会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SEAMLESS INTEGRATION OF PROCESS CONTROL DEVICES IN A PROCESS CONTROL ENVIRONMENT
    • 过程控制设备在过程控制环境中的无缝集成
    • US20120035749A1
    • 2012-02-09
    • US12849928
    • 2010-08-04
    • Duncan SchleissCindy A. ScottMark J. Nixon
    • Duncan SchleissCindy A. ScottMark J. Nixon
    • G05B9/02
    • G05B19/0428G05B2219/24175
    • In order to facilitate seamless integration of process control devices in a process control system, an integrated seamless diagnostic device collects diagnostic data related to the operation of (or problems associated with) one communication link that supports one process control protocol but communicates the collected diagnostic data to other entities in the process control system via another communication link that supports a different process control protocol. As a result, problems with the communication link monitored by the integrated seamless diagnostic device can be reported to the appropriate entities in the process control system as they occur and without unwanted delay. Moreover, problems with the monitored communication link can be communicated to the appropriate entities via process control protocols that are understood by those entities (and other entities in the process control system) and without consuming the potentially valuable resources of the monitored communication link.
    • 为了促进过程控制装置在过程控制系统中的无缝集成,集成的无缝诊断装置收集与支持一个过程控制协议但通信收集的诊断数据的一个通信链路的操作(或与之有关的问题)相关的诊断数据 通过支持不同过程控制协议的另一通信链路向过程控制系统中的其他实体发送。 结果,由集成的无缝诊断装置监视的通信链路的问题可以在过程控制系统发生并且没有不必要的延迟的情况下被报告给过程控制系统中的适当实体。 此外,可以通过被这些实体(和过程控制系统中的其他实体)理解的过程控制协议将监视的通信链路的问题传送到适当的实体,而不消耗被监视的通信链路的潜在有价值的资源。
    • 2. 发明申请
    • LOCATION DETECTION IN A WIRELESS NETWORK
    • 无线网络中的位置检测
    • US20110110242A1
    • 2011-05-12
    • US12614127
    • 2009-11-06
    • Mark NixonRobert KarschniaEric RotvoldTrevor Duncan SchleissDeji Chen
    • Mark NixonRobert KarschniaEric RotvoldTrevor Duncan SchleissDeji Chen
    • H04L12/26
    • H04W64/00H04W56/009H04W84/18
    • A first node sends a first message to a second node. The second node sends a second message to the first node. A first elapsed time is measured from the beginning of the transmission of the first message to the beginning of receipt of the second message. A second elapsed time is measured from the beginning of the receipt of the first message to the beginning of the transmission of the second message. The second node sends a third message to the first node containing the second elapsed time. The distance between the first and second node is calculated based on these elapsed times and a calibration count multiplier contained in the second or third message. A node may be moved within a wireless mesh network. Positional information about the node and distances to its neighbors is determined and transmitted to the network manager where it is stored.
    • 第一节点向第二节点发送第一消息。 第二节点向第一节点发送第二个消息。 从第一消息的发送开始到第二消息的接收开始,测量第一经过时间。 从接收到第一消息的开始到第二消息的发送的开始,测量第二经过时间。 第二节点向包含第二经过时间的第一节点发送第三消息。 基于这些经过时间计算第一和第二节点之间的距离,以及包含在第二或第三消息中的校准计数乘法器。 可以在无线网状网络内移动节点。 确定关于节点和与其邻居的距离的位置信息,并将其发送到网络管理器,在那里存储它。
    • 5. 发明授权
    • Smart process modules and objects in process plants
    • 过程工厂中的智能过程模块和对象
    • US09069344B2
    • 2015-06-30
    • US11567116
    • 2006-12-05
    • Duncan SchleissRam RamachandranMark NixonMichael Lucas
    • Duncan SchleissRam RamachandranMark NixonMichael Lucas
    • G05B15/02G05B19/042G05B23/02
    • G05B19/0428G05B15/02G05B23/0267G05B2219/23255G05B2219/23258G05B2219/23261G05B2219/25428Y02P80/156Y02P90/14Y02P90/18
    • An operator interface within a process plant includes an execution engine that implements process flow modules made up of interconnected smart process objects that are aware of devices and other entities within the plant and that can perform methods to detect conditions within the plant, especially on a system-level basis. The smart process objects include a display element to be displayed to the operator, data storage for storing data pertaining to and/or received from an associated entity within a plant, inputs and outputs for communicating with other smart process objects and methods that may be executed on the stored and received data to detect plant conditions, including system-level conditions, such as leaks, errors and other conditions. Process flow modules, which may be made up of numerous interconnected smart process objects, may also include flow algorithms associated therewith to calculate mass balances, flows, etc. for the process elements within the process flow modules.
    • 过程工厂内的操作员界面包括一个执行引擎,该执行引擎实现由互连的智能过程对象组成的过程流模块,该对象流程模块知道工厂内的设备和其他实体,并且可以执行方法来检测工厂内的条件,特别是在系统 级基础 智能过程对象包括要向操作者显示的显示元素,用于存储与工厂内的关联实体相关联和/或从工厂内的相关实体接收的数据的数据存储器,用于与其他智能过程对象通信的输入和输出以及可执行的方法 对存储和接收的数据进行检测,以检测工厂条件,包括系统级条件,如泄漏,错误等条件。 可以由许多互连的智能过程对象组成的过程流模块还可以包括与其相关联的流程算法,以计算过程流模块内的过程元件的质量平衡,流程等。
    • 6. 发明授权
    • Location detection in a wireless network
    • 无线网络中的位置检测
    • US08811199B2
    • 2014-08-19
    • US12614127
    • 2009-11-06
    • Mark NixonRobert KarschniaEric RotvoldTrevor Duncan SchleissDeji Chen
    • Mark NixonRobert KarschniaEric RotvoldTrevor Duncan SchleissDeji Chen
    • H04L12/26
    • H04W64/00H04W56/009H04W84/18
    • A first node sends a first message to a second node. The second node sends a second message to the first node. A first elapsed time is measured from the beginning of the transmission of the first message to the beginning of receipt of the second message. A second elapsed time is measured from the beginning of the receipt of the first message to the beginning of the transmission of the second message. The second node sends a third message to the first node containing the second elapsed time. The distance between the first and second node is calculated based on these elapsed times and a calibration count multiplier contained in the second or third message. A node may be moved within a wireless mesh network. Positional information about the node and distances to its neighbors is determined and transmitted to the network manager where it is stored.
    • 第一节点向第二节点发送第一消息。 第二节点向第一节点发送第二个消息。 从第一消息的发送开始到第二消息的接收开始,测量第一经过时间。 从接收到第一消息的开始到第二消息的发送的开始,测量第二经过时间。 第二节点向包含第二经过时间的第一节点发送第三消息。 基于这些经过时间计算第一和第二节点之间的距离,以及包含在第二或第三消息中的校准计数乘法器。 可以在无线网状网络内移动节点。 确定关于节点和与其邻居的距离的位置信息,并将其发送到网络管理器,在那里存储它。