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    • 2. 发明申请
    • ROBUST SNIR ESTIMATION
    • 稳健的SNIR估计
    • WO2017045849A1
    • 2017-03-23
    • PCT/EP2016/069373
    • 2016-08-16
    • INTEL IP CORPORATIONYU, Zhibin
    • YU, Zhibin
    • H04L27/26H04L25/02H04B17/336
    • H04L27/2601H04B17/336H04L25/0224
    • A method of estimating a signal-to-noise-plus-interference ratio (SNIR) on a mobile communication channel comprising estimating the SNIR of the channel based on at least one pilot signal and at least one synchronization signal included in an input signal received via the channel by determining the at least one pilot signal by calculating a first offset scalar product and a second offset scalar product of multiple pilot signals on multiple subcarriers of an Orthogonal Frequency Division Multiplex (OFDM) symbol, and determining the at least one synchronization signal by calculating a first offset scalar product and a second offset scalar product of multiple synchronization signals on multiple subcarriers of the OFDM symbol.
    • 一种估计移动通信信道上的信噪比加干扰比(SNIR)的方法,包括基于至少一个导频信号估计信道的SNIR,以及至少一个同步信号,包括在经由 通过在正交频分复用(OFDM)符号的多个子载波上计算多个导频信号的第一偏移标量乘积和第二偏移标量积来确定所述至少一个导频信号,并且通过以下步骤确定所述至少一个同步信号: 在所述OFDM符号的多个子载波上计算多个同步信号的第一偏移标量乘积和第二偏移标量乘积。
    • 6. 发明申请
    • NANOWIRE-POLYMER COMPOSITE ELECTRODES
    • 纳米聚合物复合电极
    • WO2012040637A3
    • 2012-05-31
    • PCT/US2011053107
    • 2011-09-23
    • UNIV CALIFORNIAPEI QIBINGYU ZHIBIN
    • PEI QIBINGYU ZHIBIN
    • H01L51/56H01B5/14H05B33/26
    • H01B1/22B29C41/003B29D11/0074G06F3/041G06F2203/04103H01B1/02H01L51/0021H01L51/003H01L51/5036H01L51/5206H01L51/5268H01L2227/326H01L2251/5338H01L2251/5369Y10T428/24355
    • A method for producing flexible, nanoparticle-polymer composite electrodes is described. Conductive nanoparticles, preferably metal nanowires or nanotubes, are deposited on a smooth surface of a platform to produce a porous conductive layer. A second application of conductive nanoparticles or a mixture of nanoparticles can also be deposited to form a porous conductive layer. The conductive layer is then coated with at least one coating of monomers that is polymerized to form a conductive layer-polymer composite film. Optionally, a protective coating can be applied to the top of the composite film. In one embodiment, the monomer coating includes light transducing particles to reduce the total internal reflection of light through the composite film or pigments that absorb light at one wavelength and re-emit light at a longer wavelength. The resulting composite film has an active side that is smooth with surface height variations of 100 nm or less.
    • 描述了制备柔性纳米颗粒 - 聚合物复合电极的方法。 导电纳米颗粒,优选金属纳米线或纳米管,沉积在平台的光滑表面上以产生多孔导电层。 还可以沉积导电纳米颗粒或纳米颗粒混合物的第二种应用以形成多孔导电层。 然后用至少一个聚合的单体涂层涂覆导电层以形成导电层 - 聚合物复合膜。 任选地,保护涂层可以施加到复合膜的顶部。 在一个实施方案中,单体涂层包括光转换颗粒,以减少通过复合膜或吸收一个波长的光并且再发射较长波长的光的颜料的光的全内反射。 所得到的复合膜具有光滑的活性侧,表面高度变化为100nm以下。