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    • 22. 发明授权
    • Method and system for blocking data on a GPU
    • 用于阻止GPU上的数据的方法和系统
    • US08400458B2
    • 2013-03-19
    • US12556401
    • 2009-09-09
    • Ren WuBin ZhangMeichun Hsu
    • Ren WuBin ZhangMeichun Hsu
    • G06F15/80
    • G06F15/8023G06T1/00
    • A method is provided for optimizing computer processes executing on a graphics processing unit (GPU) and a central processing unit (CPU). Process data is subdivided into sequentially processed data and parallel processed data. The parallel processed data is subdivided into a plurality of data blocks assigned to a plurality of processing cores of the GPU. The data blocks on the GPU are processed with other data blocks in parallel on the plurality of processing cores. Sequentially processed data is processed on the CPU. Result data processed on the CPU is returned.
    • 提供了一种用于优化在图形处理单元(GPU)和中央处理单元(CPU)上执行的计算机处理的方法。 过程数据被细分为顺序处理的数据和并行处理的数据。 并行处理的数据被细分为分配给GPU的多个处理核心的多个数据块。 GPU上的数据块在多个处理核上并行处理与其他数据块。 在CPU上处理顺序处理的数据。 返回CPU处理的结果数据。
    • 23. 发明申请
    • CLUSTERING CUSTOMERS
    • 聚集客户
    • US20120254179A1
    • 2012-10-04
    • US13432361
    • 2012-03-28
    • Heng CaoJin DongJacqueline Giang Huong MorrisMing XieWen Jun YinBin Zhang
    • Heng CaoJin DongJacqueline Giang Huong MorrisMing XieWen Jun YinBin Zhang
    • G06F17/30
    • G06Q30/02
    • A computer implemented method for clustering customers includes receiving a source set of customer records, wherein each customer record represents one customer, and each customer record includes at least one data attribute, and each data attribute has an attribute value; pre-processing the source set of customer records to generate a pre-processed set of customer records; executing a clustering algorithm on the pre-processed set of customer records to group the pre-processed set of customer records into clusters of a pre-defined number. The pre-processing comprises: determining the type of a customer in the source set of customer records; using a type attribute value to indicate the type of the customer in its customer record; normalizing data attribute values and type attribute values; weighting to the data attribute values and the type attribute values respectively to obtain weighted attribute values of the data attribute and weighted attribute values of the tune attribute.
    • 用于聚类客户的计算机实现方法包括接收客户记录的源集合,其中每个客户记录表示一个客户,并且每个客户记录包括至少一个数据属性,并且每个数据属性具有属性值; 预处理客户记录的源集合以生成预处理的一组客户记录; 在预处理的客户记录集上执行聚类算法,以将预处理的客户记录集合分组成预定义数量的集群。 预处理包括:确定客户记录源组中客户的类型; 使用类型属性值来指示客户记录中客户的类型; 归一化数据属性值和类型属性值; 分别对数据属性值和类型属性值进行加权,以获得数据属性的加权属性值和调整属性的加权属性值。
    • 24. 发明申请
    • METHOD FOR BINDING SECURE DEVICE TO A WIRELESS PHONE
    • 将安全设备绑定到无线电话的方法
    • US20120190340A1
    • 2012-07-26
    • US13395097
    • 2009-09-08
    • Ruifeng LiJing OuyangBin ZhangFang Yang
    • Ruifeng LiJing OuyangBin ZhangFang Yang
    • H04W12/00H04W12/08
    • H04L67/16H04L67/34H04W4/029H04W12/00512H04W12/1206
    • The present invention provides a method for binding a (smart) secure device (2) to a wireless phone, said wireless phone comprising an identifier parameter, said secure device (2) being adapted to communicate with an Over-The-Air (OTA) server and being suitable for receiving services from a network operator in an authorised area determined with localisation parameters stored in the OTA server, wherein the method comprises the following steps: a. storing the identifier parameter of the wireless phone into the secure device (2) at a first powering on of the wireless phone; b. requesting a user registration on the OTA server so as to download the localisation parameters from the OTA server into the secure device (2). After successful registration confirmation from OTA server, for each powering on, the secure device (2) compares the above two parameters in the secure device (2) with the values from the phone, if they are not the same, authentication is forbidden.
    • 本发明提供了一种用于将(智能)安全设备(2)绑定到无线电话的方法,所述无线电话包括标识符参数,所述安全设备(2)适于与无线电(OTA)通信, 服务器,并且适合于在由OTA服务器中存储的定位参数确定的授权区域中从网络运营商接收服务,其中该方法包括以下步骤:a。 在无线电话的第一次接通时将无线电话的标识符参数存储到安全设备(2)中; b。 在OTA服务器上请求用户注册,以便将定位参数从OTA服务器下载到安全设备(2)中。 在OTA服务器成功注册确认后,安全设备(2)对于每次上电,将安全设备(2)中的上述两个参数与来自电话的值进行比较,如果不相同,则禁止认证。
    • 29. 发明申请
    • SELF-COLLIMATOR CONCAVE SPECTRA SHAPING DEVICE FOR CHIRPED-PULSE-AMPLIFICATION
    • 用于激光脉冲放大的自动胶片形状光谱成像装置
    • US20110317427A1
    • 2011-12-29
    • US12735943
    • 2009-03-05
    • Ming LiYaping DaiTao WangBin ZhangZhengxiu Fan
    • Ming LiYaping DaiTao WangBin ZhangZhengxiu Fan
    • H01S3/101G02B27/10
    • G01J3/18G01J2003/1282G02B19/0023G02B19/0052G02B27/0927G02B27/0944G02B27/0983G02B27/30H01S3/0057H01S3/0813H01S3/235
    • A self-collimator concave spectral shaping device for chirped-pulse-amplification (CPA): uses a spectrum decomposing system with CTSI construction, a spectrum synthesizing system with CTSI structure that is symmetrical to the decomposing structure, and a spectrum shaping system including an aperture and a planar reflector for spectrum shaping function design. The device accomplishes the following functions: firstly decomposing the spectrum of a chirped temporal pulse laser to a spectral domain; then shaping the spectrum in the spectral domain; finally synthesizing un-shiftily this shaped spectrum in the spectral domain into a temporal chirped pulse with a designed shape. The device has the feature of requiring less optical components, compacting the structure, requiring less space, cheap in cost, and running stability, for its small size of concave reflector, and its self-collimation and its symmetrical distribution, which it can be not only utilized in a general laser spectrum shaping and spectrum modulation, but also can be utilized for a high energy and ultra-high peak-power laser system in chirped pulse amplification with a large caliber and with a chirped pulse bandwidth of a few nanometers.
    • 用于啁啾脉冲放大(CPA)的自准直凹凹光谱整形装置:使用具有CTSI结构的频谱分解系统,具有与分解结构对称的CTSI结构的频谱合成系统,以及包括孔径的频谱整形系统 以及用于频谱整形功能设计的平面反射器。 该设备完成以下功能:首先将啁啾脉冲激光的频谱分解为频域; 然后在光谱域中整形光谱; 最后在频谱域中将该形状谱非移动地合成具有设计形状的时间啁啾脉冲。 该器件具有要求较少的光学部件,压实结构,需要更少的空间,便宜的成本和运行稳定性,因为其小尺寸的凹面反射器,以及其自准直和对称分布,其不可能 仅用于一般的激光光谱整形和光谱调制,而且还可以用于具有大口径和啁啾脉冲带宽为几纳米的啁啾脉冲放大中的高能量和超高峰值功率激光系统。