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    • 3. 发明授权
    • Method and system for deploying an optical demodulator arrangement in a communications network
    • 在通信网络中部署光解调器装置的方法和系统
    • US08548338B2
    • 2013-10-01
    • US12906554
    • 2010-10-18
    • Nicholas John DoranDonald Scott GovanBrian Garrett
    • Nicholas John DoranDonald Scott GovanBrian Garrett
    • H04B10/06
    • H04J14/02H04B10/677
    • The present application describes methods and systems for use in a communications network. More specifically, a method of deploying an optical demodulator arrangement having at least one interferometer in a network that transmits an optical signal is provided. The optical signal may include one or more on-off-keyed signals and one or more DMPSK signals. In some embodiments, the DMPSK signal is a DQPSK signal. The network may include one or more of fiber spans carrying the signals. The interferometer may have a first optical path and a second optical path and a time delay is formed between the first and second optical paths. The method may involve determining a cross-talk penalty that results from cross-phase modulation between the channels, and determining a time delay value for the interferometer. The time delay value may be determined based at least in part on determined the cross-talk penalty.
    • 本申请描述了在通信网络中使用的方法和系统。 更具体地,提供了一种在发送光信号的网络中部署具有至少一个干涉仪的光解调器装置的方法。 光信号可以包括一个或多个开 - 关键信号和一个或多个DMPSK信号。 在一些实施例中,DMPSK信号是DQPSK信号。 网络可以包括承载信号的一个或多个光纤跨段。 干涉仪可以具有第一光路和第二光路,并且在第一和第二光路之间形成时间延迟。 该方法可以包括确定由通道之间的交叉相位调制产生的串扰损失,以及确定干涉仪的时间延迟值。 时间延迟值可以至少部分地基于确定的串扰损失来确定。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR AFFINITY DISPATCHING FOR TASK MANAGEMENT IN AN EMULATED MULTIPROCESSOR ENVIRONMENT
    • 用于模拟多处理器环境中任务管理的紧急调度的系统和方法
    • US20120072908A1
    • 2012-03-22
    • US12886969
    • 2010-09-21
    • David W. SchrothBrian GarrettAndrew T. JenningsMichael John Rieschi
    • David W. SchrothBrian GarrettAndrew T. JenningsMichael John Rieschi
    • G06F9/46
    • G06F9/5033G06F9/455
    • The disclosure relates generally to managing assignment of tasks among instruction processors (IPs) within a computer system having multiple IPs, and more particularly to binding emulated IPs with a host system's IPs (e.g., processor cores) for facilitating control over affinity-based assignment of tasks among the host system's IPs by a task manager (e.g., OS) that is executing on the emulated IPs, rather than running directly on the host system's IPs. Certain embodiments provide techniques for binding emulated IPs with actual IPs of a computing system that is hosting the emulated IPs, thereby enabling better control of management of the system by a task manager executing on the emulated IPs. For instance, in certain embodiments, a dispatcher (e.g., of an OS running on emulated IPs) performs affinity-based management of task assignment for tasks performed for an application program among IPs of a host system that is hosting the emulated IPs.
    • 本公开一般涉及管理具有多个IP的计算机系统内的指令处理器(IP)中的任务的分配,更具体地说,涉及将仿真IP与主机系统的IP(例如,处理器核)绑定在一起,以便于对基于亲和力的分配进行控制 任务管理器(例如OS)在主机系统的IP之间执行任务,而不是直接在主机系统的IP上运行。 某些实施例提供了用于将仿真的IP与承载仿真IP的计算系统的实际IP绑定的技术,从而能够更好地控制由仿真IP执行的任务管理器对系统的管理。 例如,在某些实施例中,调度员(例如,在仿真IP上运行的OS)对承载仿真IP的主机系统的IP之间的应用程序执行的任务执行基于关系的对任务分配的管理。
    • 6. 发明授权
    • Data input/output (I/O) handling for computer network communications links
    • 计算机网络通信链路的数据输入/输出(I / O)处理
    • US09594707B2
    • 2017-03-14
    • US14474745
    • 2014-09-02
    • Michael J HeidemanE. Brian GarrettSteven M WierdsmaCarl R Crandall
    • Michael J HeidemanE. Brian GarrettSteven M WierdsmaCarl R Crandall
    • G06F13/28
    • G06F13/28
    • Systems and methods for performing data input/output (I/O) operations using a computer network communications link are described. A method may include assigning a block of virtual addresses for usage with at least one computer network communications link. The method may also include registering the entire block of virtual addresses prior to an operating system partition performing I/O operations using the at least one computer network communications link, wherein registering comprises setting a plurality of virtual page frame numbers of the block of virtual addresses to point to distinct pages of physical memory. In some embodiments, one or more I/O operations may be performed using the at least one computer network communications link and the registered block of virtual addresses.
    • 描述使用计算机网络通信链路执行数据输入/输出(I / O)操作的系统和方法。 方法可以包括为至少一个计算机网络通信链路分配用于使用的虚拟地址块。 该方法还可以包括在使用至少一个计算机网络通信链路执行I / O操作的操作系统分区之前注册整个虚拟地址块,其中注册包括设置虚拟地址块的多个虚拟页面帧号码 指向物理内存的不同页面。 在一些实施例中,可以使用至少一个计算机网络通信链路和注册的虚拟地址块来执行一个或多个I / O操作。
    • 8. 发明授权
    • System and method for affinity dispatching for task management in an emulated multiprocessor environment
    • 用于仿真多处理器环境中任务管理的亲和调度的系统和方法
    • US08661435B2
    • 2014-02-25
    • US12886969
    • 2010-09-21
    • David W. SchrothBrian GarrettAndrew T. JenningsMichael John Rieschi
    • David W. SchrothBrian GarrettAndrew T. JenningsMichael John Rieschi
    • G06F9/455
    • G06F9/5033G06F9/455
    • The disclosure relates generally to managing assignment of tasks among instruction processors (IPs) within a computer system having multiple IPs, and more particularly to binding emulated IPs with a host system's IPs (e.g., processor cores) for facilitating control over affinity-based assignment of tasks among the host system's IPs by a task manager (e.g., OS) that is executing on the emulated IPs, rather than running directly on the host system's IPs. Certain embodiments provide techniques for binding emulated IPs with actual IPs of a computing system that is hosting the emulated IPs, thereby enabling better control of management of the system by a task manager executing on the emulated IPs. For instance, in certain embodiments, a dispatcher (e.g., of an OS running on emulated IPs) performs affinity-based management of task assignment for tasks performed for an application program among IPs of a host system that is hosting the emulated IPs.
    • 本公开一般涉及管理具有多个IP的计算机系统内的指令处理器(IP)中的任务的分配,更具体地说,涉及将仿真IP与主机系统的IP(例如,处理器核)绑定在一起,以便于对基于亲和力的分配进行控制 任务管理器(例如OS)在主机系统的IP之间执行任务,而不是直接在主机系统的IP上运行。 某些实施例提供了用于将仿真的IP与承载仿真IP的计算系统的实际IP绑定的技术,从而能够更好地控制由仿真IP执行的任务管理器对系统的管理。 例如,在某些实施例中,调度员(例如,在仿真IP上运行的OS)对承载仿真IP的主机系统的IP之间的应用程序执行的任务执行基于关系的对任务分配的管理。