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    • 2. 发明申请
    • NETWORK AND METHOD FOR SETTING A TIME-BASE OF A NODE IN THE NETWORK
    • 网络和网络中节点的时基设置方法
    • WO2008053277A1
    • 2008-05-08
    • PCT/IB2006/054024
    • 2006-10-31
    • FREESCALE SEMICONDUCTOR, INC.BOGENBERGER, FlorianRAUSCH, Mathias
    • BOGENBERGER, FlorianRAUSCH, Mathias
    • H04J3/06H04L12/40
    • H04J3/0641
    • A data communication network (1 ) may, include a first sub-network (2) and a second sub- network (3). The first sub-network (2) may include two or more two master clocks (112,122), and a synchronisation system (13) connected to the master clocks. The synchronisation system may, for determine a time-base for the master clocks and control the master clocks based on the determined time-base. The first sub-network (2) may include one or more slave synchronisation data source (1 13, 123) for generating slave clock synchronisation data derived from time information of the master clocks. The second sub-network may include one or more slave clocks (22) and a slave clock time-base controller (21 ) connected to the slave synchronisation data source. The time-base controller (21 ) may receive the slave clock synchronisation data and control one or more of the one or more slave clocks in accordance with the slave clock synchronisation data.
    • 数据通信网络(1)可以包括第一子网(2)和第二子网(3)。 第一子网(2)可以包括两个或更多个主时钟(112,122)和连接到主时钟的同步系统(13)。 同步系统可以用于确定主时钟的时基并且基于确定的时基来控制主时钟。 第一子网(2)可以包括用于产生从主时钟的时间信息导出的从时钟同步数据的一个或多个从同步数据源(13,133)。 第二子网可以包括连接到从同步数据源的一个或多个从时钟(22)和从时钟时基控制器(21)。 时基控制器(21)可以根据从时钟同步数据接收从时钟同步数据并控制一个或多个从时钟中的一个或多个。
    • 5. 发明申请
    • ADVANCED COMMUNICATION CONTROLLER UNIT AND METHOD FOR RECORDING PROTOCOL EVENTS
    • 高级通信控制单元和记录协议事件的方法
    • WO2011058389A1
    • 2011-05-19
    • PCT/IB2009/054978
    • 2009-11-10
    • FREESCALE SEMICONDUCTOR, INC.ROETTGERMANN, ClemensMOELLER, DirkRAUSCH, Mathias
    • ROETTGERMANN, ClemensMOELLER, DirkRAUSCH, Mathias
    • G06F11/28H04L29/06
    • H04L12/40006G06F11/3027G06F11/3636H04L41/0604H04L2012/40215H04L2012/40241H04L2012/40273
    • An advanced communication controller unit (60) for a distributed communication system having a plurality of communication controller units, at least one being an advanced communication controller unit, each coupled to a communication medium and adapted to communicate using a communication is presented. The advanced communication controller unit comprises a protocol event recording circuit (62) having a monitoring input (64) connected to at least one protocol event data transmission path (66) of the advanced communication controller unit and a debug output (68) connected to a memory device (70); and adapted to filter protocol event data received from the monitoring input depending on at least one configuration parameter and to provide filtered protocol event data to the debug output. A method for recording protocol events using a protocol event recording circuit in an advanced communication controller unit and a vehicle (80) comprising at least one advanced communication controller unit are also disclosed.
    • 一种用于具有多个通信控制器单元的分布式通信系统的高级通信控制器单元(60),至少一个是高级通信控制器单元,每个通信控制器单元耦合到通信介质并且适于使用通信进行通信。 高级通信控制器单元包括具有连接到高级通信控制器单元的至少一个协议事件数据传输路径(66)的监视输入(64)的协议事件记录电路(62)和连接到 存储装置(70); 并且适于根据至少一个配置参数来过滤从监控输入接收的协议事件数据,并将滤波的协议事件数据提供给调试输出。 还公开了一种使用高级通信控制器单元中的协议事件记录电路记录协议事件的方法和包括至少一个高级通信控制器单元的车辆(80)。
    • 7. 发明申请
    • SELF-ROUTING, STAFF-COUPLER-BASED COMMUNICATION NETWORK
    • 自适应,基于员工耦合的通信网络
    • WO2003081849A1
    • 2003-10-02
    • PCT/EP2002/012277
    • 2002-11-01
    • MOTOROLA INCRAUSCH, MathiasTEMPLE, Christopher
    • RAUSCH, MathiasTEMPLE, Christopher
    • H04L12/44
    • H04L45/00H04L12/44H04L45/18H04L69/40
    • A self-routing communication network (100) having: a plurality of nodes (N1-N15); a plurality of star couplers (S1-S4) each having a plurality of inputs and a plurality of outputs; and communication paths coupled between the plurality of star couplers and the plurality of nodes for communicaton therebetween of frames of information, including at least one redundant communication path (L1-L3), and each of the star couplers sensing which of its inputs first receives a frame and passing only the frame first received. The frames each have a fram-start-sequence (FSS), and the star couplers change the fram-start-sequences before outputting the frame of information e.g. by reducing the size of a frame's fram-start-sequence by a predetermined amount (e.g., 2 bits), whereby interconnection failure may be diagnosed by analysing the frame-start-sequence.
    • 一种自路由通信网络(100),具有:多个节点(N1-N15); 多个星形耦合器(S1-S4),每个具有多个输入和多个输出; 以及耦合在所述多个星形耦合器和所述多个节点之间用于在信息帧之间通信的通信路径,包括至少一个冗余通信路径(L1-L3),并且所述星形耦合器中的每一个感测其输入中的哪一个首先接收 框架并仅通过首先收到的框架。 这些帧每个都具有帧起始序列(FSS),并且星形耦合器在输出信息帧之前改变帧起始序列,例如。 通过将帧的帧起始序列的大小减小预定量(例如2比特),由此可以通过分析帧起始序列来诊断互连失败。
    • 8. 发明申请
    • REMOTE SWITCHING OF A COMMUNICATION DEVICE IN A COMMUNICATION NETWORK
    • 通信网络中通信设备的远程切换
    • WO2003081841A1
    • 2003-10-02
    • PCT/EP2002/012276
    • 2002-11-01
    • MOTOROLA INCTEMPLE, ChristopherRAUSCH, Mathias
    • TEMPLE, ChristopherRAUSCH, Mathias
    • H04L12/12
    • H04L12/12H04L12/40026H04L12/40169H04L2012/40241H04L2012/40273Y02D50/40
    • A communication network (300, 400), and (D1-D3, D11-D13, 500) for use therein, comprising a plurality of nodes (N1-N4, N11-N13); a communication medium for communicating between the plurality of nodes; and communication diode arrangement (s) (D1-D3, D11-D13, 500) for controlledly enabling/disabling access of the node (s) to the communication medium by control external to the node (s). The communication diode arrangement (s) can enforce fail-silence in the time domain within a distributed computer system, showing resilience against spatial proximity faults. The communication diode arrangement(s) may be controllable not only by time but also by commands embedded in frames. This allows isolation of a faulty processing node and/or subnets within an embedded distributed real-time communication system, such as for automotive by-wire applications (FlexRay, TTP), under consideration of spatial proximity faults.
    • 一种用于其中的通信网络(300,400)和(D1-D3,D11-D13,500),包括多个节点(N1-N4,N11-N13); 用于在所述多个节点之间进行通信的通信介质; 和通信二极管配置(D1-D3,D11-D13,500),用于通过该节点外部的控制来控制地启用/禁用节点到通信介质的访问。 通信二极管布置可以在分布式计算机系统内的时域中实施故障静默,显示出对空间接近故障的弹性。 通信二极管布置可以不仅由时间控制,而且可以通过嵌入帧中的命令来控制。 这允许在考虑空间接近故障的情况下,隔离嵌入式分布式实时通信系统中的故障处理节点和/或子网,例如用于汽车线上应用(FlexRay,TTP)。