izmir Map中找到最短路径

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Biologically -inspired computing led to the development of a multi-disciplinary approach and implemented to computing technics. It shows us is that slime mold computes the optimal distance between a food source and its body and then adapts its route. What makes slime mold special is that the computing algorithm changes when exposed to various environmental conditions like repellent or attractive stimuli. In addition, slime mold avoids from the repulsive fields and adopts its route accordingly. The transportation networks can be analyzed by using the optimization capability of slime molds, new transportation lines can be detected, and the efficiency of the existing lines can be analyzed. In this paper, the potential exploitation of the approach for Izmir motorway planning is examined. Slime mold is inoculated on scaled Izmir city map, geographical conditions are represented as attractive and repulsive and the minimum distances are calculated.
机译:生物学上的透明计算导致了多学科方法的开发,并实施到计算技术。它显示我们的是,粘液模具计算食物源及其体之间的最佳距离,然后适应其路线。什么使粘液模具特性是计算算法在暴露于避难剂或吸引力的刺激等环境条件下发生变化。此外,粘液模具避免了排斥田,并相应地采用其路线。通过使用粘液模具的优化能力,可以分析运输网络,可以检测到新的运输线,并且可以分析现有线路的效率。在本文中,检查了对IZMIR高速公路规划方法的潜在利用。粘液模具接种在缩放的IZMIR城市地图上,地理条件被表示为有吸引力和排斥,并且计算最小距离。

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