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    • 4. 发明申请
    • SYSTEM AND METHOD FOR SUPPLY CHAIN OPTIMIZATION
    • 供应链优化的系统与方法
    • US20130138470A1
    • 2013-05-30
    • US13450524
    • 2012-04-19
    • Abhishek GoyalRajeev RanjanNikhil KumarPadmini Ramakrishna Talagavaram
    • Abhishek GoyalRajeev RanjanNikhil KumarPadmini Ramakrishna Talagavaram
    • G06Q10/06
    • G06Q10/06315G06Q10/0631G06Q10/06393G06Q10/103
    • Method and systems for supply chain optimization include identifying at least one existing system limitation associated with a high technology organization, identifying a supply chain optimization scheme enabled by an enterprise resource planning implementation for the high technology organization on the basis of the one or more system limitations, comparing one or more process flows and requirements associated with the supply chain of the high technology organization with a plurality of pre-developed process flows and requirements, deploying a pre-developed enterprise resource planning system configuration kit for the enterprise resource planning implementation; and providing a key performance indicator framework based on best practices and benchmarks relevant to the high technology organization, wherein the key performance indicator framework comprises one or more performance metrics by which the time and cost efficiency of a supply chain is measured.
    • 用于供应链优化的方法和系统包括识别与高技术组织相关联的至少一个现有系统限制,基于一个或多个系统限制来识别由高科技组织的企业资源计划实施所启用的供应链优化方案 将与高科技组织的供应链相关的一个或多个过程流程和要求与多个预先开发的流程流程和需求进行比较,为企业资源规划实施部署一个预先开发的企业资源计划系统配置工具包; 并提供基于与高科技组织相关的最佳实践和基准的关键绩效指标框架,其中关键绩效指标框架包括测量供应链的时间和成本效率的一个或多个绩效指标。
    • 5. 发明申请
    • Searching industrial component data, building industry networks, and generating and tracking design opportunities
    • 搜索工业部件数据,建立行业网络,以及生成和跟踪设计机会
    • US20060074919A1
    • 2006-04-06
    • US11200993
    • 2005-08-09
    • Sunil GroverRajeev Ranjan
    • Sunil GroverRajeev Ranjan
    • G06F17/30
    • G06Q30/02
    • Processes (and system) are disclosed for aggregation of product part number, associated description, and product parameter for a plurality of products from plurality of web sites. One embodiment includes identifying a product manufacturer web site and executing crawler to extract information from databases exposed on the manufacturer web site. Also disclosed is processes (and system) for tracking sales opportunities through a sales cycle. One embodiment includes receiving input relating to a sales opportunity from a first buyer having a first role, the input comprising requirements for the sales opportunity including predefined checkpoints and transmitting to the first buyer a request for updated information relating to the sales opportunity, the updated information corresponding to the predefined checkpoints.
    • 公开了用于从多个网站的多个产品的产品部件号,相关联的描述和产品参数的聚合的过程(和系统)。 一个实施例包括识别产品制造商网站并执行履带来从制造商网站上暴露的数据库中提取信息。 还披露了通过销售周期跟踪销售机会的流程(和系统)。 一个实施例包括从具有第一角色的第一买方接收与销售机会有关的输入,该输入包括对包括预定义检查点的销售机会的要求,并向第一买方发送与销售机会相关的更新信息的请求,更新信息 对应于预定义的检查点。
    • 7. 发明授权
    • Software package implementation sizing
    • 软件包实现大小
    • US08020147B2
    • 2011-09-13
    • US11871549
    • 2007-10-12
    • Atul ChaturvediRajeev RanjanRamPrasad Vadde
    • Atul ChaturvediRajeev RanjanRamPrasad Vadde
    • G06F9/44
    • G06F8/20
    • Implementation size of a software package implementation can be determined by determining implementation sizes of modules, determining tasks to be implemented, determining a complexity factor, and calculating the implementation size based on the modules, tasks, and complexity factor. Implementation size of a software package implementation can be determined using a sizing framework. The sizing framework can comprise a repository of modules and functionality provided by the modules, a standard album of tasks, effort information for the tasks, and a repository of complexity values. A sizing tool can determine an implementation size of a software package implementation. The sizing tool can comprise user-interface pages for receiving a selection of modules, for receiving a selection of functionality, for receiving a selection of tasks to be implemented for the software package, and for receiving a selection of complexity values. The sizing tool can calculate the implementation size based on the selections.
    • 可以通过确定模块的实现大小,确定要实现的任务,确定复杂性因素以及基于模块,任务和复杂性因素来计算实现大小来确定软件包实现的实现大小。 可以使用大小框架来确定软件包实现的实现大小。 尺寸框架可以包括由模块提供的模块和功能的存储库,任务的标准册,用于任务的努力信息以及复杂度值的存储库。 大小调整工具可以确定软件包实现的实现大小。 尺寸调整工具可以包括用于接收模块选择的用户界面页面,用于接收功能的选择,用于接收要为软件包实现的任务的选择,以及用于接收复杂度值的选择。 大小调整工具可以根据选择计算实现大小。
    • 8. 发明授权
    • Method and system for automatically positioning a mammography imaging system
    • 自动定位乳房造影成像系统的方法和系统
    • US08565373B2
    • 2013-10-22
    • US12965952
    • 2010-12-13
    • Rajeev RanjanRaja Shekhara
    • Rajeev RanjanRaja Shekhara
    • A61B6/04
    • A61B6/0414A61B6/502
    • A method and system for automatically adjusting the gantry position to the breast height level of a patient. The automated height adjustment system for mammography imaging systems having a movable gantry associated with a fixed vertical support, comprises a tracking unit for tracking a patient's breast height level during patient's initial mammography procedure; and memory for storing the tracked breast height level along with the patient identification information. The system further comprises a processor configured to access the breast height level using the patient identification information during subsequent mammography procedures for the patient; and a drive mechanism capable of automatically adjusting the height of the gantry based on the accessed breast height level.
    • 一种用于将台架位置自动调节到患者的乳房高度水平的方法和系统。 用于具有与固定垂直支撑件相关联的可移动机架的乳房X射线摄影成像系统的自动化高度调节系统包括跟踪单元,用于在患者的初始乳房X线照相术过程期间跟踪患者的乳房高度水平; 以及用于存储跟踪的乳房高度水平以及患者识别信息的存储器。 该系统还包括处理器,其被配置为使用患者识别信息在随后的患者乳房X线照相术过程中访问乳房高度水平; 以及能够基于所访问的乳房高度水平自动调节台架的高度的驱动机构。
    • 9. 发明授权
    • Software deployment system
    • 软件部署系统
    • US07950010B2
    • 2011-05-24
    • US11040311
    • 2005-01-21
    • Karl GogerAnkur BhattRaghunandan SRajeev RanjanAjay Kumar
    • Karl GogerAnkur BhattRaghunandan SRajeev RanjanAjay Kumar
    • G06F9/445G06F15/177
    • G06F8/61
    • The present invention provides a system and method for deploying software onto multiple heterogeneous systems at the same time. A generic software deployment manager may deploy software by communicating with client software deployment services residing on the systems that are receiving the software deployment. The software deployment manager can operate independent of the software and the operating system on which software is being deployed by communicating with the client software deployment service. To execute a software deployment, the software deployment manager may send software deployment messages containing generic commands that signify operations to be performed to deploy software. The client software deployment service provides an interface between the software deployment manager and the recipient system by translating these generic commands to commands that are compatible with the local operating system. The software deployment manager may transmit software deployment messages simultaneously to each of the systems within a system group or an environment so that software can be efficiently deployed without incompatibilities in the network. The software deployment manager may deploy software in Linux, Windows, Unix, Macatosh, Java, or any other operating system and may deploy any software.
    • 本发明提供了一种用于在多个异构系统上同时部署软件的系统和方法。 通用软件部署经理可以通过与驻留在正在接收软件部署的系统上的客户端软件部署服务进行通信来部署软件。 软件部署管理器可以独立于通过与客户端软件部署服务通信来部署软件的软件和操作系统。 要执行软件部署,软件部署管理员可以发送包含通用命令的软件部署消息,该命令表示要执行的部署软件的操作。 客户端软件部署服务通过将这些通用命令转换为与本地操作系统兼容的命令来在软件部署管理器和接收方系统之间提供接口。 软件部署管理器可将软件部署消息同时发送到系统组或环境中的每个系统,使得可以有效地部署软件,而不会在网络中产生不兼容性。 软件部署经理可以在Linux,Windows,Unix,Macatosh,Java或任何其他操作系统中部署软件,并且可以部署任何软件。
    • 10. 发明授权
    • Flow control in a packet data communication system
    • 分组数据通信系统中的流量控制
    • US07047310B2
    • 2006-05-16
    • US10374553
    • 2003-02-25
    • Anand S. BedekarRajeev AgrawalRajeev Ranjan
    • Anand S. BedekarRajeev AgrawalRajeev Ranjan
    • G06F13/00
    • H04W28/14H04L47/10H04L47/14H04L47/283H04L47/29H04L47/30H04L49/90H04L49/9078
    • A communication system that includes multiple nodes controls a flow of data from a first node of the multiple nodes to a second node of the multiple nodes without relying on an estimate of a rate at which data is drawn from a buffer of the second node and such that an overflow and an underflow of the buffer is avoided. The second node determines multiple flow control parameters, including a current occupancy (Q) of the buffer and an upper threshold (U) and a lower threshold (L) for an occupancy of the buffer and determines a desired data rate (r) based on the multiple flow control parameters. The desired data rate can be used to adjust a data rate for the flow of data. In another embodiment, the communication system further dynamically controls a rate at which flow control messages are conveyed by the second node to the first node.
    • 包括多个节点的通信系统控制从多个节点的第一节点到多个节点的第二节点的数据流,而不依赖于从第二节点的缓冲器绘制数据的速率的估计, 避免了缓冲器的溢出和下溢。 第二节点确定多个流量控制参数,包括缓冲器的当前占用(Q)和用于缓冲器占用的上限阈值(U)和下限阈值(L),并且基于 多个流量控制参数。 所需的数据速率可用于调整数据流的数据速率。 在另一个实施例中,通信系统进一步动态地控制流控制消息由第二节点传送到第一节点的速率。