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    • 31. 发明申请
    • SLIP RATE DETECTION METHOD AND DETECTION SYSTEM FOR ELECTRIC VEHICLE
    • 滑动速度检测方法及电动车辆检测系统
    • US20130253755A1
    • 2013-09-26
    • US13990125
    • 2011-07-29
    • Guoqing XuKun Xu
    • Guoqing XuKun Xu
    • G06F17/00
    • G06F17/00B60L3/10B60L11/1803B60L2220/14B60L2240/421B60L2240/423B60L2240/427B60L2240/429Y02T10/642Y02T10/70Y02T10/7005
    • A slip rate detection method and a detection system for detecting the slip rate of an electric vehicle using the method. The slip rate of an electric vehicle is measured by measuring the motor voltage, motor current, and motor rotational speed of the drive motor. The detection system includes a motor rotational speed detection unit, a motor voltage detection unit, and a motor current detection unit, all connected to the drive motor. The motor rotational speed detection unit, the motor voltage detection unit, and the motor current detection unit are connected to a slip rate calculation unit by means of a motor rotational speed signal processing unit, a voltage signal processing unit, and a current signal processing unit, respectively. The slip rate calculation unit is configured with a slip rate calculation formula. The formula is determined according to the drive motor type.
    • 一种滑移率检测方法和用于使用该方法检测电动车辆的滑移率的检测系统。 通过测量驱动电动机的电动机电压,电动机电流和电动机转速来测量电动车辆的滑移率。 检测系统包括电动机转速检测单元,电动机电压检测单元和电动机电流检测单元,其全部连接到驱动电动机。 马达转速检测单元,电动机电压检测单元和电动机电流检测单元通过电动机转速信号处理单元,电压信号处理单元和电流信号处理单元连接到滑差率计算单元 , 分别。 滑差率计算单元配置有滑差率计算公式。 公式根据驱动电机类型确定。
    • 32. 发明授权
    • Trace buffer with a processor
    • 具有处理器的跟踪缓冲区
    • US08291417B2
    • 2012-10-16
    • US11530051
    • 2006-09-08
    • Kun XuJen-Tien Yen
    • Kun XuJen-Tien Yen
    • G06F9/46G06F11/00G06F3/00
    • G06F11/3476G06F11/3466G06F2201/87
    • A method includes storing a first transaction entry to a first software configurable storage location, storing a second transaction entry to a second software configurable storage location, determining that a first transaction indicated by the first transaction entry has occurred, determining that a second transaction indicated by the second transaction entry has occurred subsequent to the first transaction, and, in response to determining that the first transaction occurred and the second transaction occurred, storing at least one transaction attribute captured during at least one clock cycle subsequent to the second transaction. The first and second software configurable storage locations may be located in a trace buffer, where the at least one transaction attribute is stored to the trace buffer and overwrites the first and second transaction attributes. Each transaction entry may include a dead cycle field, a consecutive transaction requirement field, and a last entry field.
    • 一种方法包括将第一交易条目存储到第一软件可配置存储位置,将第二交易条目存储到第二软件可配置存储位置,确定由第一交易条目指示的第一交易已经发生,确定由第一交易条目指示的第二交易 第二交易条目已经在第一交易之后发生,并且响应于确定第一交易发生和第二交易发生,存储在第二交易之后的至少一个时钟周期期间捕获的至少一个交易属性。 第一和第二软件可配置存储位置可以位于跟踪缓冲器中,其中至少一个事务属性被存储到跟踪缓冲器并且覆盖第一和第二事务属性。 每个交易条目可以包括死循环字段,连续交易需求字段和最后输入字段。
    • 38. 发明授权
    • System and method for assigning memory access transfers between communication channels
    • 在通信通道之间分配存储器访问传输的系统和方法
    • US09195621B2
    • 2015-11-24
    • US13838133
    • 2013-03-15
    • Kun XuTommi M. JokinenDavid B. Kramer
    • Kun XuTommi M. JokinenDavid B. Kramer
    • G06F13/16G06F13/28
    • G06F13/1631G06F13/1647G06F13/28G06F2213/16G06F2213/2806
    • A communication channel controller includes a queue, a memory map, and a scheduler. The queue to store a first memory transfer request received at the communication channel controller. The memory map stores information to identify a memory address range to be associated with a memory. The scheduler to compare a source address of the first memory transfer in the queue to the memory address range in the memory map to determine whether the source address of the first memory transfer request targets the memory, and in response allocate the first memory transfer request to a first communication channel of a plurality of communication channels in response to the first communication channel having all of its outstanding memory transactions to a common source address bank and source address page as a source address bank and a source address page of the first memory transfer request.
    • 通信信道控制器包括队列,存储器映射和调度器。 存储在通信信道控制器处接收的第一存储器传送请求的队列。 存储器映射存储用于标识与存储器相关联的存储器地址范围的信息。 调度器将队列中的第一存储器传输的源地址与存储器映射中的存储器地址范围进行比较,以确定第一存储器传送请求的源地址是否针对存储器,并且响应于将第一存储器传送请求分配给 多个通信信道的第一通信信道响应于第一通信信道具有其所有未完成的存储器事务到公共源地址组和作为源地址组的源地址页和第一存储器转移请求的源地址页 。
    • 39. 发明授权
    • Controller for managing a reset of a subset of threads in a multi-thread system
    • 用于管理多线程系统中的线程子集的重置的控制器
    • US08924784B2
    • 2014-12-30
    • US13445582
    • 2012-04-12
    • Kun XuDavid B. KramerMarie J. Sullivan
    • Kun XuDavid B. KramerMarie J. Sullivan
    • G06F11/00
    • G06F9/5022G06F11/1438G06F11/1479
    • An integrated circuit device includes a processor core, and a controller. The processor core issues a command intended for a first thread of a plurality of threads. The controller initiates de-allocates hardware resources of the controller that are allocated to the first thread during a thread reset process for the first thread, returns a specified value to the processor core in response to the first command intended for the first thread during the thread reset process, drops responses intended for the first thread from other devices during the thread reset process, completes the thread reset process in response to a determination that all expected responses intended for the first thread have been either received or dropped, and continues to issue requests to other devices in response to commands from other threads of the plurality of threads and processing corresponding responses during the thread reset process.
    • 集成电路装置包括处理器核心和控制器。 处理器核心发出用于多个线程的第一线程的命令。 在针对第一线程的线程复位过程期间,控制器启动对分配给第一线程的控制器的硬件资源的分配,响应于在线程期间针对第一线程的第一命令,将指定的值返回到处理器核心 复位过程在线程重置过程期间将针对其他设备的第一个线程的响应丢弃,响应于所有预期针对第一个线程的预期响应已被接收或丢弃的确定而完成线程重置过程,并且继续发出请求 响应于来自多个线程的其他线程的命令并且在线程重置过程期间处理对应的响应而发送到其他设备。
    • 40. 发明授权
    • Slip rate detection method and detection system for electric vehicle
    • 电动车辆滑差检测方法及检测系统
    • US08909411B2
    • 2014-12-09
    • US13990125
    • 2011-07-29
    • Guoqing XuKun Xu
    • Guoqing XuKun Xu
    • G01M17/00G06F17/00B60L3/10B60L11/18
    • G06F17/00B60L3/10B60L11/1803B60L2220/14B60L2240/421B60L2240/423B60L2240/427B60L2240/429Y02T10/642Y02T10/70Y02T10/7005
    • A slip rate detection method and a detection system for detecting the slip rate of an electric vehicle using the method. The slip rate of an electric vehicle is measured by measuring the motor voltage, motor current, and motor rotational speed of the drive motor. The detection system includes a motor rotational speed detection unit, a motor voltage detection unit, and a motor current detection unit, all connected to the drive motor. The motor rotational speed detection unit, the motor voltage detection unit, and the motor current detection unit are connected to a slip rate calculation unit by means of a motor rotational speed signal processing unit, a voltage signal processing unit, and a current signal processing unit, respectively. The slip rate calculation unit is configured with a slip rate calculation formula. The formula is determined according to the drive motor type.
    • 一种滑移率检测方法和用于使用该方法检测电动车辆的滑移率的检测系统。 通过测量驱动电动机的电动机电压,电动机电流和电动机转速来测量电动车辆的滑移率。 检测系统包括电动机转速检测单元,电动机电压检测单元和电动机电流检测单元,全部连接到驱动电动机。 马达转速检测单元,电动机电压检测单元和电动机电流检测单元通过电动机转速信号处理单元,电压信号处理单元和电流信号处理单元连接到滑差率计算单元 , 分别。 滑差率计算单元配置有滑差率计算公式。 公式根据驱动电机类型确定。