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    • 66. 发明申请
    • FIBER NETWORK MONITORING
    • 光纤网络监控
    • US20090263123A1
    • 2009-10-22
    • US12122613
    • 2008-05-16
    • Tian ZhuPei-Ling WuPeng Wang
    • Tian ZhuPei-Ling WuPeng Wang
    • H04B10/08
    • H04B10/071
    • This specification describes technologies relating to optical fiber network monitoring. A monitoring system is provided. The monitoring system includes a fiber network including a plurality of branch fibers and a main station coupled to a main fiber of the fiber network to broadcast communications signals to a plurality of branch stations. The monitoring system includes a monitoring device configured to transmit a monitoring signal and detect reflected portions of the monitoring signal such that the received portions specifically identify a condition of specific branch fibers of the plurality of branch fibers and a plurality of filtering devices coupled to each respective branch fiber, each filtering device including a transmission window configured to pass a plurality of communication wavelengths and a distinct wavelength of the monitoring signal, where the distinct wavelength is not within the transmission window, and block the remaining wavelengths, where the distinct wavelength identifies the respective branch fiber.
    • 本规范描述了与光纤网络监控有关的技术。 提供监控系统。 该监控系统包括一个包括多个分支光纤的光纤网络和耦合到光纤网络的主光纤的主站,以将通信信号广播到多个分支站。 监视系统包括监视装置,其被配置为发送监视信号并检测监视信号的反射部分,使得所接收的部分具体地识别多个分支光纤中的特定分支光纤的状况以及耦合到每个相应的多个分支光纤的多个滤波装置 每个滤波装置包括被配置为传递多个通信波长的传输窗口和监视信号的不同波长,其中不同的波长不在传输窗口内,并且阻挡剩余的波长,其中不同的波长识别出 各分支纤维。
    • 67. 发明申请
    • TIME-SHIFT TV SERVICE ESTABLISHMENT METHOD AND TIME-SHIFT TV MEDIA FUNCTION ENTITY
    • 时移电视服务制作方法和时移电视媒体功能实体
    • US20090228939A1
    • 2009-09-10
    • US12469322
    • 2009-05-20
    • Baojian QIPeng WangXiaosong Lei
    • Baojian QIPeng WangXiaosong Lei
    • H04N7/173
    • H04L65/4084H04L65/1016H04N21/4333H04N21/6437
    • A time-shift TV (TsTV) service establishment method and a TsTV media function (MF) entity are configured to realize TsTV services in an IP Multimedia Subsystem (IMS) network. The method includes the following steps. The TsTV MF entity receives a media negotiation including content delivery channel information and content control channel information initiated by a terminal, establishes a transmission connection with the terminal based on the media negotiation result, receives a media playing request sent from the terminal through the transmission connection, and sends media information corresponding to the media playing request to the terminal through a content delivery channel established based on the content delivery channel information. A TsTV MF entity is also provided. Thus, the TsTV services are realized in an IMS network.
    • 时移电视(TsTV)服务建立方法和TsTV媒体功能(MF)实体被配置为实现IP多媒体子系统(IMS)网络中的TsTV服务。 该方法包括以下步骤。 TsTV MF实体接收包括由终端发起的内容传送信道信息和内容控制信道信息的媒体协商,基于媒体协商结果与终端建立传输连接,通过传输连接接收从终端发送的媒体播放请求 并且通过基于内容传送信道信息建立的内容传送通道向终端发送与媒体播放请求对应的媒体信息。 还提供了一个TsTV MF实体。 因此,TsTV服务在IMS网络中实现。
    • 68. 发明申请
    • PULSE HEATING-TIME OF FLIGHT MASS SPECTROMETRIC GAS ELEMENTS ANALYZER
    • 飞行时间大小的光谱气体元素分析仪的脉冲加热时间
    • US20090121129A1
    • 2009-05-14
    • US12259502
    • 2008-10-28
    • Haizhou WangPeng WangXuejing YangZhigang YangYuexiang YanShaocheng HuHongquan MaHongwei Li
    • Haizhou WangPeng WangXuejing YangZhigang YangYuexiang YanShaocheng HuHongquan MaHongwei Li
    • H01J49/40
    • H01J49/40G01N1/4022H01J49/0472
    • A pulse heating—time of flight mass spectrometric gas elements analyzer, which involves the chemical analysis field of inorganic materials, and comprises of a pulse heating electrode furnace, a sample charging system, a purification device, a time-of-flight mass spectrometer, a signal acquisition and data processing system, and an automatic control system. Said electrode furnace and sample charging system are united as one via upper/lower electrodes and pneumatic cylinders, to form a closed hearth. Said electrode furnace, purification device and time-of-flight mass spectrometer are interconnected through the gas pipelines: the purified inert carrier gas comes into the hearth from its top, carrying out the gas components released from sample fusion, and upon re-purification, comes into the time-of-flight mass spectrometer; said signal acquisition and data processing system is connected to the detector of the said mass spectrometer via signal cables, and on the basis of computation by the data processing module of the relevant computer software, outputs the mass percentages of O, N, H and Ar in the sample. The lower limit of detection can be below 0.01 ppm to 0.1 ppm, and no less than three elements can be measured simultaneously in one analysis cycle.
    • 脉冲加热时间飞行质谱气体元素分析仪,涉及无机材料的化学分析领域,包括脉冲加热电极炉,样品充电系统,净化装置,飞行时间质谱仪, 信号采集和数据处理系统,以及自动控制系统。 所述电极炉和样品充电系统通过上/下电极和气缸共同组合,形成封闭的炉床。 所述电极炉,净化装置和飞行时间质谱仪通过气体管道相互连接:纯化的惰性载气从顶部进入炉底,进行从样品熔融释放出的气体成分,再次净化后, 进入飞行时间质谱仪; 所述信号采集和数据处理系统通过信号电缆连接到所述质谱仪的检测器,并且在相关计算机软件的数据处理模块的计算的基础上输出O,N,H和Ar的质量百分比 在样品中。 检测下限可以低于0.01ppm至0.1ppm,并且在一个分析周期中可以同时测量不少于三个元素。