INTEGRATED ELECTRONIC DEVICE WITH SOLID-STATE RELAY AND PRE-CHARGE CIRCUIT
    1.
    发明申请
    INTEGRATED ELECTRONIC DEVICE WITH SOLID-STATE RELAY AND PRE-CHARGE CIRCUIT 审中-公开
    具有固态继电器和预充电电路的集成电子器件

    公开(公告)号:US20160243951A1

    公开(公告)日:2016-08-25

    申请号:US15050516

    申请日:2016-02-23

    Abstract: An electronic device including an electronic switch M1, an electrical pre-charge circuit and a measurement, command and diagnosis module. The main electronic switch M1 has a first electrical terminal D1, a second electrical terminal S1, and a main driving terminal G1. The main electronic switch M1 is adapted to take, based on a driving signal DRV, depending on the command signal CMD and on an enabling signal ENB, a closed condition or an open condition, wherein the first electrical terminal D1 is respectively connected to or disconnected from the second electrical terminal S1. The pre-charge electrical circuit is adapted to carry out, based on the command signal CMD, a pre-charge operation, aimed at equalizing the electric potentials (V1, V2) of the first and second terminals of the device, before the main electronic switch M1 takes a closed condition, upon of a transition from the open condition.

    Abstract translation: 一种电子设备,包括电子开关M1,电预充电电路和测量指令和诊断模块。 主电子开关M1具有第一电端子D1,第二电端子S1和主驱动端子G1。 主电子开关M1适于根据驱动信号DRV取决于指令信号CMD和使能信号ENB,闭合状态或打开状态,其中第一电气端子D1分别连接到或断开 从第二电气端子S1。 预充电电路适于基于命令信号CMD执行预充电操作,该预充电操作旨在使主电子器件的第一和第二端子的电位(V1,V2)均衡 开关M1从开启状态转变时,处于关闭状态。

    ELECTRONIC CONTROL DEVICE FOR CONTROLLING A VEHICLE BATTERY PACK AND SYSTEM EMPLOYING SUCH A DEVICE
    2.
    发明申请
    ELECTRONIC CONTROL DEVICE FOR CONTROLLING A VEHICLE BATTERY PACK AND SYSTEM EMPLOYING SUCH A DEVICE 审中-公开
    用于控制车辆电池组的电子控制装置和使用这种装置的系统

    公开(公告)号:US20170008418A1

    公开(公告)日:2017-01-12

    申请号:US15202987

    申请日:2016-07-06

    Abstract: An electronic control device 1 for controlling a vehicle battery pack 50 is described.The device 1 may be used to control a vehicle battery pack 50 adapted to supply a battery voltage Vb and a battery current Ib through a plurality of battery cells C. The device 1 is adapted to interact with a remote control unit 60 external to the battery pack 50. The device 1 comprises a non-programmable monitoring and actuation unit 2 and a two-way serial communication interface 3. The non-programmable monitoring and actuation unit 2 is electrically and operatively connectable to the battery pack 50 and to each of the battery cells C to detect analogue battery parameters P, comprising at least the magnitudes of battery voltage Vb and battery current Ib, in addition to temperature (Tc1, Tcn), current (Ic1, Icn) and voltage (Vc1, Vcn) of each battery cell C.The non-programmable monitoring and actuation unit 2 is further configured to generate monitoring signals Sm representative of the detected analog battery parameters P, to receive at least one command signal Sc representative of at least one respective operation command CM of the battery pack 50, and to activate such at least one command CM.The two-way serial communication interface 3 is connected to the non-programmable monitoring and actuation unit 2 to receive the aforesaid monitoring signals Sm and to supply the aforesaid at least one command signal Sc.The two-way serial communication interface 3 is further connectable to an external two-way serial communication line LS to send the monitoring signals Sm to the remote control unit 60 and to receive the at least one command signal Sc from the remote control unit, through the aforesaid two-way serial communication line LS.

    Abstract translation: 双向串行通信接口3还可以连接到外部双向串行通信线路LS,以将监控信号Sm发送到遥控单元60,并且从遥控单元接收至少一个命令信号Sc,通过 上述双向串行通信线路LS。

    METHOD FOR ESTIMATING THE CURRENT AND THE STATE OF CHARGE OF A BATTERY PACK OR CELL, WITHOUT DIRECT DETECTION OF CURRENT UNDER OPERATING CONDITIONS

    公开(公告)号:US20180340981A1

    公开(公告)日:2018-11-29

    申请号:US15985926

    申请日:2018-05-22

    Abstract: A method for estimating an operating current I dispensed by a battery pack or cell including the steps of acquiring characterization data of the battery pack or cell, related to measured time trends of a voltage Vm and of a characterization current Im of the battery pack or cell, associated with a respective characterization temperature value Tk; and then processing the characterization data to determine a plurality of parameters P of a model of the battery pack or cell, as a function of temperature and state of charge SOC. Measuring an operating voltage V of the battery pack or cell and an operating temperature T and for estimating the operating current I of the battery pack or cell. A plurality of time observation windows Wi is identified and characterization voltage Vmi values are detected. Then, at each observation window Wi, the following actions are performed: calculating a value of the state of charge SOCi of the battery pack or cell; calculating an estimated voltage VABi, by means of the model of the battery pack or cell, as a function of respective nominal values of the parameters P; determining a respective error function Ei dependent on the difference between the estimated voltage VABi and the characterization voltage Vmi of the time observation window Wi; calculating an actual value Pi for each parameter P, by minimizing the aforesaid error function Ei.

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