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    • 3. 发明申请
    • OPEN CIRCUIT VOLTAGE ESTIMATING DEVICE AND METHOD
    • 开路电压估算装置和方法
    • WO2016068652A2
    • 2016-05-06
    • PCT/KR2015011590
    • 2015-10-30
    • LG CHEMICAL LTD
    • YOON SUNG-YULPARK JEONG-SEOKOH GYONG-JINCHO YOUNG-BO
    • G01R31/36H01M10/48
    • G01R31/3658G01R19/16542G01R31/36G01R31/3606G01R31/361G01R31/3624G01R31/3655H01M10/48H01M10/482H02J7/0016H02J7/0021
    • The present invention discloses an open circuit voltage estimating device that may estimate an open circuit voltage even when a battery cell does not have a stop time. The open circuit voltage estimating device according to one embodiment of the present invention comprises: a current measuring unit measuring the charging/discharging current of a battery cell; a current accumulating unit accumulating, from an initial time, the current measured by the current measuring unit; a time calculating unit calculating a threshold time which is the time when a current accumulation value accumulated by the current accumulating unit is within a threshold range; a cell voltage measuring unit measuring the voltage of the battery cell; and an open circuit voltage estimating unit estimating the open circuit voltage of the battery cell by calculating the average value of the voltage measured by the cell voltage measuring unit during a calculating time from the initial time to the threshold time.
    • 本发明公开了即使在电池单元不具有停止时间时也可以估计开路电压的开路电压估计装置。 根据本发明的一个实施例的开路电压估计装置包括:电流测量单元,测量电池单元的充电/放电电流; 电流累积单元,其从初始时间累积由电流测量单元测量的电流; 计算阈值时间的时间计算单元,所述阈值时间是当前累积单元累积的当前累计值在阈值范围内的时间; 电池电压测量单元,测量电池单元的电压; 以及开路电压估计单元,通过计算在从初始时刻到阈值时刻的计算时间期间由电池电压测量单元测量的电压的平均值来估计电池单元的开路电压。
    • 4. 发明申请
    • ACCUMULATOR STATE INDICATOR
    • 累加器状态指示器
    • WO2015185802A1
    • 2015-12-10
    • PCT/FI2015/050384
    • 2015-06-03
    • POLAR HEATER OY
    • JUVANI, Tapio
    • G01R31/36H01M10/48G08C17/02G01S19/14B60L11/18
    • H01M10/48G01R31/3655G01R31/3679G01R31/3689G01S19/14H01M10/345H01M10/425H01M10/486H01M2010/4278H01M2220/20H04Q9/00H04Q2209/40H04Q2209/43H04Q2209/823Y02E60/124Y02P70/54
    • The present invention demonstrates a monitoring method of accumulators or batteries (11), which is arranged to measure at least one parameter relating to an accumulator, batteries or their environment and having an impact on or indicating the operational state of the accumulator (11). The measuring unit (14) controls locally measurements, collects the data and transmits them, for example, to the server (12, 63, 64) managed by the party monitoring the accumulator, which can be executed as cloud service. A calculation and prediction algorithm for the accumulator's service life can be connected to the service, calculating the estimate on the accumulator's remaining service life based on accelerated life testing and measurement results as well as different kinds of prediction data. This data with instructions can be transmitted to the user (65) of the vehicle, for example, to their mobile phone (66). The measurement data can also be transmitted directly from the monitoring apparatus (14) to the user's own terminal device (13) without a separate server via Bluetooth or WLAN connection. The method also comprises the detection and locating of accumulators (11) at the end of their service life by means of a positioning signal, which can be observed with a fixed (41) or mobile (42) receiver device. The invention can be applied to the recycling of accumulators and batteries so that accumulators and batteries that have been left unreturned and that are about to end up into the nature or dumps as hazardous waste can be located and reclaimed.
    • 蓄电池(11)的监视方法,其特征在于,蓄电池(11)被设置为测量与蓄电池,电池或其环境有关的至少一个参数,并对蓄电池(11)的工作状态产生影响。 测量单元(14)控制本地测量,收集数据并将其发送到例如由监视累加器的一方管理的服务器(12,63,64),该服务器可以作为云服务执行。 蓄能器使用寿命的计算和预测算法可以连接到服务,基于加速寿命测试和测量结果以及不同种类的预测数据计算累加器剩余使用寿命的估计。 具有指令的数据可以例如传送到其移动电话(66)到车辆的用户(65)。 测量数据也可以通过蓝牙或WLAN连接直接从监控设备(14)发送到用户自己的终端设备(13),而不需要单独的服务器。 该方法还包括通过定位信号在其使用寿命结束时检测和定位蓄能器(11),定位信号可以用固定(41)或移动(42)接收器装置观察。 本发明可以应用于蓄电池和电池的再循环,从而可以定位和回收已经没有回收并且将作为危险废物最终达到自然或倾倒的蓄电池和蓄电池。
    • 6. 发明申请
    • BATTERY MONITORING SYSTEM
    • 电池监控系统
    • WO2012162450A1
    • 2012-11-29
    • PCT/US2012/039248
    • 2012-05-24
    • SPIREON, INC.
    • JONES, Lawrence A.
    • G01R21/00
    • H04Q9/00B60R25/00B60R25/10B60R25/102B60R25/30B60R25/33G01R31/362G01R31/3655G01R31/3689H01M10/425H01M10/48H01M2010/4271H01M2010/4278H04Q2209/823
    • A battery monitoring device attached to a vehicle battery includes a battery voltage sensor, motion sensor, location determination module, memory device, wireless modem, and controller. The battery voltage sensor senses the voltage level of the vehicle battery, the motion sensor senses movement of the battery monitoring device, and the location determination module determines the location of the battery monitoring device. The memory device stores a unique identification number associated with the battery monitoring device. Upon detection of an event as indicated by the battery voltage signal or the motion signal or the location information, the wireless modem transmits an alert message that includes the unique identification number and information regarding the event. The components of the device may be encapsulated in a potting compound within a cavity on the battery housing, or they may be enclosed in a housing that is separable from the battery housing.
    • 附着于车辆电池的电池监视装置包括电池电压传感器,运动传感器,位置确定模块,存储装置,无线调制解调器和控制器。 电池电压传感器感测车辆电池的电压电平,运动传感器感测电池监视装置的移动,并且位置确定模块确定电池监视装置的位置。 存储装置存储与电池监视装置相关联的唯一标识号。 在检测到由电池电压信号或运动信号或位置信息所指示的事件时,无线调制解调器发送包括唯一标识号和关于事件的信息的警报消息。 装置的部件可以封装在电池壳体中的腔内的封装化合物中,或者它们可以封闭在可与电池壳体分离的壳体中。
    • 10. 发明申请
    • CONDITION DETECTION AND INDICATING MEANS FOR A STORAGE BATTERY
    • 储存电池的条件检测和指示手段
    • WO2004066413A3
    • 2004-12-02
    • PCT/GB2004000194
    • 2004-01-21
    • INTELLIGENT BATTERY TECHNOLOGYKHOO TENG CHEOK
    • KHOO TENG CHEOK
    • G01R31/36H01M
    • G01R31/3686G01R31/3655G01R31/3662G01R31/3679G01R31/3696
    • There is disclosed a storage battery which is capable of self-monitoring by detecting and indicating the actual capacity and the expected remaining life-span of the battery, the condition of its charging system and the discharge level. The battery is provided with an integrally assembled detection and indicating means which measure the actual potential across its terminal (indicative of the state of charge of the battery) and the internal resistance of the battery (indicative of its health). The expected remaining life-span of the battery is derived from the calculation of current from these measurements. The battery is assembled to include a casing (2), a cover (3) and a capacity detection and indicating means. The detection and indicating means consist of an electronic circuit that measures the electromotive force and the internal resistance of the battery and indicate the same on a display means (9). The display means is adapted to exhibit whether the battery is in good working condition or otherwise during engine off or whether the charging system of the vehicle is in good working condition during engine in operation. Further, it could also monitor potential leakage presence in its electrical system.
    • 公开了一种能够通过检测和指示电池的实际容量和预期的剩余寿命,充电系统的状况和放电水平来进行自监控的蓄电池。 电池具有整体组装的检测和指示装置,其测量其端子(指示电池的充电状态)和电池的内部电阻(表示其健康状况)之间的实际电位。 电池的预期剩余寿命来自这些测量的电流计算。 电池被组装以包括壳体(2),盖(3)和容量检测和指示装置。 检测和指示装置包括测量电池的电动势和电阻的电子电路,并在显示装置(9)上指示电子电路。 显示装置适于在发动机运转期间显示电池在发动机关闭期间是否处于良好工作状态或其他状况,或者车辆的充电系统是否处于良好工作状态。 此外,它还可以监测其电气系统中的潜在泄漏存在。