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    • 2. 发明申请
    • METHOD FOR THE OPERATION OF A CAPACITOR
    • 方法操作冷凝器
    • WO2006111532A3
    • 2007-03-22
    • PCT/EP2006061646
    • 2006-04-18
    • SIEMENS AGRECHENBERG KARSTENGAUDENZ MARKUS MATTHIAS
    • RECHENBERG KARSTENGAUDENZ MARKUS MATTHIAS
    • H02J1/00
    • H02J7/345H02J7/0091
    • The invention relates to a method for operating a capacitor, especially as an energy store for track vehicles. The aim of the invention is to allow for optimal utilization of the useful energy storage potential of the capacitor even in unfavorable external boundary conditions, e.g. at an elevated ambient temperature, and/or in case the capacitor already has a certain age. Said aim is achieved by a method for operating a capacitor (20), in which the capacitor (20) is charged maximally to a point where the capacitor reaches a predefined maximum voltage (Umax) in order to store energy while the capacitor (20) is discharged only to a point where a given minimum voltage (Umin) is maintained in order to draw energy, said minimum voltage being a variable quantity which is increased as the inside temperature (Ti) of the capacitor rises.
    • 本发明涉及一种用于作为能量存储为轨道车辆运行的电容器,特别的方法。 为了使电容器即使在不利的外部条件下,仍然可用能量储存潜在的最佳利用,例如高环境温度,和/或当已老化电容器,用于操作的冷凝器的方法(20)根据本发明,提出了在用于存储 电容器(20)的能量进行充电,即最大程度,直到其达到预定的最大电压(力捷),并且被排出到的能量去除的冷凝器(20)的,但只的范围内,预定的最小电压(值Umin)保持,其特征在于 的最小电压是可变的大小,增加电容器的内部温度(T)上升。
    • 8. 发明专利
    • DK1872456T3
    • 2009-01-26
    • DK06743327
    • 2006-04-18
    • SIEMENS AG
    • RECHENBERG KARSTENGAUDENZ MARKUS MATTHIAS
    • H02J1/00
    • The invention relates to a method for operating a capacitor, especially as an energy store for track vehicles. The aim of the invention is to allow for optimal utilization of the useful energy storage potential of the capacitor even in unfavorable external boundary conditions, e.g. at an elevated ambient temperature, and/or in case the capacitor already has a certain age. Said aim is achieved by a method for operating a capacitor (20), in which the capacitor (20) is charged maximally to a point where the capacitor reaches a predefined maximum voltage (Umax) in order to store energy while the capacitor (20) is discharged only to a point where a given minimum voltage (Umin) is maintained in order to draw energy, said minimum voltage being a variable quantity which is increased as the inside temperature (Ti) of the capacitor rises.