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    • 2. 发明授权
    • Element management system for managing line-powered network elements
    • 用于管理线路网络元件的元件管理系统
    • US07599484B2
    • 2009-10-06
    • US10449682
    • 2003-05-30
    • Dieter H. Nattkemper
    • Dieter H. Nattkemper
    • H04M1/02
    • H04L12/10H04M19/001Y10T307/696
    • A method of managing power at an element management system for a power sourcing network element and a power sinking network element of an access network is provided. The method includes identifying a set of primitives for managing power usage at the power sinking network element associated with providing a provisioned service, provisioning at least one instance of a line power manager for the service with the set of primitives, provisioning at least one instance of an associated line power controller at each of the power sourcing network element and the power sinking network element, associating at least one conductive medium with the line power controller, the at least one conductive medium coupled between the power sourcing network element and the power sinking network element, and passing selected ones of the set of primitives to the power sourcing network element and the power sinking network element for use by at least one line power control function of the power sourcing and the power sinking network elements.
    • 提供了一种在元件管理系统中为接入网络的电源网元和功率网络元件管理电力的方法。 该方法包括识别用于管理与提供所提供的服务相关联的功率吸收网络元件处的功率使用的一组原语,为所述服务集合提供至少一个用于所述一组原语的线路功率管理器的实例,提供至少一个实例 在每个电源网络元件和功率吸收网络元件处的相关联的线路功率控制器将至少一个导电介质与线路功率控制器相关联,所述至少一个导电介质耦合在电源网络元件和功率吸收网络之间 元素,并且将所述一组原语中的选定的元素传递给所述电源网元和所述功率吸收网元,以由所述电源和所述功率网络元件的至少一个线路功率控制功能使用。
    • 3. 发明授权
    • Multiple user access network
    • 多用户接入网
    • US06327266B1
    • 2001-12-04
    • US09066611
    • 1998-04-24
    • Mowaffak T. MidaniDieter H. NattkemperK. Martin Stevenson, III
    • Mowaffak T. MidaniDieter H. NattkemperK. Martin Stevenson, III
    • H04J316
    • H04Q11/0478H04L2012/5603H04L2012/5642H04L2012/5685
    • A multiple user access network (10) includes a master network element device (12) and multiple slave network termination devices (14a-14n). The network element device (12) couples to the multiple network termination devices (14a-14n) in a multi-user network interface (MUNI) topology by a shared media link (16). Each network termination device (14a-14n) is assigned its own unique group ID address (38) by the master network element device (12). The network element device (12) sends MUNI asynchronous transfer mode cells (30, 32) to appropriate network termination devices (14a-14n) over shared media link (16). The group ID (38) field is also defined to allow for the network element device (12) to broadcast asynchronous transfer mode cells to all the network termination devices (14a-14n). Each network termination device (14a-14n) identifies MUNI asynchronous transfer mode cells (30, 32) with its unique group ID (38) for processing and ignores those MUNI asynchronous transfer mode cells (30, 32) that do not contain an appropriate group ID (38). The master network element device (12) performs traffic shaping and user parameter control functions per group to facilitate downstream quality of service guarantee per network termination device.
    • 多用户接入网络(10)包括主网元设备(12)和多个从网终端设备(14a-14n)。 网元装置(12)通过共享媒体链路(16)在多用户网络接口(MUNI)拓扑中耦合到多个网络终端设备(14a-14n)。 每个网络终端设备(14a-14n)由主网元设备(12)分配其自己的唯一组ID地址(38)。 网元设备(12)通过共享媒体链路(16)将MUNI异步传输模式小区(30,32)发送到适当的网络终端设备(14a-14n)。 组ID(38)字段还被定义为允许网元设备(12)向所有网络终端设备(14a-14n)广播异步传输模式小区。 每个网络终端设备(14a-14n)用其唯一的组ID(38)识别MUNI异步传输模式小区(30,32),用于处理并忽略不包含适当组的那些MUNI异步传输模式小区(30,32) ID(38)。 主网元设备(12)每组执行流量整形和用户参数控制功能,以方便每个网络终端设备的下游服务质量保证。
    • 6. 发明授权
    • Distributed telecommunications switching system and method
    • 分布式电信交换系统及方法
    • US06754206B1
    • 2004-06-22
    • US09359969
    • 1999-07-23
    • Dieter H. NattkemperFarzad S. Nabavi
    • Dieter H. NattkemperFarzad S. Nabavi
    • H04Q1100
    • H04L49/103H04L49/205H04L49/3009H04L49/503H04L49/505H04L49/555H04L2012/5605H04L2012/561H04L2012/5625H04Q11/0478
    • A distributed telecommunications switching subsystem (100) receives and distributes data packets passed between a plurality of switching subsystems or channel banks (102, 104, 106) and a data packet switch (110). Each channel bank (102) has a stored list of addresses. When a channel bank (102) receives a data packet, it compares the address of the data packet to its stored list of addresses, and transmits the data packet to another channel bank (104) if the address of the data packet does not correspond to any of the addresses in its stored list of addresses. The data packet is passed on until it reaches a channel bank (106) with a matching address or else it is appropriately handled by a last channel bank (106) in the chain. If the address of data packet matches an address in its stored list of addresses, the channel bank (102) passes the data packet through a subscriber interface card (120) to a customer premises equipment unit (108) corresponding to the address of the data packet.
    • 分布式电信交换子系统(100)接收并分发在多个交换子系统或信道组(102,104,106)和数据分组交换机(110)之间传递的数据分组。 每个信道组(102)具有存储的地址列表。 当信道组(102)接收数据分组时,将数据分组的地址与其存储的地址列表进行比较,并且如果数据分组的地址不对应于数据分组,则将数据分组发送到另一信道组(104) 其存储的地址列表中的任何地址。 数据包被传递,直到它到达具有匹配地址的信道组(106),或者它被链中的最后一个信道组(106)适当地处理。 如果数据分组的地址与其存储的地址列表中的地址匹配,则信道组(102)将数据分组通过用户接口卡(120)传送到与数据的地址对应的客户驻地设备单元(108) 包。