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    • 21. 发明申请
    • Battery pack and its charging/discharging method
    • 电池组及其充电/放电方法
    • US20050225289A1
    • 2005-10-13
    • US10506295
    • 2003-12-04
    • Takuma IidaNaoyoshi ShibuyaHiroki SaitoHiroki TakeshimaKiyoto Watanabe
    • Takuma IidaNaoyoshi ShibuyaHiroki SaitoHiroki TakeshimaKiyoto Watanabe
    • H01M10/44H01M10/48H02J7/00
    • H02J7/0057H01M10/441H01M10/48H01M10/482
    • Disclosed are a battery package and a method for charging and discharging secondary batteries including nickel hydrogen batteries by refreshing and suppressing inactivity of the batteries. More concretely, battery package (101) comprises a group of batteries having a plurality of connected secondary batteries, each forming a unit battery, a plurality of sensors for detecting a temperature and a voltage, a display device for displaying a condition of the group of batteries, a switch for controlling charge and discharge of the group of batteries, and an operational control circuit (4) for generating a signal based on signals input from the plurality of sensors to make the display device display the condition of the group of batteries and to activate the switch, wherein the battery package (101) is provided with refreshing demand display device (13) for displaying a need to initiate a refreshing charge and discharge, and it uses the method of carrying out the refreshing charge and discharge automatically when a recovery voltage of the secondary batteries does not exceed a predetermined voltage after a lapse of a predetermined time from a moment when the secondary batteries come to a final discharge voltage. This invention can thus carry out the refreshing charge and discharge even for secondary batteries that become inactive after having been left unused for a long time.
    • 公开了一种电池组和通过刷新和抑制电池不活动来对包含镍氢电池的二次电池进行充电和放电的方法。 更具体地说,电池组件101包括一组电池,它们具有多个连接的二次电池,每个电池形成单元电池,多个用于检测温度和电压的传感器,用于显示该组的状态的显示装置 电池,用于控制一组电池的充电和放电的开关,以及用于基于从多个传感器输入的信号产生信号的操作控制电路(4),以使显示装置显示该组电池的状态,以及 以启动开关,其中电池组件(101)设置有刷新需求显示装置(13),用于显示需要启动刷新充电和放电,并且其使用当自动执行刷新充电和放电的方法时 二次电池的恢复电压在经过二次电池之后的预定时间之后不超过预定电压 故事进入最终的放电电压。 因此,即使对长时间不使用的二次电池变得不起作用,本发明也能进行充电和放电。
    • 26. 发明申请
    • POWER SOURCE SYSTEM, POWER SUPPLY CONTROL METHOD FOR THE POWER SOURCE SYSTEM, POWER SUPPLY CONTROL PROGRAM FOR THE POWER SOURCE SYSTEM, AND COMPUTER-READABLE RECORDING MEDIUM WITH THE POWER SUPPLY CONTROL PROGRAM RECORDED THEREON
    • 电源系统,电源系统的电源控制方法,电源系统的电源控制程序以及记录有电源控制程序的计算机可读记录介质
    • US20100026244A1
    • 2010-02-04
    • US12524068
    • 2008-01-10
    • Takuma IidaTadao Kimura
    • Takuma IidaTadao Kimura
    • H02J7/00
    • H01M10/44B66B5/027H02J7/0047H02J7/0063H02J9/061Y10T307/50Y10T307/527Y10T307/625
    • The present invention provides a power source system that increases the power supply capacity of a power source device and continuously supplies the power necessary for a load device when a power source device stops. A control unit has a state quantity setting unit that sets a first target state quantity indicating a state of charge of the power storage device that is to be a target value when charge and discharge of the power storage device are controlled. When the power source device stops, the state quantity setting unit can change the first target state quantity to a second target state quantity that is to be a target value exceeding the first target state quantity and can increase the target state quantity of the power storage device. As a result, when the power source device stops, charge and discharge of the power storage device are controlled on the basis of the target state quantity exceeding that during the operation of the power source device. Therefore, the state of charge of the power storage device can be improved over that during the operation of the power source device. As a result, the power supply capacity of the power source device can be increased and the power necessary for the load device can be continuously supplied, in place of the power source device.
    • 本发明提供了一种电源系统,其增加电源装置的电源容量,并且在电源装置停止时连续地提供负载装置所需的电力。 控制单元具有状态量设定单元,其在控制了蓄电装置的充放电时,设定表示作为目标值的蓄电装置的充电状态的第一目标状态量。 当电源装置停止时,状态量设定部可以将第一目标状态量变更为超过第一目标状态量的目标值的第二目标状态量,并且能够增大蓄电装置的目标状态量 。 结果,当电源装置停止时,基于超过在电源装置的操作期间的目标状态量来控制蓄电装置的充电和放电。 因此,与电源装置的动作相比,能够提高蓄电装置的充电状态。 结果,可以增加电源装置的电源容量,并且可以连续地提供负载装置所需的电力来代替电源装置。
    • 30. 发明申请
    • FAILURE DIAGNOSIS CIRCUIT, POWER SUPPLY DEVICE, AND FAILURE DIAGNOSIS METHOD
    • 故障诊断电路,电源设备和故障诊断方法
    • US20110199115A1
    • 2011-08-18
    • US13125012
    • 2009-10-02
    • Takuma Iida
    • Takuma Iida
    • G01R31/40
    • H02J7/0021B60L3/0046B60L58/12G01R19/0084G01R31/382G01R31/396G01R35/00H01M10/46H01M10/482Y02T10/7005Y02T10/7044Y02T10/705Y02T10/7055
    • A failure diagnosis circuit is provided with: a voltage detection unit that detects a terminal voltage of an electricity storage unit; a current detection unit that detects a current flowing in the electricity storage unit; a SOC calculation unit that calculates a SOC of the electricity storage unit on the basis of the current detected by the current detection unit; a charging stopping unit that stops charging of the electricity storage unit when the SOC calculated by the SOC calculation unit reaches a preset determination value; and a failure detection unit that determines that a failure has occurred in the voltage detection unit when a variation of the terminal voltage, which is detected by the voltage detection unit, after the charging is stopped by the charging stopping unit differs from a predicted variation when the SOC of the electricity storage unit is at the determination value.
    • 故障诊断电路具备:检测蓄电部的端子电压的电压检测部; 电流检测单元,其检测在所述蓄电单元中流动的电流; SOC计算单元,其基于由所述电流检测单元检测出的电流来计算所述蓄电单元的SOC; 当由SOC计算单元计算的SOC达到预设的确定值时,停止蓄电单元的充电的充电停止单元; 以及故障检测单元,当在由充电停止单元停止充电之后,由电压检测单元检测到的端子电压的变化在电压检测单元中发生故障时,与故障检测单元的预测变化不同, 蓄电部的SOC为判定值。