会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 123. 发明授权
    • Method and apparatus for automatic discovery in optical transport networks
    • 光传输网络中自动发现的方法和装置
    • US09203540B2
    • 2015-12-01
    • US13394897
    • 2010-08-13
    • Dieter Beller
    • Dieter Beller
    • H04L12/26H04J3/14H04J3/16H04L12/24H04Q11/00
    • H04J3/14H04J3/1652H04L41/12H04Q11/0062H04Q2011/0079
    • In order to improve the link adjacency discovery in an Optical Transport Network, a method and related network nodes are provided. A first network node (21) has a first discovery agent (216) and a second network node (22) has a second discovery agent (226). A discovery message (210) is transmitted from a first interface of the first network node (21) over one or more subsequent network links (25, 26, 27) to a second interface of the second network node (22). The discovery message (210) contains information indicative of an discovery agent identifier associated with the first discovery agent (216) and of a termination connection point identifier associated with the first interface. In order to transmit the discovery message (210), the first interface is configured to perform a tandem connection source function (217) using a reserved field in an overhead portion of signal frames to be transmitted. The second interface is configured to perform a Tandem Connection Monitoring function (227) on the same reserved field of received signal frames. The discovery message is sent using a Trail Trace Identifier (TT!) byte available in the reserved field.
    • 为了改善光传输网络中的链路邻接发现,提供了一种方法和相关的网络节点。 第一网络节点(21)具有第一发现代理(216),第二网络节点(22)具有第二发现代理(226)。 发现消息(210)从第一网络节点(21)的第一接口通过一个或多个后续网络链路(25,26,27)发送到第二网络节点(22)的第二接口。 发现消息(210)包含指示与第一发现代理(216)相关联的发现代理标识符和与第一接口相关联的终止连接点标识符的信息。 为了发送发现消息(210),第一接口被配置为使用要发送的信号帧的开销部分中的保留字段来执行串联连接源功能(217)。 第二接口被配置为在接收到的信号帧的相同保留字段上执行串联连接监视功能(227)。 发现消息使用保留字段中可用的跟踪跟踪标识符(TT!)字节发送。
    • 125. 发明申请
    • ULTRA LOW LATENCY DESIGN FOR LTE
    • 用于LTE的超低功耗设计
    • US20150280871A1
    • 2015-10-01
    • US14636361
    • 2015-03-03
    • QUALCOMM Incorporated
    • Hao XuDurga Prasad MalladiNaga BhushanTingfang JiPeter GaalWanshi ChenTao LuoYongbin WeiAleksandar Damnjanovic
    • H04L5/00H04W56/00H04J1/16H04J3/16H04W72/04H04J3/14
    • Methods, systems, and devices are described for low latency communications within a wireless communications system. An eNB and/or a UE may be configured to operate within the wireless communications system and may send triggers to initiate communications using a dedicated resource in a wireless communications network that supports transmissions having a first subframe type and a second subframe type, the first subframe type comprising symbols of a first duration and the second subframe type comprising symbols of a second duration that is shorter than the first duration. Communications may be initiated by transmitting a trigger from the UE or eNB using the dedicated resource, and initiating communications following the trigger. The duration of time between the trigger and initiating communications can be significantly shorter than the time to initiate communications using legacy LTE communications.
    • 描述了无线通信系统内的低延迟通信的方法,系统和设备。 eNB和/或UE可以被配置为在无线通信系统内操作并且可以发送触发以使用支持具有第一子帧类型和第二子帧类型的传输的无线通信网络中的专用资源来发起通信,所述第一子帧 类型包括第一持续时间的符号,第二子帧类型包括比第一持续时间短的第二持续时间的符号。 可以通过使用专用资源从UE或eNB发送触发并且在触发之后发起通信来启动通信。 触发和发起通信之间的持续时间可以明显短于使用传统LTE通信发起通信的时间。
    • 126. 发明授权
    • Method and device for detecting fault of signal processing equipment and optical interface board online
    • 在线检测信号处理设备和光接口板故障的方法和装置
    • US09148242B2
    • 2015-09-29
    • US13258415
    • 2010-05-28
    • Pu Li
    • Pu Li
    • H04J3/14H04B10/077H04L12/24H04J14/08
    • H04J3/14G06F11/2252H04B10/0779H04J2203/006H04L41/0677
    • The disclosure relates to a method and device for detecting a fault of signal processing equipment and an optical interface board on line. The signal processing equipment includes n function modules F1, F2, . . . Fn, and n fault detecting points T1, T2, . . . Tn for determining whether there is a fault in said n function modules, wherein n is a natural number. When the detecting result of said detecting point Ti indicates there is a fault in the function module Fi, the corresponding detecting points of other function modules directly associated with the function module Fi are detected continuously, and the reason of the fault is determined according to all the fault function modules. The present disclosure divides the equipment or the board into different modules in accordance with functions, a fault detecting point being set in each module. Therefore, the fault source point of the equipment or the board can be detected and located quickly without artificial participation, and the self-detection can be done automatically when the board is idle to detect problems promptly, so as to improve the testability and the on-site maintainability of products.
    • 本公开涉及一种用于检测信号处理设备和线路上的光接口板的故障的方法和装置。 信号处理设备包括n个功能模块F1,F2。 。 。 Fn和n个故障检测点T1,T2,...。 。 。 Tn,用于确定所述n个功能模块中是否存在故障,其中n是自然数。 当检测点Ti的检测结果指示功能模块Fi中存在故障时,与功能模块Fi直接相关的其他功能模块的相应检测点被连续检测,并且故障原因根据所有 故障功能模块。 本发明根据功能将设备或板分成不同的模块,每个模块中设置故障检测点。 因此,无需人工参与就可以快速检测和定位设备或电路板的故障源点,当板卡空闲时自动检测,可以及时发现问题,从而提高可测试性和可靠性 - 产品的现场维护性。
    • 130. 发明授权
    • Wireless communication device and wireless communication method
    • 无线通信设备和无线通信方式
    • US09125155B2
    • 2015-09-01
    • US13729976
    • 2012-12-28
    • FUJITSU LIMITED
    • Hitoshi Yokoyama
    • H04J1/16H04J3/14H04L1/00H04L12/26G08C17/00H04W52/02H04W88/02H04W88/06H04W36/24
    • H04W52/0209H04W36/24H04W52/0232H04W88/02H04W88/06Y02D70/1262Y02D70/142Y02D70/23
    • A wireless communication device including: a plurality of antennas configured to perform a plurality of wireless communication protocols simultaneously, and a processor configured to obtain each of a plurality of power consumptions for each of the plurality of the wireless communication protocols, to obtain each of a plurality of communication throughput for each of the plurality of the wireless communication protocols, to calculate an aggregated communication efficiency of the wireless communication using the plurality of wireless communication protocols simultaneously based on the plurality of the power consumptions and the plurality of the communication throughput, and to control the plurality of the antennas, when the aggregated communication efficiency exceeds a given value, as to perform the plurality of wireless communication protocols simultaneously, and, when the aggregated communication efficiency is equal to or less than the given value, as to stop one of the plurality of wireless communication protocols.
    • 一种无线通信装置,包括:多个天线,被配置为同时执行多个无线通信协议;以及处理器,被配置为获得所述多个无线通信协议中的每一个的多个功率消耗中的每一个,以获得 多个无线通信协议中的每一个的多个通信吞吐量,基于多个电力消耗和多个通信吞吐量,同时计算使用多个无线通信协议的无线通信的聚合通信效率,以及 为了控制多个天线,当聚合通信效率超过给定值时,为了同时执行多个无线通信协议,并且当聚合通信效率等于或小于给定值时,停止一个 的多个wi 消除通信协议。