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    • 2. 发明授权
    • Process for controlling temperature of battery pack
    • 控制电池组温度的过程
    • US07550949B2
    • 2009-06-23
    • US11265375
    • 2005-11-02
    • Hyosang WooJaesung AhnJongMin ParkDo Yang JungJohn E. Namgoong
    • Hyosang WooJaesung AhnJongMin ParkDo Yang JungJohn E. Namgoong
    • H02J7/04H02J7/16H01M2/10
    • H01M10/613H01M10/617H01M10/633H01M10/635H01M10/6563H01M10/657H01M10/663
    • A process for controlling temperature of a battery pack includes operating a fan to change a battery temperature to an optimal range of temperature (Topt) when a condition is satisfied that the battery temperature is equal to or greater than a maximum acceptable temperature (Tmax) or when the battery temperature is equal to or less than a minimum acceptable temperature (Tmin) and, at the same time, when the difference between a battery temperature (Tbat) and an air temperature (Tair) of air is equal to or greater than a critical temperature (Tcrt), and operating the fan to change the battery temperature to an optimal range of temperature variation (Topt1) of each unit cell when the battery temperature does not satisfy the condition, and a temperature variation (Tvar) of each unit cell is equal to or greater than a predetermined critical temperature (Tcrt1). According to the present invention, the operation of the fan is minimized, and therefore, optimal battery operation is accomplished while unnecessary power consumption is reduced. Furthermore, the temperature deviation between the unit cells is reduced, and therefore, the operation of the overall battery system is optimized.
    • 用于控制电池组的温度的方法包括:当满足电池温度等于或大于最大可接受温度(Tmax)或满足最大可接受温度(Tmax)的条件时,操作风扇以将电池温度改变到最佳温度范围(Topt),或 当电池温度等于或小于最小可接受温度(Tmin)时,并且同时当电池温度(Tbat)与空气的空气温度(Tair)之差等于或大于 临界温度(Tcrt),并且当电池温度不满足条件时,操作风扇将电池温度改变到每个电池的温度变化(Topt1)的最佳范围,并且每个电池的温度变化(Tvar) 等于或大于预定的临界温度(Tcrt1)。 根据本发明,风扇的操作被最小化,因此在不必要的功耗降低的情况下实现最佳的电池操作。 此外,单元电池之间的温度偏差减小,因此整个电池系统的操作被优化。
    • 4. 发明授权
    • Heat exchanging system of battery pack using thermoelectric element
    • 使用热电元件的电池组热交换系统
    • US07867663B2
    • 2011-01-11
    • US11548054
    • 2006-10-10
    • JongMin ParkJunill YoonHeekook YangJohn E. NamgoongJaesung AhnHyosang Woo
    • JongMin ParkJunill YoonHeekook YangJohn E. NamgoongJaesung AhnHyosang Woo
    • H01M8/04
    • H01M10/613H01M10/345H01M10/615H01M10/625H01M10/63H01M10/647H01M10/6565H01M10/6566H01M10/6572
    • Disclosed herein is a heat exchange system for battery packs, which controls the temperature of a medium- or large-sized battery pack including a plurality of unit cells such that the battery pack can be operated under the optimum operating conditions. The heat exchange system includes an air inlet port and an air outlet port formed at one side of a housing surrounding the outer surface of the battery pack so as to form a predetermined flow channel, through which air flows, a driving fan mounted in the flow channel for driving the air to flow through the flow channel, and a Peltier element mounted at the air inlet port for controlling the temperature of air introduced into the air inlet port. In the heat exchange system according to the present invention, the thermoelectric element is mounted inside the air inlet port, through which air for cooling the battery pack is introduced into the heat exchange system. Consequently, the present invention has the effect of easily controlling the optimum operating temperature of the battery pack, reducing influences caused by external conditions, and decreasing noise and vibration.
    • 本文公开了一种用于电池组的热交换系统,其控制包括多个单元电池的中型或大型电池组的温度,使得电池组可以在最佳操作条件下操作。 热交换系统包括空气入口和空气出口,其形成在围绕电池组的外表面的壳体的一侧,以形成预定的流动通道,空气流过该通道,安装在流动中的驱动风扇 用于驱动空气流过流动通道的通道,以及安装在空气入口处的珀尔帖元件,用于控制引入空气入口的空气的温度。 在根据本发明的热交换系统中,热电元件安装在空气入口内部,通过该空气入口将用于冷却电池组的空气引入热交换系统。 因此,本发明具有容易控制电池组的最佳工作温度,减少由外部条件引起的影响以及降低噪声和振动的效果。
    • 5. 发明申请
    • Process for controlling temperature of battery pack
    • 控制电池组温度的过程
    • US20060214640A1
    • 2006-09-28
    • US11265375
    • 2005-11-02
    • Hyosang WooJaesung AhnJongMin ParkDo JungJohn Namgoong
    • Hyosang WooJaesung AhnJongMin ParkDo JungJohn Namgoong
    • H02J7/04
    • H01M10/613H01M10/617H01M10/633H01M10/635H01M10/6563H01M10/657H01M10/663
    • A process for controlling temperature of a battery pack includes operating a fan to change a battery temperature to an optimal range of temperature (Topt) when a condition is satisfied that the battery temperature is equal to or greater than a maximum acceptable temperature (Tmax) or when the battery temperature is equal to or less than a minimum acceptable temperature (Tmin) and, at the same time, when the difference between a battery temperature (Tbat) and an air temperature (Tair) of air is equal to or greater than a critical temperature (Tct), and operating the fan to change the battery temperature to an optimal range of temperature variation (Topt1) of each unit cell when the battery temperature does not satisfy the condition, and a temperature variation (Tvar) of each unit cell is equal to or greater than a predetermined critical temperature (Tcrt1). According to the present invention, the operation of the fan is minimized, and therefore, optimal battery operation is accomplished while unnecessary power consumption is reduced. Furthermore, the temperature deviation between the unit cells is reduced, and therefore, the operation of the overall battery system is optimized.
    • 一种用于控制电池组的温度的过程包括操作风扇以将电池温度改变到最佳温度范围(T ),当条件满足电池温度等于或大于 最大可接受温度(T max),或当电池温度等于或小于最小可接受温度(T min min)时),同时,当 空气的电池温度(T BAT)与空气温度(T <空气)之间的差值等于或大于临界温度(T < SUB>),并且当电池温度不满足条件时,操作风扇以将电池温度改变到每个单位电池的最佳温度变化范围(T ),以及温度变化( 每个单电池的电压等于或大于预定的临界温度(T tt 1)。 根据本发明,风扇的操作被最小化,因此在不必要的功耗降低的情况下实现最佳的电池操作。 此外,单元电池之间的温度偏差减小,因此整个电池系统的操作被优化。
    • 9. 发明申请
    • Secondary battery and battery module having the same
    • 二次电池和电池模块具有相同的功能
    • US20070207377A1
    • 2007-09-06
    • US11514702
    • 2006-09-01
    • Ji HanJunill YoonHyosang Woo
    • Ji HanJunill YoonHyosang Woo
    • H01M2/02H01M2/20H01M2/08H01M2/24H01M2/18
    • H01M2/021H01M2/0212H01M2/0287H01M2/1061H01M2/206H01M10/0413
    • Disclosed herein are a secondary battery, which is formed in the shape of a plate and has an electrode assembly mounted in a battery case made of a laminated sheet including a metal layer and a resin layer, wherein the secondary battery is constructed in a structure in which independent coupling type frame members are mounted to the outside part of a sheathing member serving as the battery case, and a medium- or large-sized battery module including the same as a unit cell. Consequently, the secondary battery has a high mechanical strength and a large sealing force. Furthermore, the electrical connection is accomplished without bending the electrode leads. Also, the battery module, which is constructed with the secondary battery as a unit cell, can be manufactured with a compact structure and a relatively light weight. Furthermore, the assembly process of the battery module is greatly simplified. The structural stability of the battery module according to the present invention is very high, and therefore, the battery module can be preferably used as a power source for electric vehicles, hybrid electric vehicles, electric motor cycles, and electric bicycles.
    • 这里公开了二次电池,其形成为板状,并且具有安装在由包括金属层和树脂层的层压片制成的电池壳体中的电极组件,其中二次电池构造成 独立的联结型框架构件安装到用作电池壳体的护套构件的外部,以及包括其的单元电池的中型或大型电池模块。 因此,二次电池具有高的机械强度和大的密封力。 此外,在不弯曲电极引线的情况下实现电连接。 此外,以二次电池构成为单位电池的电池模块可以以紧凑的结构和相对较轻的重量制造。 此外,电池模块的组装过程大大简化。 根据本发明的电池模块的结构稳定性非常高,因此,电池模块可以优选用作电动车辆,混合电动车辆,电动循环和电动自行车的动力源。