高速铁路架空物耦合机电成本优化

J. Jiménez-Octavio, E. Pilo, O. Lopez-Garcia, A. Carnicero
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引用次数: 3

摘要

提出了一种高速铁路架空费用的耦合机电优化方法。提出的机电优化方法以最小的成本获得铁路架空,解决了机电耦合问题。提出了一个简单的铁路架空费用模型。该模型成本定义了每公里的全球成本,主要由架空支架和电线的材料成本组成。利用标准遗传算法得到了优化后的铁路高架。描述铁路高架的参数由:(i)高架支架的尺寸和(ii)配置定义;(三)导体的几何位置和(四)导体的类型。考虑的约束条件是:(i)最大允许应力,(ii)结构静力稳定性;(iii)限制物理导体位置的结构规;(iv)导体之间或导体与地之间的最小距离;(v)每根导体的最大允许电流。此外,适应度函数还考虑了等效电系统阻抗的最小化作为二次优化准则。该优化方法已成功应用于马德里-巴塞罗那-法国边境新线C-350高架高速铁路的设计中。优化后的铁路架空总体上有两个层次的改善。首先提高了性能,其次降低了全局成本。将得到的结果与未优化的结构进行了比较,以证明所得到的改进
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Coupled electromechanical cost optimization of high speed railway overheads
This paper presents a coupled electromechanical optimization of the cost of high speed railway overheads. The proposed electromechanical optimization solves the coupled mechanical and electrical problems by obtaining the railway overhead with minimum cost. A simple model cost of the railway overhead is proposed. This model cost defines the global cost per kilometer, which is mainly composed by the costs of material used in the construction of the overhead supports and the electric lines respectively. Using a standard genetic algorithm the optimized railway overhead is obtained. The parameters which describe the railway overhead are defined by: (i) sizing and (ii) configuration of the overhead supports; (iii) geometric location and (iv) type of electric conductors. The constraints considered are: (i) maximum allowable stress, and (ii) structural static stability; (iii) structure gauge to limit the position of physical conductors, (iv) minimum distance between conductors or between conductor and earth and (v) maximum allowable current of each conductor. In addition, the fitness function also considers the minimization of the equivalent electrical system impedance as a secondary optimization criterion. This optimization method has been successfully applied to the design of the high speed railway overhead C-350, used in the new line Madrid-Barcelona-French Border. The optimized railway overhead shows an overall improvement at two levels. Firstly, the performance is enhanced, and secondly, the global cost is reduced. The obtained results are compared with the non-optimized configuration in order to demonstrate the obtained improvements
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