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    • 71. 发明申请
    • DIFFERENTIAL CODING OF INTRA DIRECTIONS (DCIC)
    • 内部方向的差分编码(DCIC)
    • WO2012009209A2
    • 2012-01-19
    • PCT/US2011/043305
    • 2011-07-08
    • SONY CORPORATIONMAANI, EhsanLIU, WeiTABATABAI, Ali
    • MAANI, EhsanLIU, WeiTABATABAI, Ali
    • H04N7/32
    • H04N19/00551H04N19/463H04N19/593
    • Spatial domain directional intra prediction has been shown to be very effective to remove the correlation between the pixels in the current block and reconstructed neighbors. In AVC, 8 directional prediction modes (plus the DC prediction mode) are defined. The prediction mode number is signaled to the decoder using a simple predictive coding method. The previous intra prediction methods have two major disadvantages: lack of precision for arbitrary directional patterns and accuracy lack of accuracy to exploit geometric dependency between blocks. To address these issues, a new method accurately predicts the intra directions from reconstructed neighboring pixels and differentially encode the intra directions. This allows a more precise directional prediction without the significant increase in the cost for transmitting the side information.
    • 已经显示空间域方向帧内预测对于去除当前块中的像素和重构的邻居之间的相关性是非常有效的。 在AVC中,定义了8种方向预测模式(加上DC预测模式)。 使用简单的预测编码方法将预测模式编号发信号给解码器。 先前的帧内预测方法有两个主要的缺点:对于任意方向模式缺乏精度,并且精度不足以利用块之间的几何相关性。 为了解决这些问题,一种新方法从重建的相邻像素准确地预测帧内方向并对帧内方向进行差分编码。 这可以实现更精确的方向预测,而不会显着增加传输边信息的成本。
    • 73. 发明申请
    • DISPLAY APPARATUS
    • 显示设备
    • WO2011161621A1
    • 2011-12-29
    • PCT/IB2011/052703
    • 2011-06-21
    • SHENZHEN NEW SUPER-BRIGHT LCD DISPLAY CO., LTD.KANG, ChaiXIE, Nan FangLIU, Wei Wei
    • KANG, ChaiXIE, Nan FangLIU, Wei Wei
    • G02F1/13357
    • G02F1/133615G02B6/0011G02B6/0068G02B6/0073G02B6/0085G02F2001/133628G02F2201/36
    • A display apparatus (100) comprising a display screen (110) and a backlight assembly (120) is provided. The backlight assembly (120) comprises a distributed light source (122, 124) and a light guide plate (126) having at least two lateral edges. The light guide plate (126) and the distributed light source (122, 124) are arranged such that the light emitted by the distributed light source (122, 124) is edge-coupled into the light guide plate (126) for being forward projected onto the display screen (110) to illuminate the display screen (110) from back. The distributed light source (122, 124) is mounted on a heat sink structure (130). The heat sink structure (130) comprises a plurality of spaced-apart heat dissipating plates (136). Each heat dissipating plate (136) functions as a heat dissipation fin, is in thermal communication with the distributed light source (122, 124) and spans between the two lateral edges of the light guide plate (126).
    • 提供了包括显示屏(110)和背光组件(120)的显示装置(100)。 背光组件(120)包括具有至少两个侧边缘的分布式光源(122,124)和导光板(126)。 导光板(126)和分布式光源(122,124)被布置成使得由分布式光源(122,124)发射的光被边缘耦合到导光板(126)中以便向前投影 在显示画面(110)上从背面照亮显示画面(110)。 分布式光源(122,124)安装在散热器结构(130)上。 散热结构(130)包括多个间隔开的散热板(136)。 每个散热板(136)用作散热片,与分布式光源(122,124)热连通并跨越导光板(126)的两个侧边缘。
    • 74. 发明申请
    • METHOD, SYSTEM AND APPARTUS FOR SELECTING ACRONYM EXPANSION
    • 方法,系统和选择ACRONYM扩展的方法
    • WO2011134104A1
    • 2011-11-03
    • PCT/CN2010/000591
    • 2010-04-29
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.FENG, ShicongXIONG, YuhongYAO, CongleiLIU, Wei
    • FENG, ShicongXIONG, YuhongYAO, CongleiLIU, Wei
    • G06F17/28
    • G06F17/28G06F17/2282G06F17/277
    • According to one embodiment of the present invention, there is provided a method of selecting an expansion for an acronym in a document of a set of linked documents. The method comprises obtaining for each occurrence of the acronym in the set of linked documents one or more possible acronym expansions and an associated probability that the one or more possible acronym expansions is the correct acronym expansion. The method further comprises identifying a sub-set of documents from the set of linked documents in which the acronym occurs. The method further comprises recalculating the associated probabilities for a first occurrence of an acronym in the sub-set of documents based, in part, on the associated probabilities of other occurrences of the acronym in the sub-set of documents and the distance between the first occurrence and the other occurrence.
    • 根据本发明的一个实施例,提供了一种在一组链接的文档的文档中为缩写选择扩展的方法。 所述方法包括获得所述链接文档集合中的每个首字母缩略词的一个或多个可能的首字母缩略词扩展以及所述一个或多个可能的首字母缩略词扩展是正确的首字母缩略词扩展的相关概率。 该方法还包括从首字母缩略词发生的链接文档集合中识别文档子集。 该方法还包括重新计算文档子集中的首字母缩略词的首次出现的相关概率,部分地基于文档子集中首字母缩略词的其他出现的相关概率,以及第一 发生和其他事件。
    • 79. 发明申请
    • CATALYZED CO2-TRANSPORT MEMBRANE ON HIGH SURFACE AREA INORGANIC SUPPORT
    • 高表面无机载体催化二氧化碳输送膜
    • WO2011059616A1
    • 2011-05-19
    • PCT/US2010/052170
    • 2010-10-11
    • BATTELLE MEMORIAL INSTITUTELIU, Wei
    • LIU, Wei
    • B01D61/00B01D53/22B01D53/62F01N3/00F02M35/00
    • B01D61/38B01D53/228B01D69/10B01D69/105B01D2257/504B01D2258/0283H01M8/0289H01M8/0662Y02C10/04Y02C10/06Y02C10/10Y02P70/56
    • Disclosed are membranes and methods for making the same, which membranes provide improved permeability, stability, and cost-effective manufacturability, for separating CO 2 from gas streams such as flue gas streams. High CO 2 permeation flux is achieved by immobilizing an ultra-thin, optionally catalyzed fluid layer onto a meso-porous modification layer on a thin, porous inorganic substrate such as a porous metallic substrate. The CO 2 -selective liquid fluid blocks non-selective pores, and allows for selective absorption of CO 2 from gas mixtures such as flue gas mixtures and subsequent transport to the permeation side of the membrane. Carbon dioxide permeance levels are in the order of 1.0 x 10 -6 mol/(m 2 sPa) or better. Methods for making such membranes allow commercial scale membrane manufacturing at highly cost-effective rates when compared to conventional commercial- scale CO 2 separation processes and equipment for the same and such membranes are operable on an industrial use scale.
    • 公开了制备该膜的膜和方法,该膜提供改善的渗透性,稳定性和成本有效的可制造性,用于从气流如烟道气流中分离CO 2。 通过将超薄的任选催化的流体层固定在诸如多孔金属基底的薄多孔无机基底上的中孔多孔改性层上来实现高CO 2渗透通量。 CO 2选择性液体流体阻塞非选择性孔,并且允许从诸如烟道气混合物的气体混合物中选择性吸收CO 2,并且随后输送到膜的渗透侧。 二氧化碳渗透水平为1.0×10 -6 mol /(m 2 sPa)或更好的量级。 与常规的商业规模的二氧化碳分离方法相比,用于制造这种膜的方法允许以高成本有效的速率进行商业规模的膜制造,并且用于相同的膜的这种膜可以在工业用量表上操作。