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    • 2. 发明授权
    • Monitoring device and method for determining at least one characteristic variable for the state of a battery
    • 用于确定电池状态的至少一个特征变量的监控装置和方法
    • US07423408B2
    • 2008-09-09
    • US11060637
    • 2005-02-17
    • Ingo KochHelmut Laig-HoerstebrockEberhard MeissnerUrsula Teutsch
    • Ingo KochHelmut Laig-HoerstebrockEberhard MeissnerUrsula Teutsch
    • H01M10/44
    • G01R31/3651
    • A method for determining at least one characteristic variable for the state of a battery includes: (a) determining the charge throughput of the battery per time step; having, (b) determining a first characteristic figure in order to describe the stratification of the electrolyte concentration in the battery on the basis of a defined initial state for an as-new battery, and of a second characteristic figure in order to describe the stratification of the state of charge in the battery on the basis of a defined initial value for an as-new battery during operation of the battery, in which (c) in each time step, the first characteristic figure and the second characteristic figure are adapted as a function of the charge throughput from the instantaneous state of the battery, and at least one characteristic variable is determined from the first and the second characteristic figure.
    • 一种用于确定电池状态的至少一个特征变量的方法包括:(a)确定每个时间步长的电池的充电量; 具有:(b)确定第一特征图,以便基于用于新电池的确定的初始状态和第二特征图来描述电池中的电解质浓度的分层,以便描述分层 (c)在每个时间步骤中,将第一特征图和第二特征图适配为:电池的充电状态,基于在电池操作期间的新电池的确定的初始值, 根据第一和第二特征图确定来自电池的瞬时状态的电荷吞吐量的功能和至少一个特性变量。
    • 3. 发明申请
    • Method for determination of characteristic variable which relates to the state of charge of a storage battery
    • 用于确定与蓄电池的充电状态有关的特性变量的方法
    • US20050062458A1
    • 2005-03-24
    • US10911990
    • 2004-08-05
    • Ingo KochEberhard Meissner
    • Ingo KochEberhard Meissner
    • G01R31/36H02J7/00
    • G01R31/3624G01R31/361G01R31/3679
    • A method for determining a characteristic variable which relates to the state of charge (SOC) of a storage battery includes determining a first state of charge value which relates to a first parameter for a first operating time and for a second operating time and determining a second state of charge value which relates to a second parameter for the first operating time and for the second operating time. The method also includes determining a first state of charge change of the first state of charge value from the first operating time to the second operating time and determining a second state of charge change of the second state of charge value from the first operating time to the second operating time. The method also includes determining a characteristic variable which relates to the state of charge as a function of the first state of charge change and of the second state of charge change.
    • 用于确定与蓄电池的充电状态(SOC)有关的特性变量的方法包括:确定与第一操作时间的第一参数相关的第一充电状态值和第二操作时间,并且确定第二充电状态 充电状态值涉及第一操作时间和第二操作时间的第二参数。 该方法还包括确定第一充电状态值从第一操作时间到第二操作时间的第一充电状态变化,以及将第二充电状态值的第二充电状态从第一操作时间确定为 第二个工作时间。 该方法还包括确定与作为第一充电状态变化和第二充电状态变化的函数关系的充电状态的特性变量。
    • 4. 发明申请
    • VALVE PLUG
    • 阀门插头
    • US20120177962A1
    • 2012-07-12
    • US13496467
    • 2010-07-28
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • H01M10/52H01M2/12
    • H01M2/362H01M2/1229H01M10/06Y02E60/126Y02P70/54
    • The invention relates to a sealing plug arrangement (1, 2) for a battery, wherein the sealing plug arrangement comprises at least one plug part (1) and a plug retainer (2), and the plug retainer (2) has a hollow area (4) for accommodating at least one retaining section of the plug part (1), wherein the plug part (1) is designed to seal off at least one interior (73, 74) of the battery from the environment when the plug part is installed in the hollow area (4) of the plug retainer (2). Proceeding from this, an improved sealing plug arrangement is specified that can be realized at low cost and that is reliable. For this purpose, the plug retainer (2) comprises at least one flow channel (6) on the inside of the plug retainer in the hollow area (4), which flow channel extends at least along the area in which the plug part (1) is retained in the plug retainer (2) when the plug part is installed in the hollow area (4).
    • 本发明涉及一种用于电池的密封塞装置(1,2),其中密封塞装置包括至少一个插塞部分(1)和插头保持器(2),并且插头保持器(2)具有中空区域 (4),用于容纳所述插头部分(1)的至少一个保持部分,其中所述插头部分(1)被设计成当所述插头部分(1)为 安装在插头保持器(2)的中空区域(4)中。 因此,规定了能够以低成本实现的可靠的改进的密封塞装置。 为此目的,塞子保持器(2)包括位于中空区域(4)中的插塞保持器内部的至少一个流动通道(6),该流动通道至少沿着插塞部分(1)的区域延伸 )当插头部件安装在中空区域(4)中时被保持在插头保持器(2)中。
    • 6. 发明授权
    • Valve plug
    • 阀塞
    • US08945742B2
    • 2015-02-03
    • US13496467
    • 2010-07-28
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • H01M2/12H01M2/36H01M10/06
    • H01M2/362H01M2/1229H01M10/06Y02E60/126Y02P70/54
    • The invention relates to a sealing plug arrangement (1, 2) for a battery, wherein the sealing plug arrangement comprises at least one plug part (1) and a plug retainer (2), and the plug retainer (2) has a hollow area (4) for accommodating at least one retaining section of the plug part (1), wherein the plug part (1) is designed to seal off at least one interior (73, 74) of the battery from the environment when the plug part is installed in the hollow area (4) of the plug retainer (2). Proceeding from this, an improved sealing plug arrangement is specified that can be realized at low cost and that is reliable. For this purpose, the plug retainer (2) comprises at least one flow channel (6) on the inside of the plug retainer in the hollow area (4), which flow channel extends at least along the area in which the plug part (1) is retained in the plug retainer (2) when the plug part is installed in the hollow area (4).
    • 本发明涉及一种用于电池的密封塞装置(1,2),其中密封塞装置包括至少一个插塞部分(1)和插头保持器(2),并且插头保持器(2)具有中空区域 (4),用于容纳所述插头部分(1)的至少一个保持部分,其中所述插头部分(1)被设计成当所述插头部分(1)为 安装在插头保持器(2)的中空区域(4)中。 因此,规定了能够以低成本实现的可靠的改进的密封塞装置。 为此目的,塞子保持器(2)包括位于中空区域(4)中的插塞保持器内部的至少一个流动通道(6),该流动通道至少沿着插塞部分(1)的区域延伸 )当插头部件安装在中空区域(4)中时被保持在插头保持器(2)中。
    • 7. 发明授权
    • Device and method for battery state determination
    • 电池状态测定的装置和方法
    • US07561978B2
    • 2009-07-14
    • US11898930
    • 2007-09-17
    • Ingo KochEberhard Meissner
    • Ingo KochEberhard Meissner
    • G06F3/00
    • G01R31/3648
    • A method for determining the state of a battery includes receiving measurements representative of at least one of a battery terminal voltage and a battery terminal current from a first unit and using a second unit to determine at least one characteristic variable for a battery state from at least one of the measured battery terminal voltage and the measured battery current. The method also includes using a microprocessor to statistically assess the at least one characteristic variable for the battery state by performing a statistical process check. The method further includes defining an observation window for the at least one characteristic variable within which the at least one characteristic variable is assumed to be steady-state and identifying an implausible value, which is not caused by the battery, for the at least one characteristic variable if the scatter of the at least one characteristic variable exceeds a defined scatter limit.
    • 一种用于确定电池状态的方法包括从第一单元接收表示电池端子电压和电池端子电流中的至少一个的测量值,并且使用第二单元至少从至少一个电池状态确定至少一个特征变量 测量的电池端子电压之一和测量的电池电流。 该方法还包括使用微处理器通过执行统计过程检查对电池状态的至少一个特性变量进行统计学评估。 所述方法还包括为所述至少一个特性变量定义观测窗口,在所述至少一个特征变量中,所述至少一个特性变量被假定为稳态,并且识别不是由所述电池引起的对于所述至少一个特性的不可信值 如果至少一个特征变量的散射超过限定的分散极限,则变量。