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    • 101. 发明授权
    • Vacuum insulated switchgear
    • 真空绝缘开关柜
    • US08008594B2
    • 2011-08-30
    • US12172332
    • 2008-07-14
    • Takuya KurogiKenji TsuchiyaDaisuke Sugai
    • Takuya KurogiKenji TsuchiyaDaisuke Sugai
    • H01H33/66
    • H01H33/666H01H33/6606H02B13/0354
    • A vacuum insulated switchgear has a busbar compartment, in which phase-segregated double-break, three-position vacuum circuit breakers are disposed; and feeder compartments disposed at both sides of the busbar compartment respectively, in each of which phase-segregated double-break, three-position vacuum circuit breakers are disposed. The busbar compartment and the feeder compartments are aligned in a row, and a second-phase insulated busbar is provided to connect one of the fixed contacts of a second-phase breaker in the busbar compartment to a fixed contact of a second-phase breaker in one of the feeder compartments. A first-phase insulated busbar is provided to connect one of the fixed contacts of a first-phase breaker in the busbar compartment to a fixed contact of a first-phase breaker in one of the feeder compartments adjacent to the busbar compartment, and the second-phase insulated busbar and the first-phase insulated busbar are disposed in different positions in height.
    • 真空绝缘开关柜具有母线室,其中设置了相分离的双断路三位置真空断路器; 以及设置在母线室两侧的进料室,其中分别设置有相分离的双断路三位置真空断路器。 汇流排隔间和进料器隔间排列成一列,第二相绝缘母线设置成将母线室中的第二相断路器的固定触点之一连接到第二相断路器的固定触点 一个饲养室。 提供第一相绝缘母线以将母线室中的第一相断路器的固定触点中的一个连接到与汇流排隔间相邻的一个馈送器隔间中的第一相断路器的固定触点,第二相 相位绝缘母线和第一相绝缘母线设置在不同的高度位置。
    • 108. 发明申请
    • Charged State Estimating Device and Charged State Estimating Method of Secondary Battery
    • 二次电池充电状态估计装置和充电状态估计方法
    • US20090001992A1
    • 2009-01-01
    • US12086696
    • 2006-11-30
    • Kenji Tsuchiya
    • Kenji Tsuchiya
    • G01R31/36
    • G01R31/3675G01R31/361G01R31/3651
    • When a battery current is not larger than a limit current set depending on the battery temperature and is flowing continuously for a predetermined time set depending on the battery temperature or longer, a decision is made that a secondary battery is in stable state. When the secondary battery is in stabilized state, the battery voltage is considered to be equal to the open circuit voltage and SOC estimation is performed based on the open circuit voltage-SOC characteristics. When the product of the internal resistance of the secondary battery and the limit current is made substantially constant (constant voltage) by setting the limit current in association with temperature dependence of the internal resistance, estimation error can be kept within a predetermined range in the stabilized state even if SOC estimation is performed while the battery voltage is assumed as the open circuit voltage. Consequently, SOC can be estimated with high precision within a predetermined error by a simple and reliable system under stabilized state.
    • 当电池电流不大于根据电池温度设定的限制电流并且根据电池温度或更长时间连续流动预定时间时,确定二次电池处于稳定状态。 当二次电池处于稳定状态时,认为电池电压等于开路电压,并且基于开路电压SOC特性进行SOC估计。 当通过设定与内部电阻的温度依赖关系相关联的限制电流使二次电池的内部电阻与极限电流的乘积基本恒定(恒定电压)时,估计误差可以保持在预定范围内 即使假定电池电压为开路电压,执行SOC估计。 因此,通过在稳定状态下的简单可靠的系统,可以在预定误差内以高精度估计SOC。