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Holistic energy simulation and optimization tool for urban rail vehicles

机译:城市轨道车辆整体能源仿真与优化工具

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摘要

A tool for holistic energy simulation and optimization of urban rail vehicles is presented. The modular vehicle model consists of easy to parameterize subsystems. All essential energy consuming subsystems (traction system and auxiliaries) can be considered via models of adequate detail level. Interaction between subsystems is simulated and driven by the operational conditions and internal controllers. Apart from energy signals the tool provides many other time signals, which contain valuable information for the vehicle manufacturer. Different workflow variants of the tool enable a case specific simulation or optimization. Furthermore a superordinated multi-objective mixed-integer optimization (MOMIO) can be applied to optimize the rail vehicle with respect to design parameters and operational conditions. Additionally a Brute-Force-Method (BFM) simulating all possible combinations enables to analyze the sensitivity of objectives (e.g. total energy) with respect to the selected design variables.
机译:提出了一种用于城市轨道车辆整体能源仿真和优化的工具。模块化车辆模型包括易于参数化的子系统。所有必要的能耗子系统(牵引系统和辅助设备)都可以通过足够详细级别的模型来考虑。子系统之间的交互是由操作条件和内部控制器来模拟和驱动的。除能量信号外,该工具还提供许多其他时间信号,其中包含对车辆制造商有价值的信息。该工具的不同工作流程变体可以进行案例特定的仿真或优化。此外,上级多目标混合整数优化(MOMIO)可以应用于优化轨道车辆的设计参数和运行条件。另外,模拟所有可能组合的蛮力方法(BFM)能够分析目标相对于所选设计变量的敏感性(例如总能量)。

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