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    • 44. 发明申请
    • ENABLING CLUSTER SCALING
    • 启用集群扩展
    • US20130024554A1
    • 2013-01-24
    • US13612445
    • 2012-09-12
    • Li Rong JianJie QiuJie Y. YangTao YuXiao Zhong
    • Li Rong JianJie QiuJie Y. YangTao YuXiao Zhong
    • G06F15/177
    • H04L41/0843H04L41/0846H04L41/0893H04L67/10
    • Embodiments of the present invention relate to methods and apparatuses for enabling cluster scaling. Specifically, there is disclosed a method of recording a context of configuration for an initial node of a cluster, comprising: retrieving at least one file to be used for configuring the initial node; and recording a context while configuring the initial node using the at least one file, the recorded context being information on the configuration of the initial node and to be used for enabling addition of a new node into the cluster. There is also disclosed a method of enabling addition of a new node into a cluster. Corresponding apparatuses are also disclosed. According to embodiments of the present invention, the efficiency of improving cluster scaling may be effectively improved.
    • 本发明的实施例涉及用于实现集群缩放的方法和装置。 具体地,公开了一种用于记录集群的初始节点的配置的上下文的方法,包括:检索要用于配置所述初始节点的至少一个文件; 以及在使用所述至少一个文件配置所述初始节点时记录上下文,所述记录的上下文是关于所述初始节点的配置的信息,并且用于使得能够将新节点添加到所述集群中。 还公开了一种能够将新节点添加到群集中的方法。 还公开了相应的装置。 根据本发明的实施例,可以有效地提高改进集群缩放的效率。
    • 46. 发明授权
    • Predicting parasitic capacitance in schematic circuit simulations using sub-circuit modeling
    • 使用子电路建模预测原理图电路仿真中的寄生电容
    • US08150638B1
    • 2012-04-03
    • US12197921
    • 2008-08-25
    • Shuxian WuTao Yu
    • Shuxian WuTao Yu
    • G06F17/10G06F17/50
    • G06F17/5036
    • A computer-implemented method of determining parasitic capacitance for transistors within an integrated circuit can include determining a first set of coefficients for a first expression that calculates parasitic capacitance for a transistor structure according to a first plurality of parasitic capacitances derived from a plurality of two-dimensional transistor structures (320). The first set of coefficients can be inserted into the first expression (325). The method further can include determining a second set of coefficients for a second expression that calculates parasitic capacitance for a transistor structure according to a second plurality of parasitic capacitances derived from a plurality of three-dimensional transistor structures (345). The second expression can include the first expression (350). The method can include inserting the second set of coefficients into the second expression and outputting the second expression (355).
    • 用于确定集成电路内的晶体管的寄生电容的计算机实现的方法可以包括确定用于根据从多个二极管导出的第一多个寄生电容来计算晶体管结构的寄生电容的第一表达式的第一组系数, 二维晶体管结构(320)。 可以将第一组系数插入到第一表达式(325)中。 该方法还可以包括确定根据从多个三维晶体管结构(345)导出的第二多个寄生电容来计算晶体管结构的寄生电容的第二表达式的第二组系数。 第二个表达式可以包括第一个表达式(350)。 该方法可以包括将第二组系数插入第二表达式并输出第二表达式(355)。
    • 47. 发明授权
    • Adaptive known signal canceller
    • 自适应已知信号消除器
    • US08135058B2
    • 2012-03-13
    • US12249814
    • 2008-10-10
    • Jordan Christopher CookmanPing DongTao Yu
    • Jordan Christopher CookmanPing DongTao Yu
    • H04L27/01H04B3/20
    • H04L25/03159H04L25/0212H04L25/03057H04L27/2657H04L2025/03414
    • An adaptive known signal canceller comprising of a known signal canceller filter responsive to a known signal including a known portion of a transmitted signal, the known signal canceller filter operative to generate a filtered known signal, and a subtractor unit responsive to an input signal and operative to generate an output signal, the subtractor unit configured to subtract the filtered known signal from the input signal to generate an output signal, such that the known portion of the transmitted signal is substantially removed from the input signal. The adaptive known signal canceller further comprising of a known signal canceller update unit, responsive to a desired signal and an output signal and operative to continually adjust the coefficients of the known signal canceller filter based on the difference between the output signal and the desired signal, so that the filter coefficients substantially reflect the impulse response of a channel.
    • 一种自适应的已知信号消除器,其包括响应于包括已发射信号的已知信号的已知信号的已知信号消除器滤波器,用于产生已滤波的已知信号的已知信号消除器滤波器以及响应于输入信号和操作的减法器单元 为了产生输出信号,减法器单元被配置为从输入信号中减去已滤波的已知信号以产生输出信号,从而基本上从输入信号中去除已发射信号的已知部分。 自适应已知信号消除器还包括已知的信号消除器更新单元,响应所需信号和输出信号,并且可操作以基于输出信号和期望信号之间的差连续地调整已知信号消除器滤波器的系数, 使得滤波器系数基本上反映了信道的脉冲响应。