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Optimal design and control of stationary electrochemical double-layer capacitors for light railways

机译:轻轨固定电化学双层电容器的优化设计与控制

摘要

The optimisation algorithm has been further investigated to understand the influence of the weight coefficients that affect the solution of all the optimisation problems and it is very often overlooked in the traditional approach. In fact, the choice of weight coefficients leading to the optimum among different optimal solutions also presents a challenge and this specific problem does not give any a priori indications. This challenge has been tackled using both genetic algorithms and particle swarm optimisations, which are the best methods when there are multiple local optima and the number of parameters is large. The results show that, when the optimal set of coefficients are used and the optimal positions and capacitances of EDLCs are selected, the energy savings can be up to 42%.ududThe second problem of the control of the storage has been tackled with a linear state of charge control based on a piece-wise linear characteristic between the current and the voltage deviation from the nominal voltage of the supply at the point of connection of the storage. The simulations show that, regardless of the initial state of charge, the control maintain the state of charge of EDLCs within the prescribed range with no need of using the on-board braking resistor and, hence, dissipating brakingudenergy. The robustness of the control algorithm has been verified by changing the characteristics of the train loading and friction force, with an energy saving between 26 - 27%.
机译:为了进一步研究优化算法,以了解权重系数的影响,该权重系数影响所有优化问题的解决方案,而在传统方法中,它常常被忽略。实际上,在不同的最优解之间选择导致最优的权重系数也提出了挑战,并且这个具体问题没有给出任何先验指示。遗传算法和粒子群优化都解决了这一难题,当存在多个局部最优且参数数量很大时,这是最佳方法。结果表明,当使用最佳系数集并选择EDLC的最佳位置和电容时,节能高达42%。 ud ud解决了存储控制的第二个问题线性充电状态控制,基于电流和电压在存储连接点与电源标称电压之间的分段线性特性之间的分段线性特性。仿真表明,无论初始充电状态如何,控制系统都将EDLC的充电状态保持在规定范围内,而无需使用板载制动电阻器,从而消除了制动能量消耗。通过更改列车负载和摩擦力的特性,已验证了控制算法的鲁棒性,可节省26-27%的能量。

著录项

  • 作者

    Ratniyomchai Tosaphol;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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