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    • 12. 发明授权
    • Passive bus communication for ISDN
    • ISDN的被动总线通信
    • US4835769A
    • 1989-05-30
    • US150130
    • 1988-01-29
    • Norman J. Donaghue, Jr.Jay P. JayapalanRafael E. Salcedo
    • Norman J. Donaghue, Jr.Jay P. JayapalanRafael E. Salcedo
    • H04Q11/04
    • H04Q11/0471H04Q2213/13034H04Q2213/13174H04Q2213/13176H04Q2213/1319H04Q2213/13202H04Q2213/13204H04Q2213/13209H04Q2213/13216H04Q2213/1322H04Q2213/13299H04Q2213/204H04Q2213/216H04Q2213/22H04Q2213/299
    • An apparatus for providing passive bus communication in an ISDN without use of services of a central office includes a passive bus suitable for ISDN D-channel frame communication, the passive bus having an echo channel and having a plurality of terminal devices coupled to the passive bus. A receiving circuit is coupled to the passive bus for receiving D-channel frames containing a SAPI address transmitted from the terminal devices over the passive bus. A decoding circuit is coupled to the receiving circuit for decoding D-channel addresses transmitted from the terminal devices over the passive bus. The decoding circuit includes a circuit for determining if one of the D-channel frames from the terminal devices include a predetermined SAPI address. A switching circuit is coupled to and responsive to the decoding circuit, and implements a logical communication channel between two or more of the plurality of terminal devices when the D-channel frame includes the predetermined SAPI address. The switching circuit echoes D-channel frames over the echo channel of the passive bus for receipt by the terminal devices (TE) coupled to the passive bus and inhibits transmission of the D-channel frames to the central office when the D-channel frames include the predetermined SAPI address. The TE monitors the D-echo channel to receive the local passive bus communication in addition to contention resolution.
    • 一种用于在不使用中心局的服务的情况下在ISDN中提供无源总线通信的装置包括适用于ISDN D信道帧通信的无源总线,所述无源总线具有回波信道,并且具有耦合到被动总线的多个终端设备 。 接收电路耦合到无源总线,用于接收包含通过无源总线从终端设备发送的SAPI地址的D信道帧。 解码电路耦合到接收电路,用于对通过无源总线从终端设备发送的D信道地址进行解码。 解码电路包括用于确定来自终端设备的D信道帧中的一个是否包括预定SAPI地址的电路。 切换电路耦合到解码电路并且响应于解码电路,并且当D信道帧包括预定的SAPI地址时,实现多个终端设备中的两个或更多个之间的逻辑通信信道。 切换电路通过被动总线的回波通道回送D信道帧,以便由耦合到无源总线的终端设备(TE)接收,并且当D信道帧包括D信道帧时,禁止将D信道帧传输到中心局 预定的SAPI地址。 除了争用解决之外,TE监视D-echo信道以接收局部无源总线通信。
    • 13. 发明授权
    • Method and apparatus for facilitating moves and changes in a
communication system
    • 用于促进通信系统中的移动和变化的方法和装置
    • US4755985A
    • 1988-07-05
    • US939841
    • 1986-12-09
    • Jay P. JayapalanRobert S. TownHarendra H. Vora
    • Jay P. JayapalanRobert S. TownHarendra H. Vora
    • H04Q11/04H04M11/04
    • H04Q11/0428
    • The present invention relates to a communication system which includes a plurality of N communication links coupled to a central office. A plurality of N-1 user devices are coupled to N-1 of the N communication links with each of the N-1 user devices including a memory for storing a translation table relating a device identification code for each of the N-1 user devices to a directory code associated with each of the communication links. An input is situated at each of the N-1 user devices, for allowing a user to supply a device identification code of another user device to be called. A translating circuit is situated at each of the N-1 user devices, for translating the device identification code to it's associated directory code responsive to the input of a device identification code by the user by reading the translation table. A call is initiated responsive to the translating circuit for and a manager station is coupled to the remaining one of the N communication links, for updating each of the memories responsive to changes in the relationship between device identification codes and directory codes due to changes in the configuration of the communication system. The manager device is used to maintain the translation table and may also be used to manage extended features of the communication system.
    • 本发明涉及一种通信系统,其包括耦合到中心局的多个N个通信链路。 多个N-1个用户设备被耦合到N个通信链路中的N-1个,其中N-1个用户设备中的每一个包括用于存储与N-1个用户设备中的每一个相关的设备标识码的转换表的存储器 到与每个通信链路相关联的目录代码。 输入位于每个N-1个用户设备上,用于允许用户提供要被呼叫的另一个用户设备的设备标识码。 翻译电路位于每个N-1用户设备上,用于通过读取翻译表来将用户的设备标识码的设备识别码转换成与其相关联的目录代码。 响应于该翻译电路启动呼叫,并且管理站被耦合到N个通信链路中的其余一个,用于响应于由于设备识别码和目录代码之间的关系的变化而更新每个存储器 通讯系统的配置。 管理器设备用于维护翻译表,并且还可以用于管理通信系统的扩展特征。
    • 14. 发明授权
    • System and method for determining a forward channel rate for wirelessly communicating information to a wireless communication device
    • 用于确定用于向无线通信设备无线地传送信息的前向信道速率的系统和方法
    • US08000304B2
    • 2011-08-16
    • US11301302
    • 2005-12-12
    • Peter J. ArmbrusterNandakishore A. AlbalJay P. Jayapalan
    • Peter J. ArmbrusterNandakishore A. AlbalJay P. Jayapalan
    • H04B7/216
    • H04L1/0015H04L1/0003H04L1/0009H04L1/0023H04L2001/0093
    • A system, method, and wireless device for determining a forward channel rate for wirelessly communicating information to a wireless communication device is disclosed. The method includes receiving data rate control information from each wireless communication device (104, 106) in a plurality of wireless communication devices (104, 106). The method also comprises requesting a set of information. The data rate control information includes signal strength information associated with each of the wireless communication devices (104, 106). The data rate control information received from each of the wireless communication devices is compared to each other. A modulation and coding scheme is determined for wirelessly communicating the set of information to the plurality of wireless communication devices. The modulation and coding scheme is based on the data rate control information associated with a wireless communication device (104) having a weakest signal strength.
    • 公开了一种用于确定向无线通信设备进行无线传送信息的前向信道速率的系统,方法和无线设备。 该方法包括从多个无线通信设备(104,106)中的每个无线通信设备(104,106)接收数据速率控制信息。 该方法还包括请求一组信息。 数据速率控制信息包括与每个无线通信设备(104,106)相关联的信号强度信息。 从每个无线通信设备接收的数据速率控制信息彼此进行比较。 确定用于将该组信息无线地传送到多个无线通信设备的调制和编码方案。 调制和编码方案基于与具有最弱信号强度的无线通信设备(104)相关联的数据速率控制信息。
    • 15. 发明授权
    • Method and system for providing credit for participation in an ad hoc network
    • 为参与自组织网络提供信贷的方法和系统
    • US07734278B2
    • 2010-06-08
    • US11390901
    • 2006-03-28
    • Jay P. JayapalanStephen D. Magee
    • Jay P. JayapalanStephen D. Magee
    • H04M11/00
    • H04L12/14G06Q50/32H04L45/30H04W84/18
    • A method and system for providing credit for participation in an ad hoc wireless communication network is useful for improving network efficiency. The method includes receiving at a first network node a first data packet transmitted from a second network node (step 305). The first data packet includes payload data and credit claim data. The first node then determines that the credit claim data should be forwarded to a credit accounting authority (step 310), so a second data packet is then transmitted from the first node to the credit accounting authority (step 315). The second data packet includes some of the credit claim data. The first node then transmits a third data packet to a third network node, where the third data packet includes the payload data (step 320).
    • 用于提供参与自组织无线通信网络的信用的方法和系统对于提高网络效率是有用的。 该方法包括在第一网络节点处接收从第二网络节点发送的第一数据分组(步骤305)。 第一数据分组包括有效载荷数据和信用索赔数据。 然后,第一节点确定信用索赔数据应该转发给信用记帐机构(步骤310),于是第二数据分组然后从第一个节点发送到信用计费机构(步骤315)。 第二数据包包括一些信用声明数据。 然后,第一节点将第三数据分组发送到第三网络节点,其中第三数据分组包括有效载荷数据(步骤320)。
    • 16. 发明申请
    • METHOD AND APPARATUS FOR ROUTING A BEARER PATH IN AN INTERNET PROTOCOL MULTIMEDIA SUBSYSTEM BASED COMMUNICATION SYSTEM
    • 在互联网协议多媒体子系统通信系统中路由路径的方法和装置
    • US20100039987A1
    • 2010-02-18
    • US12510496
    • 2009-07-28
    • Harsha HegdeJay P. Jayapalan
    • Harsha HegdeJay P. Jayapalan
    • H04W40/00
    • H04L65/1016H04L65/1063H04L65/1069H04W40/02H04W76/12H04W76/32H04W92/20
    • A communication system is provided that routes a bearer path of a communication session between an originating Node B and a terminating Node B via an X2 interface, bypassing an IMS core network, while continuing to route the signaling path to an IMS network, thereby allowing the IMS network to retain control of the bearer path while avoiding delay, potential for data loss and jitter to the bearer stream, and additional backhaul capacity requirements that result from routing the bearer path between the originating and terminating Node Bs via the IMS core network. In determining whether the bearer path may bypass the IMS core network, the communication system determines whether IMS core network bearer associated services are required for the communication session such that a bearer path of the call will need to be routed to the IMS core network in order to provide such services.
    • 提供了一种通信系统,其通过绕过IMS核心网络的X2接口在始发节点B和终止节点B之间路由通信会话的承载路径,同时继续将信令路由路由到IMS网络,从而允许 IMS网络保持对承载路径的控制,同时避免延迟,承载流的数据丢失和抖动的可能性,以及通过经由IMS核心网路由发起端和终止节点B之间的承载路径产生的额外回程容量要求。 在确定承载路径是否可以绕过IMS核心网络的情况下,通信系统确定是否需要IMS核心网络承载相关联的业务来进行通信会话,使得呼叫的承载路径将按顺序路由到IMS核心网络 提供这样的服务。