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    • 1. 发明申请
    • Lightweight highly available infrastructure to trace program execution
    • 轻量级高可用性的基础架构跟踪程序执行
    • US20070006165A1
    • 2007-01-04
    • US11173675
    • 2005-07-01
    • Ivan LamSunil KumarAlok Srivastava
    • Ivan LamSunil KumarAlok Srivastava
    • G06F9/44
    • G06F11/3471G06F11/3636
    • A portable tracing utility provides trace configuration, trace instrumentation and trace management functionality for single or multithreaded programs. Through various application programming interfaces (“APIs”) of the tracing utility, a client may control tracing behavior to setup in-memory data structures for storing trace records that record the program's history of execution or to alter the granularity of execution history being traced. The trace behavior can be modified during the life of a program by using the APIs, either dynamically when the program assumes certain states, or through remote procedure calls issued by, for example, an external interface. Programs are instrumented with these APIs to record the history of execution, which during execution of the program is stored in circular in-memory buffers.
    • 便携式跟踪实用程序为单个或多线程程序提供跟踪配置,跟踪检测和跟踪管理功能。 通过跟踪实用程序的各种应用程序编程接口(“API”),客户端可以控制跟踪行为来设置内存中的数据结构,以存储跟踪记录,记录程序的执行历史或更改正在跟踪的执行历史的粒度。 跟踪行为可以在程序生命周期内通过使用API​​进行修改,或者通过例如外部接口发出的远程过程调用,动态执行某些状态。 使用这些API对程序进行测试,以记录执行历史,在执行程序期间将其存储在循环内存缓冲区中。
    • 5. 发明申请
    • GENOMIC/PROTEOMIC SEQUENCE REPRESENTATION, VISUALIZATION, COMPARISON AND REPORTING USING BIOINFORMATICS CHARACTER SET AND MAPPED BIOINFORMATICS FONT
    • 基因/保护性序列表示,可视化,比较和报告使用生物特征字符集和映射生物素FONT
    • US20140229114A1
    • 2014-08-14
    • US14131038
    • 2012-07-04
    • Randeep SinghSunil KumarBiswaroop Chakrabarti
    • Randeep SinghSunil KumarBiswaroop Chakrabarti
    • G06F19/26G06F19/22
    • Genomic or proteomic data are encoded as a genomic or proteomic character string comprising characters of a bioinformatics character set (20). Each base or peptide of the genomic or proteomic data is represented by a single character of the bioinformatics character set, and each character of the bioinformatics character set encodes (I) a base or peptide and (II) at least one annotated datum value associated with the base or peptide. The genomic or proteomic data are displayed by displaying the genomic or proteomic character string using a bioinformatics font (40) mapped to the bioinformatics character set. At least one string function may be performed on the genomic or proteomic character string to generate an updated genomic or proteomic character string in which at least one base or peptide is represented by a single character encoding at least one additional or modified annotated datum generated by the performed string manipulation.
    • 基因组或蛋白质组学数据被编码为包含生物信息学角色集(20)的字符的基因组或蛋白质组学字符串。 基因组或蛋白质组学数据的每个碱基或肽由生物信息学特征集的单个特征表示,并且生物信息学特征集的每个特征编码(I)碱基或肽,和(II)至少一个注释基准值 碱或肽。 通过使用映射到生物信息学字符集的生物信息学字体(40)显示基因组或蛋白质组学字符串来显示基因组或蛋白质组学数据。 可以对基因组或蛋白质组学字符串执行至少一个字符串函数以产生更新的基因组或蛋白质组学字符串,其中至少一个碱基或肽由编码至少一个附加或修饰的注释基准的单个字符表示,所述单个字符由 执行字符串操作。
    • 6. 发明申请
    • DISTRIBUTED SENSORS TO MEASURE CEMENT STATE
    • 分布式传感器测量水泥状态
    • US20130002268A1
    • 2013-01-03
    • US13173668
    • 2011-06-30
    • Sunil KumarJoerg Lehr
    • Sunil KumarJoerg Lehr
    • G01R27/26
    • G01N33/383E21B47/0005
    • A system for determining a curing state for cement disposed in a borehole penetrating the earth that includes a transceiver that includes a transmitting coil and that is configured to provide an input signal to the coil that sweeps through a frequency range and to measure the magnitude of the voltage across the coil. The system also includes a plurality of sensor nodes disposed in the concrete. The sensor nodes include a receiving coil and a capacitor coupled to the receiving coil to form a receiving circuit and that has a capacitance that changes as one of pressure or strain in the cement changes.
    • 一种用于确定设置在穿透地球的钻孔中的水泥的固化状态的系统,其包括收发器,所述收发器包括发射线圈,并且被配置为向线圈提供扫描频率范围的输入信号并且测量 线圈两端的电压 该系统还包括设置在混凝土中的多个传感器节点。 传感器节点包括接收线圈和耦合到接收线圈的电容器,以形成接收电路,并且具有随着水泥中压力或应变之一变化而变化的电容。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATIC GENERATION AND USAGE OF FLUID FLOW LOSS COEFFICIENTS FOR T-JUNCTIONS
    • 用于自动生成和使用流体流动损失系数的系统和方法
    • US20120303345A1
    • 2012-11-29
    • US13479324
    • 2012-05-24
    • Sunil KumarVikram Mangat
    • Sunil KumarVikram Mangat
    • G06G7/57
    • G06F17/5018
    • A system and method for automatic generation and usage of fluid flow loss coefficients for T-junctions is disclosed. In one embodiment, a list of possible T-junctions is created using given geometric and flow parameters. Further, journal files are created using the geometric and the flow parameters associated with each T-junction. The journal files associated with each T-junction are pre-processed for creating a volume mesh. Boundary conditions and material properties for the volume mesh associated with each T-junction are defined. Simulation is performed using the volume mesh, the boundary conditions and the material properties associated with each T-junction to determine flow characteristics. Fluid flow loss coefficients for each T-junction are computed using the flow characteristics.
    • 公开了一种用于T形接头的流体流动损失系数的自动生成和使用的系统和方法。 在一个实施例中,使用给定的几何和流动参数创建可能的T形结的列表。 此外,使用与每个T形结点相关联的几何和流动参数来创建日志文件。 与每个T-junction相关联的日记文件已预处理,用于创建卷网格。 定义了与每个T形接头相关联的体积网格的边界条件和材料性质。 使用体积网格,边界条件和与每个T形结点相关联的材料性质来进行模拟以确定流动特性。 使用流动特性计算每个T形接头的流体流动损失系数。