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    • 1. 发明申请
    • CABLE MANAGEMENT PANEL
    • 电缆管理面板
    • WO2009138029A1
    • 2009-11-19
    • PCT/CN2009/071753
    • 2009-05-12
    • ADC COMMUNICATIONS (SHANGHAI) CO., LTD.ZHANG, LiLENG, ZongshengCUI, PengCHAN, Thomas
    • ZHANG, LiLENG, ZongshengCUI, PengCHAN, Thomas
    • H02B1/20
    • H04Q1/06H04Q1/023
    • A cable management panel has a chassis (12) and a sliding drawer (30). The drawer has a cable storage region, a cable splice region, and a cable termination region. The cable management panel includes cable guides (92, 94) that define an incoming cable pathway to the cable storage region and then to the cable splice region, an intermediate cable pathway to the cable termination region, and an outgoing cable pathway. The outgoing cable pathway has an S-curved cable routing configuration when the sliding drawer is closed. The chassis of the cable management panel defines an interior (32) sized for receipt of one two-rack-unit drawer, or in the alternative, two one-rack-unit drawers. Cables can enter into or exit from the interior of the chassis.
    • 电缆管理面板具有底盘(12)和滑动抽屉(30)。 抽屉具有电缆存储区域,电缆接头区域和电缆端接区域。 电缆管理面板包括电缆引导件(92,94),其限定到电缆存储区域的输入电缆路径,然后限定到电缆接合区域,到电缆终端区域的中间电缆路径以及输出电缆路径。 当滑动抽屉关闭时,输出电缆通道具有S形弯曲的电缆布线配置。 电缆管理面板的底盘定义了一个内部(32),其尺寸用于接收一个双机架单元抽屉,或者替代地,两个单架单元抽屉。 电缆可以进入或离开机箱内部。
    • 5. 发明申请
    • RESIDUAL CODING FOR DEPTH INTRA PREDICTION MODES
    • 用于深度预测模式的剩余编码
    • WO2015043501A1
    • 2015-04-02
    • PCT/CN2014/087511
    • 2014-09-26
    • QUALCOMM INCORPORATEDLIU, HongbinCHEN, YingZHANG, LiZHAO, Xin
    • LIU, HongbinCHEN, YingZHANG, LiZHAO, Xin
    • H04N13/00
    • H04N19/597H04N19/11H04N19/13H04N19/159H04N19/174H04N19/176H04N19/18H04N19/593H04N19/70H04N19/91
    • A video coder may perform a simplified depth coding (SDC) mode, including simplified residual coding, to code a depth block according to any of a variety of, e.g., at least three, depth intra prediction modes. For example, the video coder may perform the SDC mode for coding a depth block according to depth modeling mode (DMM) 3, DMM 4, or a region boundary chain coding mode. In such examples, the video coder may partition the depth block, and code respective DC residual values for each partition. In some examples, the video coder may perform the SDC mode for coding a depth block according to an intra prediction mode, e.g., an HEVC base specification intra prediction mode, such as a DC intra prediction mode or one of the directional intra prediction modes. In such examples, the video coder may code a single DC residual value for the depth block.
    • 视频译码器可执行包含简化残差译码的简化深度译码(SDC)模式以根据多种(例如,至少三种)深度帧内预测模式中的任一者对深度块进行译码 。 例如,视频译码器可根据深度建模模式(DMM)3,DMM4或区域边界链编码模式执行用于编码深度块的SDC模式。 在这样的示例中,视频编码器可以对深度块进行分区,并对每个分区的相应DC残差值进行编码。 在一些示例中,视频译码器可执行SDC模式以根据例如HEVC基本规格帧内预测模式(例如DC帧内预测模式或定向帧内预测模式中的一者)的帧内预测模式译码深度块。 在这样的示例中,视频编码器可以编码深度块的单个DC残余值。
    • 8. 发明申请
    • METHODS AND DEVICES FOR AN IMPROVED CELL ACCESS PROCEDURE
    • 改进的细胞访问程序的方法和设备
    • WO2013116972A1
    • 2013-08-15
    • PCT/CN2012/070888
    • 2012-02-06
    • NOKIA SIEMENS NETWORKS OYZHANG, LiSKOV, PeterLIN, JiezhenWU, Chao
    • ZHANG, LiSKOV, PeterLIN, JiezhenWU, Chao
    • H04W16/02
    • H04W16/02H04W72/048
    • The present invention proposes a terminal device comprising a control module configured to provide for a cell access procedure for the device, and comprising a transceiver module, which under control of the control module, is configured to search a core-subband of a first bandwidth on which a network transceiver device transmits and receives information, the network transceiver device being capable of transmitting and receiving information over a second bandwidth greater than the first bandwidth, and perform an initial random access procedure to said network transceiver device within said core- subband, wherein control information and control channels associated to said search and initial random access procedure are constrained within the core-subband, inform the network transceiver device of bandwidth capabilities of the device, and receive configuration information pertaining to a working-subband for the device, the working-subband being defined by a third bandwidth corresponding to the bandwidth capabilities of the device, the third bandwidth being smaller than or equal to the second bandwidth, and a central frequency of said working-subband. Likewise, the present invention proposes a corresponding network transceiver devices as well as respective methods and computer program products.
    • 本发明提出了一种终端设备,包括控制模块,该控制模块被配置为为该设备提供小区接入过程,并且包括在控制模块的控制下,被配置为搜索第一带宽的核心子带的收发器模块 所述网络收发器设备能够在大于所述第一带宽的第二带宽上发送和接收信息,并且对所述核心子带内的所述网络收发器设备执行初始随机接入过程,其中, 与所述搜索和初始随机接入过程相关联的控制信息和控制信道被限制在核心子带内,通知网络收发器设备的带宽能力,并且接收与设备的工作子带有关的配置信息,工作 子带由与之对应的第三带宽定义 所述设备的带宽能力,所述第三带宽小于或等于所述第二带宽,以及所述工作子带的中心频率。 同样地,本发明提出了相应的网络收发器装置以及各自的方法和计算机程序产品。
    • 9. 发明申请
    • SIGNALING DEPTH RANGES FOR THREE-DIMENSIONAL VIDEO CODING
    • 用于三维视频编码的信令深度范围
    • WO2013074162A1
    • 2013-05-23
    • PCT/US2012/051139
    • 2012-08-16
    • QUALCOMM IncorporatedZHANG, LiCHEN, YingKARCZEWICZ, Marta
    • ZHANG, LiCHEN, YingKARCZEWICZ, Marta
    • H04N7/26H04N7/50
    • H04N19/61H04N19/30H04N19/597H04N19/70
    • In one example, a video coder, such as a video encoder or a video decoder, is configured to code a first set of one or more depth range values for a first set of video data, wherein the first set of one or more depth range values have respective first precisions, code a second set of one or more depth range values for a second set of video data, wherein the second set of one or more depth range values have respective second precisions different than the respective first precisions, and code at least a portion of the second set of video data using the second set of one or more depth range values. In this manner, the video coder may update precisions (e.g., numbers of bits) used to represent depth range values for coding multiview plus depth video data.
    • 在一个示例中,诸如视频编码器或视频解码器的视频编码器被配置为对第一组视频数据的第一组深度范围值进行编码,其中第一组一个或多个深度范围 值具有相应的第一精度,为第二组视频数据编码一个或多个深度范围值的第二组,其中一个或多个深度范围值的第二组具有与各自的第一精度不同的相应的第二精度, 使用第二组一个或多个深度范围值的第二组视频数据的至少一部分。 以这种方式,视频编码器可以更新用于表示用于对多视点加上深度视频数据进行编码的深度范围值的精度(例如,位数)。