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Underground Metro Interstation Horizontal-Alignment Optimization with an Augmented Rapidly Exploring Random-Tree Connect Algorithm

机译:地铁地铁渠道横向对齐优化,增强迅速探索随机树连接算法

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The design of an underground metro alignment in an urban area is complex and challenging. The metro alignment constantly invades districts with high-density buildings and specially planned districts, which results in large additional expenses due to reconstruction, land requisition, demolition, vibration absorption, and environmental protection. This paper presents a method for the optimization of the horizontal alignment between metro stations to minimize the overall cost. The proposed method includes three steps: (1) low-cost path search, (2) initial horizontal alignment generation, and (3) horizontal alignment optimization. First, an augmented rapidly exploring random-tree connect (RRT-connect) algorithm is developed to search for a low-cost path, in which the buffer zone of the low-cost path defines the corridor constraint of the horizontal alignment optimization. Subsequently, based on the low-cost path, an initial horizontal alignment is generated that determines the number of design variables, i.e., intersection points. Next, within the corridor constraint, the method optimizes the intersection point coordinates and curve radius on the initial horizontal alignment using a differential evolution (DE) algorithm. A real-world metro line was studied to verify the effectiveness of the proposed optimization approach. (c) 2020 American Society of Civil Engineers.
机译:城市地区地下地铁对齐的设计是复杂和具有挑战性的。地铁对准不断侵入地区,具有高密度建筑和专门计划的地区,导致由于重建,征地,拆迁,减振和环保而导致大量费用。本文提出了一种优化地铁站之间水平对准的方法,以最大限度地减少总成本。所提出的方法包括三个步骤:(1)低成本路径搜索,(2)初始水平对准生成,和(3)水平对准优化。首先,开发了一种增强的快速探索随机树连接(RRT-CONNECT)算法以搜索低成本路径,其中低成本路径的缓冲区定义了水平对准优化的走廊约束。随后,基于低成本路径,生成初始水平对准,其确定设计变量的数量,即交叉点。接下来,在走廊约束内,该方法使用差分演进(de)算法在初始水平对齐上优化交叉点坐标和曲线半径。研究了真实世界的地铁线,以验证所提出的优化方法的有效性。 (c)2020年美国土木工程师协会。

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