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    • 1. 发明授权
    • Result-oriented configuration of performance parameters
    • 性能参数的面向结果的配置
    • US09361008B2
    • 2016-06-07
    • US12778961
    • 2010-05-12
    • Ralph M. KlingMichael P. Dierks
    • Ralph M. KlingMichael P. Dierks
    • G06F3/048G06F3/0484G06F1/32
    • G06F3/04847G06F1/3234
    • A plurality of configuration parameters for setting a device are determined by setting one or more performance parameters. The performance parameters are end-results of configuration that a user desires to achieve by setting the configuration parameters on a device. By setting the performance parameters instead of multiple configuration parameters, the user can conveniently achieve desired performance on the device without having to try many combinations of configuration parameters. When the user sets a performance parameter value, a set of configuration parameters corresponding to the performance value is computed or retrieved. The performance parameters may be set using a user interface element such as a slider that is intuitive and easy to manipulate.
    • 通过设置一个或多个性能参数来确定用于设置设备的多个配置参数。 性能参数是用户希望通过在设备上设置配置参数来实现的配置的最终结果。 通过设置性能参数而不是多个配置参数,用户可以方便地在设备上实现所需的性能,而无需尝试许多配置参数的组合。 当用户设置性能参数值时,计算或检索与性能值对应的一组配置参数。 性能参数可以使用诸如滑块的用户界面元素设置,该滑块是直观且容易操作的。
    • 2. 发明授权
    • Enhancing reception of signals in global positioning system (GPS) receiver module
    • 增强全球定位系统(GPS)接收模块中的信号接收
    • US08665152B1
    • 2014-03-04
    • US12780798
    • 2010-05-14
    • Ralph M. KlingDarren S. LiccardoMichael J. Grimmer
    • Ralph M. KlingDarren S. LiccardoMichael J. Grimmer
    • G01S19/36H03H7/01
    • H03H7/01G01S19/36H01Q3/04H01Q3/24H01Q25/00
    • An antenna assembly for receiving the GPS signals in a global positioning system (GPS) receiver module automatically orients the antenna to better receive the GPS signals. The antenna is oriented by a positioner (e.g., a counterweight) that automatically rotates a frame on which the antenna is mounted. The GPS receiver module may also include multiple antennas oriented in different directions to maintain good reception of the GPS signals in any position. The multiple antennas are oriented in a manner so that the poor reception range an antenna is covered by other antennas. Signals from multiple antennas may be combined or chosen for processing by a GPS processor. Also, multiple GPS receiver modules may be deployed in close proximity so that wireless communication between the GPS receiver modules may be established.
    • 用于在全球定位系统(GPS)接收机模块中接收GPS信号的天线组件自动地定向天线以更好地接收GPS信号。 天线由自动旋转安装有天线的帧的定位器(例如配重)定向。 GPS接收机模块还可以包括以不同方向定向的多个天线,以保持GPS信号在任何位置的良好接收。 多个天线以使得天线被其他天线覆盖的不良接收范围的方式定向。 来自多个天线的信号可以被组合或选择用于由GPS处理器进行处理。 此外,多个GPS接收机模块可以紧密部署,以便可以建立GPS接收机模块之间的无线通信。
    • 4. 发明授权
    • Enhancing reception of signals in global positioning systems (GPS) receiver module
    • 增强全球定位系统(GPS)接收模块中的信号接收
    • US08125384B1
    • 2012-02-28
    • US12780794
    • 2010-05-14
    • Ralph M. KlingDarren S. LiccardoMichael J. Grimmer
    • Ralph M. KlingDarren S. LiccardoMichael J. Grimmer
    • H01Q3/00
    • H03H7/01G01S19/36H01Q3/04H01Q3/24H01Q25/00
    • An antenna assembly for receiving the GPS signals in a global positioning system (GPS) receiver module automatically orients the antenna to better receive the GPS signals. The antenna is oriented by a positioner (e.g., a counterweight) that automatically rotates a frame on which the antenna is mounted. The GPS receiver module may also include multiple antennas oriented in different directions to maintain good reception of the GPS signals in any position. The multiple antennas are oriented in a manner so that the poor reception range an antenna is covered by other antennas. Signals from multiple antennas may be combined or chosen for processing by a GPS processor. Also, multiple GPS receiver modules may be deployed in close proximity so that wireless communication between the GPS receiver modules may be established.
    • 用于在全球定位系统(GPS)接收机模块中接收GPS信号的天线组件自动地定向天线以更好地接收GPS信号。 天线由自动旋转安装有天线的帧的定位器(例如配重)定向。 GPS接收机模块还可以包括以不同方向定向的多个天线,以保持GPS信号在任何位置的良好接收。 多个天线以使得天线被其他天线覆盖的不良接收范围的方式定向。 来自多个天线的信号可以被组合或选择用于由GPS处理器进行处理。 此外,多个GPS接收机模块可以紧密部署,以便可以建立GPS接收机模块之间的无线通信。
    • 7. 发明授权
    • Wireless micro-electromechanical (MEMS) apparatus and method for real time characterization of motion parameters
    • 无线微机电(MEMS)装置和方法用于实时表征运动参数
    • US07515045B2
    • 2009-04-07
    • US11238241
    • 2005-09-29
    • Goutam PaulMadhav RangaswamiDevadas D. PillaiBimal DeyRalph M. Kling
    • Goutam PaulMadhav RangaswamiDevadas D. PillaiBimal DeyRalph M. Kling
    • G08B1/08
    • G08B13/10
    • A sensor package comprising a micro-electromechanical (MEMS) motion sensor, an analog-to-digital converter coupled to the MEMS motion sensor, and a wireless transceiver coupled to the analog-to-digital converter, wherein the sensor package can wirelessly communicate with one or more wireless receivers and, if present, with one or more other sensor packages. A process comprising attaching one or more sensor packages to one or more vehicles or devices (mobile or stationary), each sensor package comprising a micro-electromechanical (MEMS) motion sensor, an analog-to-digital converter coupled to the MEMS motion sensor, and a wireless transceiver coupled to the MEMS motion sensor; sensing the motion of the one or more vehicles or devices to which each sensor package is attached; and transmitting motion data from the sensor package to a wireless receiver or to another sensor package.
    • 包括微机电(MEMS)运动传感器,耦合到MEMS运动传感器的模数转换器和耦合到模数转换器的无线收发器的传感器封装,其中传感器封装可以与 一个或多个无线接收器以及如果存在的话,还具有一个或多个其它传感器封装。 一种方法,包括将一个或多个传感器封装附接到一个或多个车辆或设备(移动或固定),每个传感器封装包括微机电(MEMS)运动传感器,耦合到MEMS运动传感器的模数转换器, 以及耦合到所述MEMS运动传感器的无线收发器; 检测每个传感器封装所附着的一个或多个车辆或装置的运动; 以及将传感器封装中的运动数据传送到无线接收器或另一传感器封装。
    • 8. 发明授权
    • Apparatus and method for cycle accounting in microprocessors
    • 微处理器循环计费的装置和方法
    • US06353805B1
    • 2002-03-05
    • US09056451
    • 1998-04-07
    • Achmed R. ZahirVincent E. HummelRalph M. KlingTse-Yu Yeh
    • Achmed R. ZahirVincent E. HummelRalph M. KlingTse-Yu Yeh
    • G06F1100
    • G06F9/3867G06F11/3466
    • An apparatus and method for cycle accounting for a microprocessor are disclosed, in which a performance monitor includes a plurality of silos, a prioritizer, and a combiner. The silos receive delay reason signals from the main processor pipeline, and output staged signals. The prioritizer receives the staged signals, and outputs a plurality of prioritized signals. The combiner selectively combines various of the prioritize signals, and provides signals indicative of microprocessor performance. Each silo includes, in series, a plurality of stages, with each stage containing a single latch. The stages of the silo are synchronized with the stages of the main processor pipeline. The performance monitor operates in real-time, at the same frequency as the microprocessor, and in parallel to the main processor pipeline, and correctly accounts for buffering effects of decoupling buffers. Outputted signals include various signals indicative of microprocessor performance, for example, cache misses, branch mispredictions, and so forth, but only for those miss-events that contribute to a program's visible delay, thereby providing an accurate picture of where cycles are being wasted.
    • 公开了一种用于微处理器的循环计费的装置和方法,其中性能监视器包括多个孤岛,优先化器和组合器。 筒仓从主处理器管线接收延迟原因信号,并输出分段信号。 优先级分配器接收分级信号,并输出多个优先级信号。 组合器选择性地组合各种优先级信号,并提供指示微处理器性能的信号。 每个筒仓串联包括多个阶段,每个阶段包含单个闩锁。 筒仓的阶段与主处理器管线的阶段同步。 性能监视器以与微处理器相同的频率实时运行,并且与主处理器管道并行,并且正确地解释了去耦缓冲器的缓冲效应。 输出信号包括指示微处理器性能的各种信号,例如高速缓存未命中,分支错误预测等,但是仅用于有助于程序的可见延迟的那些未命中事件,从而提供了浪费周期的准确图像。
    • 9. 发明授权
    • Apparatus and method for cycle accounting in microprocessors
    • 微处理器循环计费的装置和方法
    • US6052802A
    • 2000-04-18
    • US1309
    • 1997-12-31
    • Achmed R. ZahirVincent E. HummelRalph M. KlingTse-Yu Yeh
    • Achmed R. ZahirVincent E. HummelRalph M. KlingTse-Yu Yeh
    • G06F9/38G06F11/34G06F11/00
    • G06F9/3867G06F11/3466
    • An apparatus and method for cycle accounting for a microprocessor are disclosed, in which a performance monitor includes a plurality of silos, a prioritizer, and a combiner. The silos receive delay reason signals from the main processor pipeline, and output staged signals. The prioritizer receives the staged signals, and outputs a plurality of prioritized signals. The combiner selectively combines various of the prioritize signals, and provides signals indicative of microprocessor performance. Each silo includes, in series, a plurality of stages, with each stage containing a single latch. The stages of the silo are synchronized with the stages of the main processor pipeline. The performance monitor operates in real-time, at the same frequency as the microprocessor, and in parallel to the main processor pipeline. Outputted signals include various signals indicative of microprocessor performance, for example, cache misses, branch mispredictions, and so forth, but only for those miss-events that contribute to a program's visible delay, thereby providing an accurate picture of where cycles are being wasted.
    • 公开了一种用于微处理器的循环计费的装置和方法,其中性能监视器包括多个孤岛,优先化器和组合器。 筒仓从主处理器管线接收延迟原因信号,并输出分段信号。 优先级分配器接收分级信号,并输出多个优先级信号。 组合器选择性地组合各种优先级信号,并提供指示微处理器性能的信号。 每个筒仓串联包括多个阶段,每个阶段包含单个闩锁。 筒仓的阶段与主处理器管线的阶段同步。 性能监视器以与微处理器相同的频率实时运行,并与主处理器管道并行运行。 输出信号包括指示微处理器性能的各种信号,例如高速缓存未命中,分支错误预测等,但是仅用于有助于程序的可见延迟的那些未命中事件,从而提供了浪费周期的准确图像。