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    • 7. 发明申请
    • Increasing Reliability and Reducing Latency in a Wireless Network
    • 提高无线网络的可靠性和降低延迟
    • US20080279204A1
    • 2008-11-13
    • US12100927
    • 2008-04-10
    • Wallace A. Pratt, JR.Mark J. NixonEric D. RotvoldRobin S. PramanikTomas P. LennvallTerrence L. Blevins
    • Wallace A. Pratt, JR.Mark J. NixonEric D. RotvoldRobin S. PramanikTomas P. LennvallTerrence L. Blevins
    • H04L12/56
    • G01D21/00H04W24/00H04W56/0015H04W56/002H04W80/00
    • A mesh communication network for use in, for example, process control plants includes a plurality of network devices transmitting and receiving data according to a network schedule defined as a set of concurrent overlapping superframes, and along a set of graphs defining communication paths between pairs of network devices. A network manager residing in or outside the communication network develops a routing scheme for the network by analyzing the topology of the network and defining a set of graphs for use in routing or transmitting data between various nodes of the network, each graph including one or more communication paths between pairs of network devices. Concurrently or consequently, the network manager defines the network schedule in view of at least transmission requirements, power availability, and signal quality at each network device. If desired, the network manager may begin to define the network schedule upon completing the definition of the graphs of the communication network, so that the network manager may define the network schedule in view both the defined graphs and the transmission, power, etc. parameters associated with each network device.
    • 用于例如过程控制设备的网状通信网络包括多个网络设备,其根据定义为一组并发重叠超帧的网络调度,以及沿着一组图形定义通信路径 网络设备。 驻留在通信网络中或外部的网络管理器通过分析网络的拓扑并定义用于在网络的各个节点之间路由或传输数据的图形集合来开发网络的路由方案,每个图包括一个或多个 网络设备对之间的通信路径。 鉴于至少传输要求,功率可用性和每个网络设备的信号质量,网络管理器同时或因此定义网络调度。 如果需要,网络管理器可以在完成通信网络的图形的定义时开始定义网络调度,使得网络管理员可以在定义的图形和传输,功率等参数中定义网络调度 与每个网络设备相关联。
    • 8. 发明授权
    • Efficient addressing in wireless hart protocol
    • 无线哈特协议中的高效寻址
    • US08570922B2
    • 2013-10-29
    • US12101043
    • 2008-04-10
    • Wallace A. Pratt, Jr.Mark J. NixonEric D. RotvoldRobin S. PramanikTomas P. Lennvall
    • Wallace A. Pratt, Jr.Mark J. NixonEric D. RotvoldRobin S. PramanikTomas P. Lennvall
    • H04W4/00H04L12/28
    • H04W84/10H04L12/66H04L29/12254H04L61/2038H04L67/12H04W8/26H04W92/10
    • A method of providing a wireless extension to a wired protocol for transferring data to and from a field device operating in a process control environment via a wired connection, wherein the wired protocol and the wireless extension to the wired protocol have at least one protocol layer in common includes associating a unique address consistent with an addressing scheme of the wired protocol with each of a plurality of wireless devices operating in the process control environment and forming a wireless network, such that a data packet is routed between two of the plurality of wireless devices based on the unique address; associating a network identifier with the plurality of wireless devices; forming, for each of the plurality of wireless devices, a global address including the respective unique address and the network identifier in accordance with a second addressing scheme; and providing access to an external host operating outside the wireless network to each of the plurality of wireless devices based on the global address associated with the wireless device specified at the external host.
    • 一种向有线协议提供无线扩展的方法,用于经由有线连接向在过程控制环境中操作的现场设备传送数据和从现场设备传送数据,其中有线协议和对有线协议的无线扩展具有至少一个协议层 通常包括将与有线协议的寻址方案一致的唯一地址与在过程控制环境中操作的多个无线设备中的每一个相关联并且形成无线网络,使得数据分组在多个无线设备中的两个之间路由 基于独特的地址; 将网络标识符与所述多个无线设备相关联; 根据第二寻址方案,为所述多个无线设备中的每一个形成包括相应的唯一地址和所述网络标识符的全局地址; 以及基于与在所述外部主机指定的所述无线设备相关联的全球地址,向所述多个无线设备中的每一个提供对在所述无线网络之外运行的外部主机的访问。