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    • 52. 发明申请
    • Parasitic time synchronization for a centralized communications guardian
    • 中央通信监护人的寄生时间同步
    • US20050128950A1
    • 2005-06-16
    • US10993221
    • 2004-11-19
    • Brendan HallKevin Driscoll
    • Brendan HallKevin Driscoll
    • G06F11/07H04B7/212H04J3/06H04L12/26H04L12/42H04L12/44
    • H04L12/44H04L12/422
    • A parasitic time synchronization network is provided including a plurality of nodes, one or more hubs, each hub having communication links with the plurality of nodes and one or more guardians. Each node is adapted to transmit and receive data and communicate with every other node through the one or more hubs. The communication links between any one hub and the plurality of nodes defines a communication channel. Each guardian is associated with one communication channel. Each node is assigned a time slot in which it is permitted to transmit data through an associated hub of the one or more hubs. A guardian of an associated channel blocks propagation of data transmissions between the plurality of nodes through the associated hub allows only data transmissions from one of the plurality of nodes, wherein the guardian periodically receives a cluster of beacons generated by a plurality of the plurality of nodes.
    • 提供了一种寄生时间同步网络,其包括多个节点,一个或多个集线器,每个集线器具有与多个节点的通信链路和一个或多个监护人。 每个节点适于发送和接收数据,并通过一个或多个集线器与每个其他节点进行通信。 任何一个集线器和多个节点之间的通信链路定义通信信道。 每个监护人与一个通信信道相关联。 为每个节点分配一个时隙,允许它通过一个或多个集线器的相关集线器传输数据。 相关联的信道的监护人阻止通过相关联的集线器在多个节点之间的数据传输的传播仅允许来自多个节点之一的数据传输,其中,监护人周期性地接收由多个节点生成的信标簇 。
    • 58. 发明申请
    • TIME TRIGGERED ETHERNET SYSTEM TESTING MEANS AND METHOD
    • 时间触发以太网系统测试方法和方法
    • US20130058217A1
    • 2013-03-07
    • US13224871
    • 2011-09-02
    • William Todd SmithgallBrendan HallSrivatsan Varadarajan
    • William Todd SmithgallBrendan HallSrivatsan Varadarajan
    • H04L12/26
    • H04L43/50
    • Methods and apparatus are provided for evaluating the performance of a Time Triggered Ethernet (TTE) system employing Time Triggered (TT) communication. A real TTE system under test (SUT) having real input elements communicating using TT messages with output elements via one or more first TTE switches during a first time interval schedule established for the SUT. A simulation system is also provided having input simulators that communicate using TT messages via one or more second TTE switches with the same output elements during a second time interval schedule established for the simulation system. The first and second time interval schedules are off-set slightly so that messages from the input simulators, when present, arrive at the output elements prior to messages from the analogous real inputs, thereby having priority over messages from the real inputs and causing the system to operate based on the simulated inputs when present.
    • 提供了用于评估采用时间触发(TT)通信的时间触发以太网(TTE)系统的性能的方法和装置。 在为SUT建立的第一时间间隔调度期间,具有通过一个或多个第一TTE开关的具有输出元件的TT消息的实际输入元件的真实TTE系统(SUT)。 还提供一种模拟系统,其具有输入模拟器,其在为模拟系统建立的第二时间间隔调度期间通过具有相同输出元件的一个或多个第二TTE开关通过TT消息进行通信。 第一和第二时间间隔时间表被略微偏移,使得来自输入模拟器的消息(当存在时)在来自类似的实际输入的消息之前到达输出元件,从而优先于来自真实输入的消息并导致系统 在存在时基于模拟输入进行操作。
    • 59. 发明申请
    • GUARDIAN SCRUBBING STRATEGY FOR DISTRIBUTED TIME-TRIGGERED PROTOCOLS
    • 用于分布式时间触发协议的监督管理策略
    • US20120300794A1
    • 2012-11-29
    • US13117890
    • 2011-05-27
    • Brendan HallPaul F. DietrichKevin R. Driscoll
    • Brendan HallPaul F. DietrichKevin R. Driscoll
    • H04J3/06
    • H04L12/40026
    • A cluster comprises a plurality of end nodes that communicate with one another over at least one communication channel. Each end node is assigned a time slot for transmission of frames; wherein each node comprises a local guardian configured to prevent transmission of timing-related frames sourced from the respective end node. The cluster also comprises a special node that communicates with the plurality of end nodes, wherein the special node establishes a time base and sources timing-related frames to the plurality of end nodes. The transmission schedule includes at least one common scrubbing time slot during which each of the plurality of end nodes is configured to generate a timing-related frame. The special node is configured to determine if the local guardian in any of the plurality of nodes failed to prevent transmission of the respective generated timing-related frame during the common scrubbing time slot.
    • 集群包括通过至少一个通信信道彼此通信的多个端节点。 为每个端节点分配一个用于传输帧的时隙; 其中每个节点包括被配置为防止来自相应端节点的定时相关帧的传输的本地监护器。 所述集群还包括与所述多个终端节点通信的特殊节点,其中所述特殊节点建立时基,并向所述多个终端节点发送与时间相关的帧。 传输调度包括至少一个公共擦洗时隙,在该时间段期间,多个终端节点中的每一个被配置为生成定时相关帧。 特殊节点被配置为确定多个节点中的任何节点中的本地监护人是否在公共擦除时隙期间未能防止相应产生的定时相关帧的传输。
    • 60. 发明申请
    • CENTRALIZED TRAFFIC SHAPING FOR DATA NETWORKS
    • 数据网络的集中式交通形状
    • US20120250694A1
    • 2012-10-04
    • US13073269
    • 2011-03-28
    • Brendan HallSrivatsan VaradarajanWilfried SteinerGuenther Bauer
    • Brendan HallSrivatsan VaradarajanWilfried SteinerGuenther Bauer
    • H04L12/56
    • H04L47/22H04L49/501
    • A communication system comprises a plurality of nodes and a switch having a plurality of ports, each port coupled to one of the plurality of nodes. At least one of the plurality of nodes is configured to transmit a first unregulated flow of frames associated with a first virtual link to a first port of the plurality of ports of the switch. The switch is configured to regulate the first unregulated flow of frames by buffering frames of the first unregulated flow in a first input queue associated with the first virtual link, applying traffic shaping parameters associated with the first virtual link to the frames in the first input queue associated with the first virtual link, and outputting the first regulated flow of frames to one or more output queues associated with one or more output ports based on the first virtual link.
    • 通信系统包括多个节点和具有多个端口的交换机,每个端口耦合到多个节点之一。 所述多个节点中的至少一个被配置为将与第一虚拟链路相关联的第一未被调节的帧的第一流发送到所述交换机的所述多个端口中的第一端口。 交换机被配置为通过缓冲与第一虚拟链路相关联的第一输入队列中的第一未调节流的帧来调节帧的第一未调节流,将与第一虚拟链路相关联的流量整形参数应用于第一输入队列中的帧 与所述第一虚拟链路相关联,以及基于所述第一虚拟链路,将所述第一调节流输出到与一个或多个输出端口相关联的一个或多个输出队列。