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    • 2. 发明授权
    • Generalized asynchronous HDLC services
    • 广义异步HDLC服务
    • US06947416B1
    • 2005-09-20
    • US09736967
    • 2000-12-13
    • Cheng-Lee NeeAnthony WuQuingming MaAmar AmarChongzhen WangWinston YuanMinglei Yang
    • Cheng-Lee NeeAnthony WuQuingming MaAmar AmarChongzhen WangWinston YuanMinglei Yang
    • H04L12/56H04L3/16
    • H04W28/065H04L49/90
    • A router in a network comprises an interface system for receiving packets and has a plurality of channels and a plurality of framing service engines. The router is configured to assign the channels to individual framing service engines for framing services. The router has a channel manager for performing the assignments, and the channel manager is configured to receive and use data about the framing service engines. The router further comprises a framing memory for buffering communication between the interface system and the plurality of framing service engines. At least one framing service engine is configured to frame packets and at least one framing service engine is configured to deframe packets, and the framing service engines may be configured to operate on AHDLC packets. The router can be used with an interface system that comprises a plurality of network interfaces terminating a plurality of point to point links.
    • 网络中的路由器包括用于接收分组并具有多个信道和多个成帧服务引擎的接口系统。 路由器被配置为将信道分配给用于成帧服务的各个成帧服务引擎。 路由器具有用于执行分配的信道管理器,并且信道管理器被配置为接收和使用关于成帧服务引擎的数据。 路由器还包括用于缓冲接口系统和多个成帧服务引擎之间的通信的成帧存储器。 至少一个成帧服务引擎被配置为帧分组,并且至少一个成帧服务引擎被配置为对数据包进行deframe,并且成帧服务引擎可以被配置为对AHDLC分组进行操作。 路由器可以与包括终止多个点对点链路的多个网络接口的接口系统一起使用。
    • 4. 发明授权
    • Content delivery optimizer for a communications system
    • 通信系统的内容传送优化器
    • US07085288B2
    • 2006-08-01
    • US09947972
    • 2001-09-06
    • Scott P. Taylor
    • Scott P. Taylor
    • H04L12/28H04L3/16
    • H04B7/18584
    • A communication system for supplying information content from a base station to a mobile platform via a satellite link, wherein the base station monitors a plurality of buffers used to supply the content to insure that all of the buffers are utilized in the most efficient manner possible. If it is detected that any one or more of the buffers are being under utilized, meaning that one or more has additional capacity, then the base station will select a transmission method for the information content to be transmitted, for example, a point-to-point connection which requires additional formatting of the information content. This requires additional buffer capacity but will better ensure that the requested information content will be reliably received by the requesting mobile platform.
    • 一种用于经由卫星链路从基站向移动平台提供信息内容的通信系统,其中所述基站监视用于提供所述内容的多个缓冲器,以确保以最有效的方式利用所有缓冲器。 如果检测到任何一个或多个缓冲器正在被利用,意味着一个或多个缓冲器具有额外的容量,则基站将为要发送的信息内容选择传输方法,例如点对点 点连接,需要额外格式化信息内容。 这需要额外的缓冲器容量,但是将更好地确保所请求的信息内容将被请求的移动平台可靠地接收。
    • 7. 发明授权
    • Data communication system and electronic control unit used therein
    • 数据通信系统及其中使用的电子控制单元
    • US06167057A
    • 2000-12-26
    • US26181
    • 1998-02-19
    • Tomohisa KishigamiAkihiro SasakiShigeru UeharaYasushi ShinojimaAkihiro Tanaka
    • Tomohisa KishigamiAkihiro SasakiShigeru UeharaYasushi ShinojimaAkihiro Tanaka
    • H04L1/00H04L12/40H04L12/413H04L29/06H04L29/08H04L3/12H04L3/16
    • H04L1/009H04L1/0007H04L1/0083H04L12/4135H04L29/06H04L69/324
    • In a data communication system in which many nodes are connected to a common data bus so that each node can communicate with other nodes, a data frame to be transmitted from a node to other nodes includes a message having a variable length interposed between a signal indicating the length of the message and a signal indicating the end of the message in the frame. The message and the signals are coded according to a coding rule such as NRZ, and a bit stuffing rule is applied to the signal indicating the length of the message and the message while another rule violating the bit stuffing rule is applied to the signal indicating the end of the message. When the message length is changed due to noise or other causes in the course of data transmission, the signal indicating the end of the message is clearly detected at a receiving end because it is coded according to a rule different from the rule applied to the message and other signals. Further, since the length of the message actually received at the receiving end can be compared with the signal indicating the length of the message, transmission error can be detected without fail.
    • 在其中许多节点连接到公共数据总线使得每个节点可以与其他节点通信的数据通信系统中,要从节点传送到其他节点的数据帧包括插入在指示 消息的长度和指示帧中消息结束的信号。 消息和信号根据诸如NRZ的编码规则进行编码,并且将位填充规则应用于指示消息和消息的长度的信号,而将违反位填充规则的另一规则应用于指示 消息结束。 当消息长度由于数据传输过程中的噪声或其他原因而改变时,在接收端清楚地检测出指示消息结束的信号,因为它根据与应用于消息的规则不同的规则进行编码 和其他信号。 此外,由于可以将在接收端实际接收的消息的长度与指示消息的长度的信号进行比较,所以可以毫无疑问地检测到传输错误。
    • 9. 发明授权
    • Access control method and system
    • 访问控制方法和系统
    • US07212546B2
    • 2007-05-01
    • US10849004
    • 2004-05-20
    • Shinichiro Ohmi
    • Shinichiro Ohmi
    • H04L3/16
    • H04L47/762H04J3/1682H04J3/247H04L12/40065H04L12/40117H04L12/417H04L47/15H04L47/70H04L47/805H04L63/10
    • An access control method applicable to a network including a plurality of communication terminals for achieving simplification in processing, improvement in response, and efficient use of bands is provided. In a terminal station, a transmission information generating section generates predetermined transmission information based on the amount of data stored in a buffer section. A packet transmitting section generates a packet including data and the transmission information for transmission to another terminal station. In a control station, a packet receiving section receives the packet transmitted by the terminal station. A transmission information obtaining section analyzes the received packet to obtain the transmission information and, based on the transmission information, determines whether the band currently allocated is to be changed. If a change is required, a packet transmitting section transmits a packet reporting a newly-allocated band to the terminal stations.
    • 提供一种适用于包括多个通信终端的网络的访问控制方法,用于实现处理的简化,响应的改进和带的有效使用。 在终端中,发送信息生成部基于存储在缓冲部中的数据量来生成预定的发送信息。 分组发送部分生成包括数据的分组和用于传输到另一个终端站的传输信息。 在控制站中,分组接收部接收终端发送的分组。 发送信息获取部分析接收到的分组以获得发送信息,并且基于发送信息来确定当前分配的频带是否被改变。 如果需要改变,则分组发送部分将报告新分配的频带的分组发送到终端站。