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    • 41. 发明申请
    • METHOD AND APPARATUS FOR GUARANTEEING WEB-BASED MOBILITY
    • 用于保证基于网络的移动性的方法和装置
    • US20130013669A1
    • 2013-01-10
    • US13533427
    • 2012-06-26
    • Sun-Sim CHUNYoung-Il KIMYang-Jung KIMIl-Young CHONG
    • Sun-Sim CHUNYoung-Il KIMYang-Jung KIMIl-Young CHONG
    • G06F15/16
    • G06F9/5055
    • A web-based mobility guaranteeing method includes, at a terminal, connecting to a first service providing apparatus; transmitting a service request signal for requesting service information to the first service providing apparatus; at the first service providing apparatus, transmitting a service providability inquiry signal to a web-based service providing apparatus, based on whether or not the service information is able to be provided by the first service providing apparatus; at the web-based service providing apparatus, transmitting the service providability inquiry signal to a second service providing apparatus, receiving a service providability response signal from the second service providing apparatus, and changing a service provider of the terminal from the first service providing apparatus to the second service providing apparatus; and at the terminal, receiving a service response signal from the second service providing apparatus in response to the service request signal.
    • 基于网络的移动性保证方法包括在终端处连接到第一服务提供设备; 向所述第一服务提供设备发送用于请求服务信息的服务请求信号; 在所述第一服务提供装置的基础上,基于所述第一服务提供装置是否能够提供所述服务信息,向所述基于web的服务提供装置发送服务提供性查询信号; 在基于网络的服务提供装置中,向第二服务提供装置发送服务提供性查询信号,从第二服务提供装置接收服务提供响应信号,并将终端的服务提供者从第一服务提供装置改变为 第二服务提供装置; 并且在终端处,响应于服务请求信号从第二服务提供装置接收服务响应信号。
    • 42. 发明授权
    • Battery pack comprising combined temperature-controlling system
    • 电池组包括组合的温度控制系统
    • US08343647B2
    • 2013-01-01
    • US12225983
    • 2007-03-31
    • Jaesung AhnDo Yang JungJohn E. NamgoongSeungdon ChoiSinyoung Park
    • Jaesung AhnDo Yang JungJohn E. NamgoongSeungdon ChoiSinyoung Park
    • H01M10/50
    • H01M2/0277H01M2/1077H01M2/1094H01M10/613H01M10/617H01M10/625H01M10/647H01M10/6555H01M10/6557H01M10/6563H01M10/6566H01M10/659
    • Disclosed herein is a middle- or large-sized battery pack including a plurality of unit cells electrically connected with each other, wherein the battery pack is constructed in a structure in which a heat transfer medium flows through gaps defined between the unit cells for controlling the overall temperature of the battery pack to be within a predetermined temperature range for the optimum operation of the battery pack, and each unit cell is provided at the outer surface thereof, at which the heat transfer medium is brought into contact with each unit cell, with a layer containing a phase transformation material (‘phase transformation layer’) for minimizing individual temperature difference between the unit cells. The present invention has the effect of controlling the overall temperature of the battery pack and individual controlling the temperatures of unit cells constituting the battery pack. Also, the present invention has the effect of restraining the abrupt change in temperature of the unit cells, when the battery pack is not in operation or when the external environment abruptly changes, thereby preventing the degradation of the unit cells. Furthermore, the present invention has the effect of minimizing damage to the unit cells due to foreign matter when the foreign matter is brought into contact with the unit cells. In addition, the present invention has the effect of reducing the overall temperature difference of the battery pack and manufacturing a middle- or large-sized battery pack having a compact structure.
    • 这里公开了一种包括彼此电连接的多个单元电池的中型或大型电池组,其中电池组构造成其中传热介质流过限定在单元电池之间的间隙的结构,用于控制 电池组的总体温度在用于电池组的最佳操作的预定温度范围内,并且每个单电池设置在其传热介质与每个电池单元接触的外表面处, 包含相变材料(相变层)的层,用于使单元电池之间的单独温度差最小化。 本发明具有控制电池组的总体温度和控制构成电池组的单位电池的温度的个体的效果。 此外,本发明具有抑制单元电池的温度突然变化的效果,当电池组不工作时或外部环境突然变化时,能够抑制单位电池的劣化。 此外,本发明具有当异物与单元电池接触时由于异物而使对单位电池的损害最小化的效果。 此外,本发明具有降低电池组的总体温差并制造具有紧凑结构的中型或大型电池组的效果。
    • 45. 发明授权
    • Apparatus for estimating open circuit voltage of battery, apparatus for estimating state of charge of battery, and method for controlling the same
    • 用于估计电池的开路电压的装置,用于估计电池的充电状态的装置及其控制方法
    • US08175826B2
    • 2012-05-08
    • US12602935
    • 2008-08-22
    • Jung-Soo KangDo-Youn KimChang-Gi JungDo-Yang Jung
    • Jung-Soo KangDo-Youn KimChang-Gi JungDo-Yang Jung
    • G06F19/00
    • G01R31/36G01R31/3651
    • An apparatus for estimating an OCV of a battery includes a voltage sensing unit for measuring a battery output voltage; a temperature sensing unit for measuring a battery temperature; a data storing unit for periodically receiving the battery output voltage and temperature data from the sensing units and storing the data in a memory; an OCV variation estimating unit for calculating an OCV variation from a varying pattern of battery output voltages measured in the past and at the present, stored in the memory, by applying a mathematical model defining a correlation between the varying pattern and the OCV variation, and estimating an OCV at a current stage by reflecting a correction factor corresponding to the battery temperature on the calculated OCV variation; and an OCV estimating unit for estimating an OCV at the current stage by reflecting the estimated OCV variation on the OCV estimated at a last stage.
    • 用于估计电池的OCV的装置包括用于测量电池输出电压的电压感测单元; 用于测量电池温度的温度感测单元; 数据存储单元,用于周期性地从感测单元接收电池输出电压和温度数据,并将数据存储在存储器中; OCV变化估计单元,用于通过应用定义变化模式和OCV变化之间的相关性的数学模型来计算存储在存储器中的过去和当前测量的电池输出电压的变化模式的OCV变化,以及 通过反映与所计算的OCV变化相对应的电池温度的校正因子来估计当前阶段的OCV; 以及OCV估计单元,用于通过反映在最后阶段估计的OCV的估计OCV变化来估计当前阶段的OCV。
    • 46. 发明授权
    • Power switching module for battery module assembly
    • 电池模块组装电源开关模块
    • US08125192B2
    • 2012-02-28
    • US12516267
    • 2007-10-27
    • Junill YoonJong-yul RoHeekook YangJongmoon YoonDo Yang Jung
    • Junill YoonJong-yul RoHeekook YangJongmoon YoonDo Yang Jung
    • H02J7/00
    • B60K6/28H01M2/0245H01M2/1077H01M2/206
    • Disclosed herein is a power switching module for a battery module assembly constructed in a structure in which a plurality of rectangular battery modules, each having a plurality of battery cells or unit modules connected in series to each other, are stacked in the width direction (the longitudinal direction) and the height direction (the transverse direction) by at least twos such that the rectangular battery modules generally constitute a hexahedral structure (hexahedral stack), outer edges of the hexahedral stack are fixed by a frame member, and input and output terminals of the rectangular battery modules are oriented such that the input and output terminals of the rectangular battery modules are directed toward one surface (a) of the hexahedral stack, wherein the power switching module comprises an insulative substrate mounted to the surface (a) of the hexahedral stack in a coupling fashion, elements mounted on the insulative substrate for controlling voltage and current during the charge and discharge of the rectangular battery modules, and connection members mounted on the insulative substrate for interconnecting the control elements.
    • 这里公开了一种用于电池模块组件的功率切换模块,其结构是这样的结构,其中,具有彼此串联连接的多个电池单元或单元模块的多个矩形电池模块在宽度方向上堆叠 纵向)和高度方向(横向)至少两个,使得矩形电池模块通常构成六面体结构(六面体堆叠),六面体堆叠的外边缘由框架构件固定,并且输入和输出端子 矩形电池模块的定向使得矩形电池模块的输入和输出端子指向六面体堆叠的一个表面(a),其中功率开关模块包括安装到第二表面(a)的绝缘衬底 六面体堆叠以耦合的方式,安装在绝缘衬底上的元件,用于在th期间控制电压和电流 矩形电池模块的充电和放电以及安装在绝缘基板上用于互连控制元件的连接构件。
    • 47. 发明授权
    • Apparatus and method for bucking voltage of battery pack
    • 电池组电压降压装置及方法
    • US07834589B2
    • 2010-11-16
    • US11333858
    • 2006-01-17
    • Jong Min ParkDo Yang Jung
    • Jong Min ParkDo Yang Jung
    • H02J7/00
    • H02J7/0065H02J7/0016H02J2007/0067Y02T10/7055
    • An apparatus and method for discharging a voltage in a battery pack. The apparatus includes a discharge resistance connected to a discharge target battery of plural batteries in the battery pack and discharging a voltage of the discharge target battery, a switching section for connecting the discharge target battery and the discharge resistance, a voltage measuring section for measuring a voltage of the discharge target battery, and a control section for controlling the switching section depending on the measured voltage value of the battery. The method includes measuring a voltage of the discharge target battery, calculating a PWM duty rate of a switching section connecting the discharge target battery and a discharge resistance using the measured voltage value and a value of the discharge resistance, and controlling the switching section based on the duty rate to maintain an energy consumed in the discharge resistance to be constant.
    • 一种用于放电电池组中的电压的装置和方法。 该装置包括连接到电池组中的多个电池的放电目标电池并放电目标电池的电压的放电电阻,用于连接放电目标电池和放电电阻的开关部分,用于测量 放电对象电池的电压,以及根据电池的测定电压值来控制开关部的控制部。 该方法包括测量放电目标电池的电压,使用测量的电压值和放电电阻的值来计算连接放电目标电池的开关部分的PWM占空比和放电电阻,以及基于 将放电电阻中消耗的能量维持在一定的占空比。
    • 49. 发明授权
    • Method and apparatus of estimating state of health of battery
    • 估计电池的健康状况的方法和装置
    • US07615967B2
    • 2009-11-10
    • US11479910
    • 2006-06-30
    • Il ChoDo Youn KimDo Yang Jung
    • Il ChoDo Youn KimDo Yang Jung
    • H02J7/00G01N27/416G08B21/00G01R31/36
    • G01R31/3662G01R31/3624G01R31/3675G01R31/3679
    • Disclosed is a method and apparatus of estimating a state of health (SOH) of a battery using internal resistance, which has been found to act as a parameter exerting the greatest influence on the SOH of the battery. The method comprises the steps of: storing an SOH estimation table constructing SOH values corresponding to various values of internal resistance according to temperature and a state of charge (SOC) in a memory; performing measurement of the temperature and estimation of the SOC of the battery when a request is made to estimate the SOH; detecting the internal resistance value of the battery; and reading the SOH values corresponding to the measured temperature, the estimated SOC of the battery, and the detected internal resistance value of the battery from the SOH estimation table.
    • 公开了一种使用内部电阻估计电池的健康状态(SOH)的方法和装置,其被认为是对电池的SOH影响最大的参数。 该方法包括以下步骤:根据存储器中的温度和状态(SOC),存储与内部电阻的各种值对应的SOH值的SOH估计表; 当要求估计SOH时,执行温度的测量和电池的SOC的估计; 检测电池的内阻值; 以及从SOH估计表读取与测量温度相对应的SOH值,电池的估计SOC和检测到的电池内部电阻值。