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    • 1. 发明授权
    • Flexible bus architecture for monitoring and control of battery pack
    • 灵活的总线架构,用于监控和控制电池组
    • US08438426B2
    • 2013-05-07
    • US13572193
    • 2012-08-10
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/00
    • H02J7/0021G06F11/221Y02T10/7055
    • A method for diagnosing a control system for a stacked battery. The control system comprises a plurality of processors, a plurality of controllers, and a monitoring unit (control unit). The method comprises sending a diagnostic information from the central unit to a top processor of the plurality of processors, transmitting a return information from the top processor of the plurality of processors to the central unit, comparing the diagnostic information sent from the central unit with the return information received by the central unit, and indicating a communication problem if the diagnostic information sent from the central unit is different from the return information received by the central unit. The steps are repeated by eliminating the top processor from a previous cycle and assigning a new top processor if there is no problem with the reconfigurable communication system.
    • 一种用于诊断堆叠式电池的控制系统的方法。 控制系统包括多个处理器,多个控制器和监控单元(控制单元)。 该方法包括将诊断信息从中央单元发送到多个处理器的顶部处理器,从多个处理器的顶部处理器向中央单元发送返回信息,将从中央单元发送的诊断信息与 返回由中央单元接收的信息,并且如果从中央单元发送的诊断信息与由中央单元接收到的返回信息不同,则指示通信问题。 如果在可重新配置的通信系统中没有问题,则通过从上一个循环中消除顶部处理器并分配新的顶部处理器来重复这些步骤。
    • 2. 发明申请
    • FLEXIBLE BUS ARCHITECTURE FOR MONITORING AND CONTROL OF BATTERY PACK
    • 灵活的总线结构,用于监控和控制电池组
    • US20110145629A1
    • 2011-06-16
    • US12872432
    • 2010-08-31
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/22G06F13/36G06F11/07
    • H02J7/0021G06F11/221Y02T10/7055
    • The present invention provides a control system which is used for a stacked battery of a plurality of battery packs. Each battery pack has a plurality of battery cells coupled in series. The control system is capable of reconfiguring communication among the battery packs in the stacked battery, and comprises a plurality of processors, a plurality of controllers, and a monitoring unit. The processors are coupled to the battery packs. Two adjacent processors among the processors are able to communicate with each other though a first bus. The controllers are coupled to the battery packs. Two adjacent controllers among the controllers are able to communicate with each other through a second bus. The processors are capable of communicating with the controllers through a third bus. The monitoring unit is used for monitoring communications among the plurality of processors and communications among the plurality of controllers. The monitoring unit is capable of detecting communication problems on the first bus and/or the second bus. The monitoring unit further is capable of reconfiguring communication paths among the plurality of processors and communication path among the plurality of controllers.
    • 本发明提供一种用于多个电池组的堆叠电池的控制系统。 每个电池组具有串联耦合的多个电池单元。 控制系统能够重新配置堆叠电池中的电池组之间的通信,并且包括多个处理器,多个控制器和监视单元。 处理器耦合到电池组。 处理器中的两个相邻处理器能够通过第一总线彼此通信。 控制器耦合到电池组。 控制器中的两个相邻控制器能够通过第二总线相互通信。 处理器能够通过第三总线与控制器进行通信。 监视单元用于监视多个处理器之间的通信和多个控制器之间的通信。 监视单元能够检测第一总线和/或第二总线上的通信问题。 监视单元还能够重新配置多个处理器之间的通信路径和多个控制器之间的通信路径。
    • 3. 发明授权
    • Flexible bus architecture for monitoring and control of battery pack
    • 灵活的总线架构,用于监控和控制电池组
    • US08261129B2
    • 2012-09-04
    • US13154736
    • 2011-06-07
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/00
    • H02J7/0021G06F11/221Y02T10/7055
    • A method for diagnosing a control system for a stacked battery is disclosed. The control system comprises a plurality of processors, a plurality of controllers, and a monitoring unit (control unit). The method comprises sending a diagnostic information from the central unit to a top processor of the plurality of processors, transmitting a return information from the top processor of the plurality of processors to the central unit, comparing the diagnostic information sent from the central unit with the return information received by the central unit, and indicating a communication problem if the diagnostic information sent from the central unit is different from the return information received by the central unit. The steps are repeated by eliminating the top processor from a previous cycle and assigning a new top processor if there is no problem with the reconfigurable communication system.
    • 公开了一种用于诊断堆叠式电池的控制系统的方法。 控制系统包括多个处理器,多个控制器和监控单元(控制单元)。 该方法包括将诊断信息从中央单元发送到多个处理器的顶部处理器,从多个处理器的顶部处理器向中央单元发送返回信息,将从中央单元发送的诊断信息与 返回由中央单元接收的信息,并且如果从中央单元发送的诊断信息与由中央单元接收到的返回信息不同,则指示通信问题。 如果在可重新配置的通信系统中没有问题,则通过从上一个循环中消除顶部处理器并分配新的顶部处理器来重复这些步骤。
    • 4. 发明授权
    • Flexible bus architecture for monitoring and control of battery pack
    • 灵活的总线架构,用于监控和控制电池组
    • US08015452B2
    • 2011-09-06
    • US12872432
    • 2010-08-31
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/00
    • H02J7/0021G06F11/221Y02T10/7055
    • The present invention provides a control system which is used for a stacked battery of a plurality of battery packs. Each battery pack has a plurality of battery cells coupled in series. The control system is capable of reconfiguring communication among the battery packs in the stacked battery, and comprises a plurality of processors, a plurality of controllers, and a monitoring unit. The processors are coupled to the battery packs. Two adjacent processors among the processors are able to communicate with each other though a first bus. The controllers are coupled to the battery packs. Two adjacent controllers among the controllers are able to communicate with each other through a second bus. The processors are capable of communicating with the controllers through a third bus. The monitoring unit is used for monitoring communications among the plurality of processors and communications among the plurality of controllers. The monitoring unit is capable of detecting communication problems on the first bus and/or the second bus. The monitoring unit further is capable of reconfiguring communication paths among the plurality of processors and communication path among the plurality of controllers.
    • 本发明提供一种用于多个电池组的堆叠电池的控制系统。 每个电池组具有串联耦合的多个电池单元。 控制系统能够重新配置堆叠电池中的电池组之间的通信,并且包括多个处理器,多个控制器和监视单元。 处理器耦合到电池组。 处理器中的两个相邻处理器能够通过第一总线彼此通信。 控制器耦合到电池组。 控制器中的两个相邻控制器能够通过第二总线相互通信。 处理器能够通过第三总线与控制器进行通信。 监视单元用于监视多个处理器之间的通信和多个控制器之间的通信。 监视单元能够检测第一总线和/或第二总线上的通信问题。 监视单元还能够重新配置多个处理器之间的通信路径和多个控制器之间的通信路径。
    • 5. 发明申请
    • FLEXIBLE BUS ARCHITECTURE FOR MONITORING AND CONTROL OF BATTERY PACK
    • 灵活的总线结构,用于监控和控制电池组
    • US20110239053A1
    • 2011-09-29
    • US13154736
    • 2011-06-07
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/16G05B11/01
    • H02J7/0021G06F11/221Y02T10/7055
    • A method for diagnosing a control system for a stacked battery is disclosed. The control system comprises a plurality of processors, a plurality of controllers, and a monitoring unit (control unit). The method comprises sending a diagnostic information from the central unit to a top processor of the plurality of processors, transmitting a return information from the top processor of the plurality of processors to the central unit, comparing the diagnostic information sent from the central unit with the return information received by the central unit, and indicating a communication problem if the diagnostic information sent from the central unit is different from the return information received by the central unit. The steps are repeated by eliminating the top processor from a previous cycle and assigning a new top processor if there is no problem with the reconfigurable communication system.
    • 公开了一种用于诊断堆叠式电池的控制系统的方法。 控制系统包括多个处理器,多个控制器和监控单元(控制单元)。 该方法包括将诊断信息从中央单元发送到多个处理器的顶部处理器,从多个处理器的顶部处理器向中央单元发送返回信息,将从中央单元发送的诊断信息与 返回由中央单元接收的信息,并且如果从中央单元发送的诊断信息与由中央单元接收到的返回信息不同,则指示通信问题。 如果在可重新配置的通信系统中没有问题,则通过从上一个循环中消除顶部处理器并分配新的顶部处理器来重复这些步骤。
    • 6. 发明申请
    • Flexible Bus Architecture for Monitoring and Control of Battery Pack
    • 用于监测和控制电池组的灵活总线架构
    • US20120303997A1
    • 2012-11-29
    • US13572193
    • 2012-08-10
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • Guoxing LiXiaojun ZengAnquan XiaoXiaohua Hou
    • G06F11/20
    • H02J7/0021G06F11/221Y02T10/7055
    • A method for diagnosing a control system for a stacked battery. The control system comprises a plurality of processors, a plurality of controllers, and a monitoring unit (control unit). The method comprises sending a diagnostic information from the central unit to a top processor of the plurality of processors, transmitting a return information from the top processor of the plurality of processors to the central unit, comparing the diagnostic information sent from the central unit with the return information received by the central unit, and indicating a communication problem if the diagnostic information sent from the central unit is different from the return information received by the central unit. The steps are repeated by eliminating the top processor from a previous cycle and assigning a new top processor if there is no problem with the reconfigurable communication system.
    • 一种用于诊断堆叠式电池的控制系统的方法。 控制系统包括多个处理器,多个控制器和监控单元(控制单元)。 该方法包括将诊断信息从中央单元发送到多个处理器的顶部处理器,从多个处理器的顶部处理器向中央单元发送返回信息,将从中央单元发送的诊断信息与 返回由中央单元接收的信息,并且如果从中央单元发送的诊断信息与由中央单元接收到的返回信息不同,则指示通信问题。 如果在可重新配置的通信系统中没有问题,则通过从上一个循环中消除顶部处理器并分配新的顶部处理器来重复这些步骤。
    • 9. 发明授权
    • Assigning addresses to multiple cascade battery modules in electric or electric hybrid vehicles
    • 为电动或电动混合动力车辆中的多个级联电池模块分配地址
    • US08525477B2
    • 2013-09-03
    • US12836632
    • 2010-07-15
    • Xiaojun ZengFalong LiGuoxing Li
    • Xiaojun ZengFalong LiGuoxing Li
    • H02J7/00
    • H02J7/0021B60L11/1853B60L11/1864G01R31/007G01R31/3658G01R31/3689G01R31/3696H01M10/425H01M10/482H01M2010/4278Y02T10/7011Y02T10/7055Y02T10/7061Y10T307/696
    • According to one aspect there is disclosed an apparatus. The apparatus may include a first battery module. The first battery module may include a switch configured to open or close a first current path from a first terminal of a battery to a second terminal of the battery when a second battery module is coupled to the first battery module; a current sensor configured to sense a current in a second current path, the second current path different from the first current path; and a local controller configured to control a state of the switch to open or close the switch, wherein closing the switch is configured to close the first current path, the local controller is further configured to detect the sensed current in the second current path, and the local controller is further configured to receive and store an identifier based at least in part on the current detected in the second current path.
    • 根据一个方面,公开了一种装置。 该装置可以包括第一电池模块。 第一电池模块可以包括开关,其被配置为当第二电池模块耦合到第一电池模块时,打开或关闭从电池的第一端子到电池的第二端子的第一电流路径; 电流传感器,被配置为感测第二电流路径中的电流,所述第二电流路径不同于所述第一电流路径; 以及本地控制器,其被配置为控制所述开关的状态以打开或关闭所述开关,其中闭合所述开关被配置为闭合所述第一电流路径,所述本地控制器还被配置为检测所述第二电流路径中的感测电流,以及 本地控制器还被配置为至少部分地基于在第二当前路径中检测到的电流来接收和存储标识符。