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An Analytical Solution for Optimal Design of Stationary Lithium-Ion Capacitor Storage Device in Light Electrical Transportation Networks

机译:轻型交通运输网中固定式锂离子电容器存储设备优化设计的解析解决方案

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In the recent technical literature a high interest has been devoted to the employment of energy storage at the aim of improving the performances of electrified light transit systems. Some significant results have been obtained for deriving in a rational way a design procedure for ensuring contemporaneously desirable requirements as the energetic efficiency and the reduction of pantograph voltage droops. In particular, it has been verified that the optimization theory is a powerful and proper candidate for determining in a feasible way the optimal characteristics of the storage devices both in stationary and on-board configuration. This problem was approached by exploiting the classical theory of calculus of variations. In this paper, by starting from this approach, a complete analytical solution to the problem of the optimal design storage is afforded. Without loss of generality, the analytical methodology is presented with respect to the stationary case. The formulation as classical isoperimetric problem is developed, based upon a current source for the electrical traction load. This mild assumption allows to obtain a closed analytical form to the storage current law, which in turns results very useful in performing the sensitivity analysis for choosing the free parameters appearing in the methodological framework. A great advantage of the procedure is related to the fact that the analytical expression of the storage currents could be employed for realizing an optimal open-loop law for controlling in real-time the storage device. In the paper in order to show the potentiality of the analytical methodology, a numerical application with respect to realistic light railway vehicles operation is performed. The various simulations confirm the feasibility and the goodness of the proposed methodology.
机译:在最近的技术文献中,为了改善电气化的光传输系统的性能,人们对储能的使用非常感兴趣。为了以合理的方式得出一种设计程序,以确保同时期满足所需的能量效率和受电弓电压下降的要求,已经获得了一些重要的结果。特别地,已经证实,优化理论是用于以可行的方式确定固定和机载配置中的存储设备的最佳特性的有力且适当的候选者。这个问题是通过利用经典的微积分学来解决的。在本文中,从这种方法出发,提供了针对最佳设计存储问题的完整分析解决方案。在不失一般性的前提下,针对固定情况提出了分析方法。基于用于电牵引负载的电流源,开发了经典等静力问题的公式。这种温和的假设可以使存储电流定律获得封闭的分析形式,这反过来又对执行敏感性分析以选择方法框架中出现的自由参数非常有用。该过程的一个很大的优势与以下事实有关:可以使用存储电流的解析表达式来实现用于实时控制存储设备的最佳开环定律。为了显示分析方法的潜力,本文对实际的轻轨车辆运行进行了数值应用。各种模拟证实了所提出方法的可行性和优越性。

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