TEMPERATURE COMPENSATION FOR MAGNETIC DETERMINATION METHOD FOR THE STATE OF CHARGE OF A BATTERY
    1.
    发明申请
    TEMPERATURE COMPENSATION FOR MAGNETIC DETERMINATION METHOD FOR THE STATE OF CHARGE OF A BATTERY 有权
    用于电池充电状态的磁性测定方法的温度补偿

    公开(公告)号:US20120086457A1

    公开(公告)日:2012-04-12

    申请号:US12900914

    申请日:2010-10-08

    IPC分类号: G01N27/416 G01R33/02

    摘要: An exemplary embodiment includes a method of determining a state of charge of a battery system including determining a temperature dependent magnetic property value of a magnetic material proximate a battery cell; determining a temperature compensated value of said determined magnetic property value; and, using said temperature compensated value as an input to a state of charge (SOC) estimator to determine a state of charge (SOC) of said battery system.

    摘要翻译: 一个示例性实施例包括确定电池系统的充电状态的方法,包括确定靠近电池单元的磁性材料的与温度相关的磁性能值; 确定所述确定的磁特性值的温度补偿值; 并且使用所述温度补偿值作为充电状态(SOC)估计器的输入,以确定所述电池系统的充电状态(SOC)。

    Temperature compensation for magnetic determination method for the state of charge of a battery
    2.
    发明授权
    Temperature compensation for magnetic determination method for the state of charge of a battery 有权
    用于电池充电状态的磁性测定方法的温度补偿

    公开(公告)号:US09176194B2

    公开(公告)日:2015-11-03

    申请号:US12900914

    申请日:2010-10-08

    摘要: An exemplary embodiment includes a method of determining a state of charge of a battery system including determining a temperature dependent magnetic property value of a magnetic material proximate a battery cell; determining a temperature compensated value of said determined magnetic property value; and, using said temperature compensated value as an input to a state of charge (SOC) estimator to determine a state of charge (SOC) of said battery system.

    摘要翻译: 一个示例性实施例包括确定电池系统的充电状态的方法,包括确定靠近电池单元的磁性材料的与温度相关的磁性能值; 确定所述确定的磁特性值的温度补偿值; 并且使用所述温度补偿值作为充电状态(SOC)估计器的输入,以确定所述电池系统的充电状态(SOC)。

    Thermoelectric generators incorporating phase-change materials for waste heat recovery from engine exhaust
    10.
    发明授权
    Thermoelectric generators incorporating phase-change materials for waste heat recovery from engine exhaust 有权
    引入发动机废气余热回收的相变材料的热电发生器

    公开(公告)号:US08646261B2

    公开(公告)日:2014-02-11

    申请号:US12892983

    申请日:2010-09-29

    摘要: Thermoelectric devices, intended for placement in the exhaust of a hydrocarbon fuelled combustion device and particularly suited for use in the exhaust gas stream of an internal combustion engine propelling a vehicle, are described. Exhaust gas passing through the device is in thermal communication with one side of a thermoelectric module while the other side of the thermoelectric module is in thermal communication with a lower temperature environment. The heat extracted from the exhaust gasses is converted to electrical energy by the thermoelectric module. The performance of the generator is enhanced by thermally coupling the hot and cold junctions of the thermoelectric modules to phase-change materials which transform at a temperature compatible with the preferred operating temperatures of the thermoelectric modules. In a second embodiment, a plurality of thermoelectric modules, each with a preferred operating temperature and each with a uniquely-matched phase-change material may be used to compensate for the progressive lowering of the exhaust gas temperature as it traverses the length of the exhaust pipe.

    摘要翻译: 描述了用于放置在烃燃料燃烧装置的排气中并且特别适合用于推动车辆的内燃机的排气流中的热电装置。 通过设备的废气与热电模块的一侧热连通,而热电模块的另一侧与较低温度环境热连通。 从废气中提取的热量由热电模块转换为电能。 通过将热电模块的热连接和冷接头热耦合到在与热电模块的优选操作温度相适应的温度下变换的相变材料来增强发电机的性能。 在第二实施例中,可以使用多个具有优选工作温度并且各自具有唯一匹配的相变材料的热电模块来补偿当排气温度横穿排气长度时逐渐降低排气温度 管。