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    • 1. 发明授权
    • Method and system for allocating memory to a pipeline
    • 将内存分配给管道的方法和系统
    • US08775767B2
    • 2014-07-08
    • US13207528
    • 2011-08-11
    • Atsushi FukudaMasakuni OkadaKazuto YamafujiTakashi Yonezawa
    • Atsushi FukudaMasakuni OkadaKazuto YamafujiTakashi Yonezawa
    • G06F12/00G06F9/00G06F12/02G06F9/38
    • G06F12/023G06F9/3851G06F9/3885G06F15/17375
    • A method, and associated system, for allocating memory to a first pipeline that includes a sequence of filters. Each filter is configured to execute a process specific to each filter, receive input data, and generate output data. The output data from each filter, except the last filter in the sequence, serves as the input data to the next filter in the sequence. An optimum memory capacity is allocated to the first pipeline if possible. Otherwise, a guaranteed memory bandwidth is allocated to the first pipeline if possible. Otherwise, extra memory currently allocated to a second pipeline is currently released if the second pipeline not currently performing processing or subsequently released when the second pipeline subsequently completes performing processing that is currently being performed, followed by allocating the extra memory to the first pipeline.
    • 一种用于将存储器分配给包括一系列过滤器的第一流水线的方法和相关联的系统。 每个过滤器被配置为执行特定于每个过滤器的过程,接收输入数据并生成输出数据。 来自每个滤波器的输出数据(序列中的最后一个滤波器除外)用作序列中下一个滤波器的输入数据。 如果可能,最佳的存储容量被分配给第一管道。 否则,如果可能,将保证的存储器带宽分配给第一管道。 否则,当第二管道当前正在执行处理或随后当第二管道随后完成执行当前正在执行的处理时,随后将额外的存储器分配给第一管道时,当前分配给第二管道的额外存储器当前被释放。
    • 2. 发明授权
    • System for performing schedule management, schedule management method and program
    • 用于执行进度管理,进度管理方法和程序的系统
    • US08655696B2
    • 2014-02-18
    • US12354671
    • 2009-01-15
    • Hiroyuki AkatsuAtsushi FukudaTakashi NeromeMasayuki Numao
    • Hiroyuki AkatsuAtsushi FukudaTakashi NeromeMasayuki Numao
    • G06Q10/00G06G1/12
    • G06Q10/10G06Q10/06G06Q10/06311
    • A system includes a structure information obtaining unit which obtains structure information containing information on components of a development target in a project and on dependency relationships between the components, the structure information described, e.g., in SysML, a work item determining unit which determines work items and a work execution order based on the structure information obtained by the structure information obtaining unit; a detailed item determining unit; a date scheduling unit and a WBS storage which manages the determined work items and work execution order as work schedule definition information. The work item determining unit determines a work item related to a leaf component, which is a component not including any other component, and determines, in a case where all of the multiple components included in a single predetermined component are leaf components, a work item related to a coupling relationship between the leaf components.
    • 一种系统,包括结构信息获取单元,其获得包含项目中的开发目标的组件的信息的结构信息以及组件之间的依赖关系,例如在SysML中描述的结构信息,确定工作项目的工作项确定单元 以及基于由结构信息获取单元获得的结构信息的工作执行顺序; 详细项目确定单元; 日历调度单元和WBS存储器,其将确定的工作项目和工作执行顺序作为工作调度定义信息进行管理。 工作项确定单元确定与不包括任何其他组件的组件相关的工作项,并且在包括在单个预定组件中的所有多个组件都是叶组件的情况下确定工作项 与叶分量之间的耦合关系有关。
    • 3. 发明申请
    • BIAS CIRCUIT
    • 偏置电路
    • US20110080230A1
    • 2011-04-07
    • US12898164
    • 2010-10-05
    • Atsushi FUKUDAHiroshi OkazakiShoichi Narahashi
    • Atsushi FUKUDAHiroshi OkazakiShoichi Narahashi
    • H03H7/01
    • H03F1/306H03F3/1935H03F2200/111H03F2200/18H03F2200/451H03F2200/75
    • A bias circuit includes: a bias supply terminal 800; a parallel capacitor 3 connected at one end thereof to the bias supply terminal 800 and grounded at the other end thereof; and a parallel circuit 3L connected in parallel with the parallel capacitor 3 and connected at one end thereof to the bias supply terminal 800. Let 2≦N. The parallel circuit 3L includes: a direct-current power supply connection terminal 600; N parallel inductors 21 to 2N connected in series with each other between the bias supply terminal 800 and the direct-current power supply connection terminal 600; and N−1 series resonators 91 to 9N−1. Each series resonator 91 to 9N−1 includes: a resonant capacitor 71 to 7N−1 connected at one end thereof to a connecting point between adjacent parallel inductors; and a resonant inductor 81 to 8N−1 connected at one end thereof to the other end of the resonant capacitor 71 to 7N−1 and grounded at the other end thereof.
    • 偏置电路包括:偏置电源端子800; 一个并联电容器3,其一端连接到偏置电源端子800并在其另一端接地; 以及与并联电容器3并联连接并在其一端连接到偏置电源端子800的并联电路3L。令2≦̸ N。 并联电路3L包括:直流电源连接端子600; 在偏置电源端子800和直流电源连接端子600之间彼此串联连接的N个并联电感器21〜2N; 和N-1系列谐振器91至9N-1。 每个串联谐振器91至9N-1包括:在其一端连接到相邻并联电感器之间的连接点的谐振电容器71至7N-1; 以及在其一端连接到谐振电容器71至7N-1的另一端并在其另一端接地的谐振电感器81至8N-1。
    • 4. 发明授权
    • Radiological imaging apparatus, radiological imaging method, and program
    • 放射成像设备,放射成像方法和程序
    • US07677800B2
    • 2010-03-16
    • US12045383
    • 2008-03-10
    • Toshitaka AganoSatoshi ArakawaAtsushi Fukuda
    • Toshitaka AganoSatoshi ArakawaAtsushi Fukuda
    • A61B6/06
    • A61B6/587A61B6/4429A61B6/547
    • A radiological imaging apparatus that includes a radiation source, a radiation detection section that detects radiation that passes through a subject, a signal detection section that detects signals from a plurality of signal generating sections disposed on the radiation detection section, a signal comparison section that compares the signals detected by the signal detection section, a positional relationship judgment section that makes a judgment as to whether a positional relationship between the radiation detection section and the radiation source is a predetermined positional relationship, a position control section that controls a position of at least one of the radiation source and the radiation detection section to maintain the positional relationship, a position control holding section that holds and fixes the radiation source and the radiation detection section, and a notification section that provides notification in a case where the positional relationship is not the predetermined positional relationship during holding.
    • 一种放射线成像装置,包括:辐射源,检测通过被检体的辐射的放射线检测部;检测来自设置在所述放射线检测部上的多个信号生成部的信号的信号检测部;比较 由信号检测部检测的信号,判断放射线检测部与放射线源之间的位置关系是否为规定的位置关系的位置关系判断部,至少控制位置控制部的位置控制部 辐射源和放射线检测部分中的一个用于保持位置关系,位置控制保持部分,其保持和固定辐射源和放射线检测部分;以及通知部分,其在位置关系不是的情况下提供通知 预言 持仓期间的定位关系。
    • 5. 发明授权
    • Matching circuit
    • 匹配电路
    • US07656249B2
    • 2010-02-02
    • US12115853
    • 2008-05-06
    • Atsushi FukudaHiroshi OkazakiShoichi Narahashi
    • Atsushi FukudaHiroshi OkazakiShoichi Narahashi
    • H03H7/38
    • H03F1/56H03F3/193H03F3/601H03F2200/111H03F2200/387H03F2200/423H03F2200/451H03H7/38
    • First, second and third matching parts 110, 120, and 130 are connected in series between a circuit element 199 whose impedance has a frequency characteristic and a circuitry 198 having a constant impedance. The second matching part 120 has the capability of converting impedances. The first matching part 110 operates as an element having reactance values according to any of frequency bands selected by exclusive switching between on and off of switches 118, 119 and the third matching part 130 operates as an element having reactance values according to any of the frequency bands selected by switching between on and off of a switch 133, thereby providing matching in each frequency band. A seventh reactance circuit 131 is configured on the basis of an interdependence relation with the configuration of a fifth reactance circuit 115 and an eighth reactance circuit 132.
    • 首先,第二和第三匹配部分110,120和130串联连接在阻抗具有频率特性的电路元件199和具有恒定阻抗的电路198之间。 第二匹配部件120具有转换阻抗的能力。 第一匹配部分110作为具有根据通过开关118,119的导通和关断之间的专用切换而选择的任何频带的电抗值的元件操作,并且第三匹配部分130作为具有根据任何频率的电抗值的元件 通过在开关133的导通和截止之间切换而选择的频带,从而在每个频带中提供匹配。 第七电抗电路131基于与第五电抗电路115和第八电抗电路132的配置的相互依赖关系来构造。
    • 10. 发明授权
    • Bias circuit
    • 偏置电路
    • US07385450B2
    • 2008-06-10
    • US11370863
    • 2006-03-09
    • Atsushi FukudaHiroshi OkazakiShoichi Narahashi
    • Atsushi FukudaHiroshi OkazakiShoichi Narahashi
    • H03F3/04
    • H03F1/30H03F3/191H03F2200/111H03F2200/249H03F2200/252H03F2200/27
    • The present invention has for its object to provide a bias circuit capable of handling multiple frequency bands, which has a low number of parts and can be miniaturized. As a solving means therefor, the bias circuit of the present invention comprises: a first reactance means 2 and a second reactance means 5, one end each of which is connected to a bias point 210 to which an alternating current signal is supplied; a capacitive means 3 connecting the other end of first reactance means 2; and a direct-current circuit 4 supplying a direct-current bias signal to the connection point of first reactance means 2 and capacitive means 3. Then, the reactance values of first and second reactance means 2, 5 have been set so as to make the combined admittance, seen from the alternating current signal supply point toward the side of first reactance element 2 and second reactance element 5, zero.
    • 本发明的目的是提供一种能够处理多个频带的偏置电路,其具有少量的部件并且可以被小型化。 作为其解决方案,本发明的偏置电路包括:第一电抗装置2和第二电抗装置5,其一端连接到供应有交流信号的偏置点210; 连接第一电抗装置2的另一端的电容装置3; 以及向第一电抗装置2和电容装置3的连接点提供直流偏置信号的直流电路4。 然后,第一和第二电抗装置2,5的电抗值被设定为使得从交流信号供给点朝向第一电抗元件2和第二电抗元件5的一侧看去的组合导纳为零。