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    • 2. 发明授权
    • Network sync planning and failure simulations
    • 网络同步规划和故障模拟
    • US08339995B2
    • 2012-12-25
    • US12635312
    • 2009-12-10
    • Kin Yee WongPeter Roberts
    • Kin Yee WongPeter Roberts
    • H04L12/28
    • H04J3/0679H04J2203/006H04J2203/0062H04L41/12H04L41/145
    • The invention is directed to a method and system for providing synchronization clock performance simulation in a timing-over-packet network having a network management system. The system retrieves information from nodes in a network and determines a timing-over-packet topology in a simulated model of the network, and determines clock stability statistics. The system further accepts simulation inputs such as addition or deletion of nodes in the simulated network, or introduction of failures into in the simulated network. The system provides predicted clock stability performance of an existing network under various simulated conditions without requiring modifications or introduction of failures to the existing network which would be useful for network optimization and network planning.
    • 本发明涉及一种用于在具有网络管理系统的分组分组网络中提供同步时钟性能仿真的方法和系统。 系统从网络中的节点检索信息,并确定网络仿真模型中的分组间时间拓扑,并确定时钟稳定性统计。 该系统进一步接受仿真输入,例如模拟网络中节点的添加或删除,或将故障引入到模拟网络中。 该系统在各种模拟条件下提供现有网络的预测时钟稳定性能,而不需要修改或引入对现有网络的故障,这对于网络优化和网络规划将是有用的。
    • 3. 发明申请
    • Method and Apparatus for Acquisition, Compression, and Characterization of Spatiotemporal Signals
    • 时空信号采集,压缩和表征的方法与装置
    • US20100104203A1
    • 2010-04-29
    • US12652907
    • 2010-01-06
    • Arman M. GarakaniAndrew A. HackPeter RobertsSean Walter
    • Arman M. GarakaniAndrew A. HackPeter RobertsSean Walter
    • G06K9/62
    • G06K9/0014G06K9/00711G06T7/20G06T2207/30004
    • The present invention provides methods and apparatus for acquisition, compression, and characterization of spatiotemporal signals. In one aspect, the invention assesses self-similarity over the entire length of a spatiotemporal signal, as well as on a moving attention window, to provide cost effective measurement and quantification of dynamic processes. The invention also provides methods and apparatus for measuring self-similarity in spatiotemporal signals to characterize, adaptively control acquisition and/or storage, and assign meta-data for further detail processing. In some embodiments, the invention provides for an apparatus adapted for the characterization of biological units, and methods by which attributes of the biological units can be monitored in response to the addition or removal of manipulations, e.g., treatments. The attributes of biological units can be used to characterize the effects of the abovementioned manipulations or treatments as well as to identify genes or proteins responsible for, or contributing to, these effects.
    • 本发明提供了用于采集,压缩和表征时空信号的方法和装置。 在一个方面,本发明评估时空信号的整个长度上的自相似性以及移动注意窗口,以提供动态过程的成本有效的测量和量化。 本发明还提供了用于测量时空信号中的自相似性以表征,自适应地控制采集和/或存储以及分配元数据以进一步详细处理的方法和装置。 在一些实施方案中,本发明提供适用于表征生物单元的装置,以及响应于操作的添加或除去(例如处理)可以监测生物单元的属性的方法。 生物单位的属性可以用于表征上述操作或处理的效果,以及鉴定负责或有助于这些效果的基因或蛋白质。
    • 4. 发明授权
    • Method and apparatus for acquisition, compression, and characterization of spatiotemporal signals
    • 用于采集,压缩和表征时空信号的方法和装置
    • US07672369B2
    • 2010-03-02
    • US10366756
    • 2003-02-13
    • Arman M. GarakaniAndrew A. HackPeter RobertsSean Walter
    • Arman M. GarakaniAndrew A. HackPeter RobertsSean Walter
    • H04N7/12H04N11/02H04N11/04H04B1/66
    • G06K9/0014G06K9/00711G06T7/20G06T2207/30004
    • The present invention provides methods and apparatus for acquisition, compression, and characterization of spatiotemporal signals. In one aspect, the invention assesses self-similarity over the entire length of a spatiotemporal signal, as well as on a moving attention window, to provide cost effective measurement and quantification of dynamic processes. The invention also provides methods and apparatus for measuring self-similarity in spatiotemporal signals to characterize, adaptively control acquisition and/or storage, and assign meta-data for further detail processing. In some embodiments, the invention provides for an apparatus adapted for the characterization of biological units, and methods by which attributes of the biological units can be monitored in response to the addition or removal of manipulations, e.g., treatments. The attributes of biological units can be used to characterize the effects of the abovementioned manipulations or treatments as well as to identify genes or proteins responsible for, or contributing to, these effects.
    • 本发明提供了用于采集,压缩和表征时空信号的方法和装置。 在一个方面,本发明评估时空信号的整个长度上的自相似性以及移动注意窗口,以提供动态过程的成本有效的测量和量化。 本发明还提供了用于测量时空信号中的自相似性以表征,自适应地控制采集和/或存储以及分配元数据以进一步详细处理的方法和装置。 在一些实施方案中,本发明提供适用于表征生物单元的装置,以及响应于操作的添加或除去(例如处理)可以监测生物单元的属性的方法。 生物单位的属性可以用于表征上述操作或处理的效果,以及鉴定负责或有助于这些效果的基因或蛋白质。
    • 9. 发明申请
    • APPARATUS FOR GENERATING POWER FROM FLUID FLOW
    • 用于从流体流产生动力的装置
    • US20130099502A1
    • 2013-04-25
    • US13634675
    • 2011-03-16
    • Peter Roberts
    • Peter Roberts
    • F03B17/06
    • F03B17/06F03B13/08F03B13/264F03B17/063F05B2260/601Y02E10/28Y02E10/38
    • An apparatus for generating electricity using water flow in a body of water comprises: an array of spaced apart elements. Each element defines an elongate flow passage and has an upstream side and an elongate downstream side, each element being provided with a series of holes spaced along its length and the downstream side extending and tapering away in the direction of flow. The elements are arranged side by side such that opposing walls of adjacent elements define a venturi section and a first diffuser section extending downstream from the venturi section. The apparatus also comprises: a flow conduit having an inlet and an outlet; a turbine located in the flow conduit; and a generator connected to the turbine; The flow passages are connected to the outlet of the flow conduit such that the flow of water through the venturi sections causes water to be drawn through the flow conduit out via the holes the resulting flow driving the turbine.
    • 在水体中使用水流发电的装置包括:间隔开的元件阵列。 每个元件限定细长的流动通道并且具有上游侧和细长的下游侧,每个元件设置有沿其长度间隔开的一系列孔,并且下游侧在流动方向上延伸和渐缩。 这些元件并排布置,使得相邻元件的相对壁限定文氏管部分和从文氏管部分延伸下游延伸的第一扩散器部分。 所述设备还包括:具有入口和出口的流动管道; 位于流动管道中的涡轮机; 和连接到所述涡轮机的发电机; 流动通道连接到流动管道的出口,使得通过文丘里管部分的水流使得水通过流动管道通过孔排出,从而驱动涡轮。
    • 10. 发明授权
    • Tools that facilitate diagnostics for mobile backhaul networks
    • 便于移动回程网络诊断的工具
    • US08351337B2
    • 2013-01-08
    • US12266705
    • 2008-11-07
    • Hakki CankayaKamakshi SridharPeter Roberts
    • Hakki CankayaKamakshi SridharPeter Roberts
    • G01R31/08
    • H04L41/5016H04L41/0654H04W24/02H04W92/12
    • A diagnostic tool is provided for calculating the availability of multi-segment pseudowires within an internet protocol (IP)-based mobile backhaul network. A control message is transmitted from an originating node towards a destination node within the IP-based mobile backhaul network over a primary multi-segment pseudowire and a secondary multi-segment pseudowire. From the response messages received from intermediate nodes positioned between the network node and the destination node along the primary multi-segment pseudowire and the secondary multi-segment psuedowire, the originating node determines the identities of each of the intermediate nodes, and calculates a respective individual availability of the primary multi-segment pseudowire and the secondary multi-segment pseudowire.
    • 提供了一种诊断工具,用于计算基于互联网协议(IP)的移动回程网络内的多段伪线的可用性。 控制消息通过主多段伪线和次级多段伪线从始发节点向基于IP的移动回程网络内的目的地节点发送。 从根据主多段伪线和次级多段伪线的位于网络节点和目的地节点之间的中间节点接收到的响应消息,发起节点确定每个中间节点的身份,并计算相应的个体 主要多段伪线和次级多段伪线的可用性。