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    • 14. 发明申请
    • FEATURE PARAMETER CANDIDATE GENERATION APPARATUS AND FEATURE PARAMETER CANDIDATE GENERATION METHOD
    • 特征参数候选生成装置和特征参数候选生成方法
    • US20100235151A1
    • 2010-09-16
    • US12740336
    • 2008-10-31
    • Mitsuhiro YonedaHiroshi NakajimaNaoki TsuchiyaHiroshi Tasaki
    • Mitsuhiro YonedaHiroshi NakajimaNaoki TsuchiyaHiroshi Tasaki
    • G06F17/10
    • G06K9/6298G06F19/00G16H50/50
    • A feature parameter candidate generation apparatus has a storage unit that stores the values of feature parameters extracted from each of samples, an index value calculation unit that calculates an index value, which is obtained by normalizing the number of the kinds of the values of feature parameters by the number of the samples, for each of the feature parameters, an evaluation object selection unit that selects combinations of feature parameters which are objects to be evaluated, an evaluation unit that evaluates whether the uniformity of a frequency distribution of index values of the individual feature parameters for combinations of feature parameters selected as the objects to be evaluated satisfies a predetermined criterion, and a candidate determination unit that determines, as feature parameter candidates to be given to the model generation device, a combination of feature parameters that is evaluated to satisfy the predetermined criterion.
    • 特征参数候选生成装置具有存储单元,存储从各样本提取的特征参数的值,计算索引值的索引值计算单元,该索引值计算单元通过对特征参数的值的种类的数量进行归一化而获得 通过对于每个特征参数的样本数量,评估对象选择单元,其选择作为评估对象的特征参数的组合;评估单元,其评估个体的指标值的频率分布的均匀性 作为要评估对象选择的特征参数的组合的特征参数满足预定标准,以及候选确定单元,其将作为要赋予模型生成装置的特征参数候补确定为评估满足的特征参数的组合 预定标准。
    • 15. 发明申请
    • Information Processing Apparatus and Method of Controlling Information Processing Apparatus
    • 信息处理装置及信息处理装置的控制方法
    • US20090265708A1
    • 2009-10-22
    • US12337427
    • 2008-12-17
    • Hiroshi Nakajima
    • Hiroshi Nakajima
    • G06F9/455
    • G06F9/45558G06F2009/45579
    • According to one embodiment, an information processing apparatus in which virtual machine run under a hypervisor, includes a device manager configured to create a device model including information that is used when assigning an I/O device to the virtual machine in accordance with a device profile and an arrangement of I/O devices, and an address conversion circuit configured to perform address conversion for the virtual machine to make an MMIO access to the assigned I/O device and to perform address conversion to conduct a DMA transfer between the assigned I/O device and the virtual machine, wherein the hypervisor assigns the I/O device to the virtual machine based on the device model, and the virtual machine utilizes, when making the MMIO access to the assigned I/O device or conducting the DMA transfer with the assigned I/O device, the address conversion circuit to make the access or conducts the DMA transfer.
    • 根据一个实施例,一种虚拟机在管理程序下运行的信息处理装置,包括设备管理器,该设备管理器被配置为创建包括根据设备配置文件向虚拟机分配I / O设备时使用的信息的设备模型 以及I / O设备的布置,以及地址转换电路,被配置为对虚拟机执行地址转换以使MMIO访问所分配的I / O设备,并执行地址转换以在所分配的I / O设备之间进行DMA传输。 O设备和虚拟机,其中管理程序基于设备模型将I / O设备分配给虚拟机,并且当使MMIO访问分配的I / O设备或进行DMA传输时,虚拟机利用 分配的I / O设备,地址转换电路进行访问或进行DMA传输。
    • 20. 发明授权
    • Electric double layer capacitor
    • 双电层电容器
    • US07317607B2
    • 2008-01-08
    • US10576251
    • 2004-09-27
    • Seiji OmuraHiroshi Nakajima
    • Seiji OmuraHiroshi Nakajima
    • H01G9/00
    • H01G9/06H01G9/10H01G11/26H01G11/52Y02E60/13
    • In an electric double layer capacitor including two plate-like polarizable electrodes stacked in layers via a separator and constituted by housing these in an outer packaging member, a contact area between a first polarizable electrode and the separator is different from a contact area between a second polarizable electrode and the separator, and the polarizable electrode with a smaller contact area is formed thicker than the polarizable electrode with a larger contact area. In addition, it is preferable that the first polarizable electrode and the second polarizable electrode have a generally equal volume.
    • 在包括通过隔板层叠的两个板状可极化电极的双电层电容器中,通过将它们容纳在外包装构件中而构成,第一可极化电极和隔板之间的接触面积与第二可电极电极之间的接触面积不同, 可极化电极和隔板,并且具有较小接触面积的可极化电极形成得比具有较大接触面积的可极化电极厚。 此外,优选的是,第一可极化电极和第二可极化电极具有大致相等的体积。