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    • 13. 发明授权
    • Method and system for a common rail fuel system
    • 共轨燃油系统的方法和系统
    • US08511275B2
    • 2013-08-20
    • US12896377
    • 2010-10-01
    • Paul Gerard NistlerShawn GallagherNeil BlytheLuke Henry
    • Paul Gerard NistlerShawn GallagherNeil BlytheLuke Henry
    • F02B77/08
    • F02D41/3863F02D2041/224
    • In one embodiment, a common rail fuel system for an engine of a vehicle, such as a locomotive, comprises a higher-pressure fuel sub-system and a lower-pressure fuel sub-system, wherein a pressure limiting valve, is in fluid communication with to the higher-pressure fuel sub-system to relieve excess pressure. In a condition where pressure of the higher-pressure fuel sub-system is below a desired and expected threshold, it is possible that the pressure limiting valve is open. An example method is provided to close the pressure limiting valve and determine if opening of the pressure limiting valve is the cause of the pressure being below the threshold or if a leak is present in the common rail fuel system. In this manner, unnecessary disabling of the engine is avoided and, if a leak is present, the leaking sub-system is identified.
    • 在一个实施例中,用于诸如机车的车辆的发动机的共轨燃料系统包括高压燃料子系统和低压燃料子系统,其中限压阀处于流体连通 与更高压的燃料子系统,以减轻过压。 在高压燃料分系统的压力低于期望和预期的阈值的情况下,压力限制阀可能是打开的。 提供了一种示例性方法来关闭压力限制阀并且确定压力限制阀的打开是否是压力低于阈值的原因,或者如果共轨燃料系统中存在泄漏。 以这种方式,避免了不必要的发动机的停用,并且如果存在泄漏,则识别泄漏的子系统。
    • 14. 发明申请
    • METHOD AND SYSTEM FOR A COMMON RAIL FUEL SYSTEM
    • 普通铁路燃料系统的方法与系统
    • US20120080010A1
    • 2012-04-05
    • US12896377
    • 2010-10-01
    • Paul Gerard NistlerShawn GallagherNeil BlytheLuke Henry
    • Paul Gerard NistlerShawn GallagherNeil BlytheLuke Henry
    • F02M63/02F02D41/38F02M37/04
    • F02D41/3863F02D2041/224
    • In one embodiment, a common rail fuel system for an engine of a vehicle, such as a locomotive, comprises a higher-pressure fuel sub-system and a lower-pressure fuel sub-system, wherein a pressure limiting valve, is in fluid communication with to the higher-pressure fuel sub-system to relieve excess pressure. In a condition where pressure of the higher-pressure fuel sub-system is below a desired and expected threshold, it is possible that the pressure limiting valve is open. An example method is provided to close the pressure limiting valve and determine if opening of the pressure limiting valve is the cause of the pressure being below the threshold or if a leak is present in the common rail fuel system. In this manner, unnecessary disabling of the engine is avoided and, if a leak is present, the leaking sub-system is identified.
    • 在一个实施例中,用于诸如机车的车辆的发动机的共轨燃料系统包括高压燃料子系统和低压燃料子系统,其中限压阀处于流体连通 与更高压的燃料子系统,以减轻过压。 在高压燃料分系统的压力低于期望和预期的阈值的情况下,压力限制阀可能是打开的。 提供了一种示例性方法来关闭压力限制阀并且确定压力限制阀的打开是否是压力低于阈值的原因,或者如果共轨燃料系统中存在泄漏。 以这种方式,避免了不必要的发动机的停用,并且如果存在泄漏,则识别泄漏的子系统。
    • 15. 发明授权
    • Burst pulse circuit for signal lights and method
    • 脉冲脉冲电路用于信号灯和方法
    • US07639219B2
    • 2009-12-29
    • US11343645
    • 2006-01-30
    • Shawn GallagherMatthew JohnsonTimothy Zink
    • Shawn GallagherMatthew JohnsonTimothy Zink
    • G09G3/32
    • H05B33/0842H05B33/0803H05B33/0818
    • A circuit is provided for over-driving a super-luminescent light emitting diode having a maximum forward continuous current rating. A power supply provides a pulse width modulated signal to an analog memory connected to the power supply and a pulse generator. The pulse generator includes a window comparator engaged with the analog memory, and is responsive to a portion of the pulse width modulated signal. A power driver that is controlled by the output of the pulse generator, is operably connected with the super-luminescent light emitting diode and with the power supply so as to energize the super-luminescent light emitting diode with a current that is above the maximum forward continuous current rating by between two and ten times that rated current. A signal is also provided along with a method of over-driving a super-luminescent light emitting diode.
    • 提供一种用于过驱动具有最大正向连续电流额定值的超发光发光二极管的电路。 电源向连接到电源的模拟存储器和脉冲发生器提供脉宽调制信号。 脉冲发生器包括与模拟存储器接合的窗口比较器,并且响应脉冲宽度调制信号的一部分。 由脉冲发生器的输出控制的功率驱动器与超发光发光二极管和电源可操作地连接,以便以超过最大向前的电流激励超发光发光二极管 连续额定电流为额定电流的两倍和十倍。 还提供了一种过驱动超发光发光二极管的方法。
    • 17. 发明申请
    • BAROMETRIC PRESSURE DIESEL TIMING CONTROLLER
    • 巴氏压力柴油时序控制器
    • US20060144364A1
    • 2006-07-06
    • US11031571
    • 2005-01-06
    • Shawn GallagherEric Dillen
    • Shawn GallagherEric Dillen
    • F02D7/00
    • F02D41/401F02B3/06F02B29/0412F02B29/0437F02B37/00F02D41/0007F02D2200/0406Y02T10/44
    • A fuel injection timing control system for diesel engines operating at high altitude, including a sensor for a parameter of the engine intake air, such as engine intake air pressure or turbocharger speed. This sensor communicates with a barometric pressure timing controller, and a throttle position sensor communicates with the barometric pressure timing controller. Nominal values of the engine intake air parameter at various throttle notch settings and various engine performance parameters are stored in a table, for a nominal barometric pressure. The barometric pressure timing controller determines the instantaneous barometric pressure by adjusting the nominal barometric pressure based on the difference between the instantaneous value for the engine intake air parameter and the nominal value for the engine intake air parameter, at the known throttle notch setting and the known engine performance parameters. The barometric pressure timing controller then adjusts fuel injection timing in response to the thusly determined barometric pressure and the sensed throttle position, by advancing or retarding the fuel injection timing by predetermined values as the barometric pressure or the throttle position changes. The predetermined values of fuel injection timing are selected to reduce exhaust emissions and increase engine efficiency and performance under various barometric pressure conditions so that the engine may be operated continually and optimally under various barometric pressure conditions.
    • 一种用于在高空作业的柴油发动机的燃料喷射正时控制系统,包括用于发动机进气的参数的传感器,例如发动机进气压力或涡轮增压器速度。 该传感器与大气压力定时控制器通信,节气门位置传感器与大气压力定时控制器通信。 在各种节气门缺口设置和各种发动机性能参数下的发动机进气参数的标称值存储在表中,用于标称气压。 大气压力定时控制器通过基于发动机进气参数的瞬时值与发动机进气参数的额定值之间的差值,在已知的节气门缺口设置和已知的压力定时控制器来确定瞬时大气压力 发动机性能参数。 然后,大气压力定时控制器响应于如此确定的大气压力和感测到的节气门位置,通过随着气压或节气门位置的变化将燃料喷射正时推进或延迟预定值来调整燃料喷射正时。 选择燃料喷射正时的预定值以减少废气排放并且在各种大气压力条件下提高发动机效率和性能,使得发动机可以在各种大气压力条件下连续和最佳地操作。
    • 18. 发明授权
    • Method and apparatus for interconnecting network devices in a networking
hub
    • 用于互连网络集线器中的网络设备的方法和装置
    • US5675735A
    • 1997-10-07
    • US608911
    • 1996-02-29
    • Shawn GallagherJames Scott HiscockDahai DingScott D'Edwine Lawrence
    • Shawn GallagherJames Scott HiscockDahai DingScott D'Edwine Lawrence
    • H04L12/24H04L12/44H04L12/56G06F13/00
    • H04L12/44H04L41/046H04L41/24H04L2012/5616H04L2012/5626H04L41/0816
    • A system for interconnecting line cards attached to a networking hub is disclosed. The disclosed system operates by forming backplane networks between the line cards using shared data path resources within the hub. Each line card attached with the hub describes its hub internal networking characteristics and capabilities. A hub management agent obtains the specific capabilities and characteristics of each line card attached to the networking hub, from each of the line cards. The characteristics and capabilities of each line card include which of the shared data path resources are accessible to the line card, and how the line card is able to operate on those accessible shared data path resources. The capabilities and characteristics of the line cards are obtained by the management agent requesting each line card for the information. The request is initiated by a triggering event, for example power-up of the networking hub or attachment of a new line card to the networking hub. The management agent obtains the characteristics and capabilities of the line cards attached to the networking hub, and then backplane networks are created in response to requests received from a network management station.
    • 公开了一种用于互连连接到网络集线器的线路卡的系统。 所公开的系统通过在集线器内使用共享数据路径资源在线路卡之间形成背板网络而工作。 与集线器连接的每个线路卡描述了其集线器内部网络特性和功能。 集线器管理代理从每个线路卡获取附加到网络集线器的每个线路卡的特定功能和特性。 每个线卡的特征和功能包括线路卡可以访问哪些共享数据路径资源,以及线路卡如何能够对这些可访问的共享数据路径资源进行操作。 管理代理请求每个线路卡获取信息的线卡的功能和特性。 该请求由触发事件发起,例如网络集线器的上电或新的线路卡连接到网络集线器。 管理代理获得附加到网络集线器的线路卡的特性和能力,然后响应于从网络管理站接收的请求创建背板网络。