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    • 6. 发明授权
    • Power system control apparatus and power system control method
    • 电力系统控制装置及电力系统控制方法
    • US06188205B1
    • 2001-02-13
    • US09521209
    • 2000-03-08
    • Masahiko TanimotoYoshio IzuiYasuyuki KowadaKenji IbaNaoto FukutaKenichi DenoTetsuo Sasaki
    • Masahiko TanimotoYoshio IzuiYasuyuki KowadaKenji IbaNaoto FukutaKenichi DenoTetsuo Sasaki
    • G05F170
    • H02J3/1871H02J3/1835Y02E40/30
    • A desired value of reactive power flow between a to-be-controlled power system and an adjoining power system is determined according to measured values of the reactive power flow and an effective power flow and desired voltage values of the to-be-controlled power system and of the adjoining power system. Thereafter, a required value of a reactive power of the to-be-controlled power system is calculated according to the desired value of the reactive power flow, the measured values of the reactive power flow and the effective power flow, and the desired voltage value and a measured voltage value in the to-be-controlled power system. Thereafter, a control apparatus having an electric capacity near to the required value of the reactive power is selected from control apparatus arranged in the to-be-controlled power system to make the selected control apparatus adjust a voltage of the to-be-controlled power system. Therefore, cooperation of the to-be-controlled power system with the adjoining power system can be performed by collecting locally-existing-information, and a voltage fluctuation and/or a reactive power fluctuation in the to-be-controlled power system can be immediately suppressed.
    • 受控电力系统与相邻电力系统之间的无功功率流的期望值根据无功功率流的测量值和有效功率流以及待控制电力系统的期望电压值来确定 和相邻的电力系统。 此后,根据无功功率流的期望值,无功功率流和有效功率流的测量值和期望电压值来计算待控制电力系统的无功功率的所需值 以及受控电力系统中的测量电压值。 此后,从配置在受控电力系统中的控制装置中选择具有接近无功功率所需值的电容的控制装置,以使所选择的控制装置调节受控电力的电压 系统。 因此,可以通过收集本地存在的信息来执行受控电力系统与相邻电力系统的协作,并且可控电力系统中的电压波动和/或无功功率波动可以是 马上压制
    • 9. 发明授权
    • Wiring design method and system for electronic wiring boards
    • 电子线路板接线设计方法及系统
    • US07143385B2
    • 2006-11-28
    • US10803944
    • 2004-03-19
    • Katsuyuki ItouTetsuo SasakiToshiaki Okada
    • Katsuyuki ItouTetsuo SasakiToshiaki Okada
    • G06F17/50
    • G06F17/5077
    • A wiring design system when applied to wiring boards having various wiring restrictions, has a rough wiring plan at the floor plan stage so as to complete a wiring design satisfying the wiring restrictions in a short period of time while evaluating the congestion degree of the wiring. Logical connection information for wiring parts and signal group information for handling the connection information is input as a signal group. The signal group is handled as a wiring unit for a wiring path search and the signal group is divided into smaller groups. An optimum path is then determined in such a way that the divided smaller groups run adjacent to one another whenever appropriate.
    • 当应用于具有各种布线限制的布线板时的布线设计系统,在平面布置阶段具有粗略的布线方案,以便在评估布线的拥挤度的同时完成在短时间内满足布线限制的布线设计。 输入用于接线部分的逻辑连接信息和用于处理连接信息的信号组信息作为信号组输入。 信号组被作为布线路径搜索的布线单元处理,信号组被分成较小的组。 然后以适当的方式确定分割的较小组彼此相邻运行的最佳路径。
    • 10. 发明申请
    • Method and system for deciding a wiring route
    • 决定布线路线的方法和系统
    • US20050235243A1
    • 2005-10-20
    • US11083960
    • 2005-03-21
    • Ippei HachiyaTetsuo SasakiKatsuyuki ItohHiroyuki Suzuki
    • Ippei HachiyaTetsuo SasakiKatsuyuki ItohHiroyuki Suzuki
    • G06F17/50H03K17/693H05K3/00
    • G06F17/5077
    • By deciding a draw wiring route from a part to eliminate an intersection of wire connections generated by the part direction and the terminal arrangement order, it is possible to reduce the wiring layer used and increase the mounting density. Draw wiring processing from terminals of parts is performed prior to the entire wiring processing. In order to optimally perform the draw wiring processing, the parts connected to an object to be wired are moved onto a virtual wiring board and wiring processing is performed there. When moving a part from the real wiring board, an area around the part is cut out from the real wiring board and moved onto the virtual wiring board. On the virtual wiring board, the part direction is rotated and parallel-displaced to arrange it in the optimal state for the wiring to decide the draw wiring direction and perform wiring between the respective terminals.
    • 通过决定从零件的布线路线消除由部分方向和端子布置顺序产生的线连接,可以减少所使用的布线层并增加安装密度。 在整个接线处理之前进行从零件端子的接线处理。 为了最佳地执行拉制布线处理,连接到待布线对象的部件移动到虚拟布线板上,并且在那里执行布线处理。 当从真正的布线板移动零件时,将零件周围的区域从真正的布线板切出并移动到虚拟布线板上。 在虚拟布线板上,部件方向旋转并且平行移位,以使布线成为布线的最佳状态,以决定拉丝方向并执行各端子之间的布线。