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    • 21. 发明授权
    • System for establishing new path in ring network and dividing ring
shaped path into plurality of ring shaped paths by being rid of faulty
path
    • 用于在环网中建立新路径并通过消除故障路径将环形路径分割成多个环形路径的系统
    • US5712968A
    • 1998-01-27
    • US910454
    • 1992-07-08
    • Yoshiyuki NakayamaTakeshi IshizakiKenjiro MoriFumio NakamuraTadashi Yamamitsu
    • Yoshiyuki NakayamaTakeshi IshizakiKenjiro MoriFumio NakamuraTadashi Yamamitsu
    • G06F11/00H04L12/18H04L12/437
    • G06F11/0793G06F11/0709H04L12/1813H04L12/437
    • A conference system is formed by multiple workstations which have individual conference control programs and are connected to a network, with each workstation having a destination workstation determined in advance so that a ring-shaped logical communication path is formed on the network. A conference control program which detects a fault on its receiving path during a conference sends a fault recovery request message including an identifier of the conference control program itself and the address of the workstation to the neighboring workstation, and the conference control program of the neighboring workstation relays the received fault recovery request message to the next workstation on the ring-shaped logical communication path so that the fault recovery request message is propagated on the ring-shaped logical communication path. The conference control program of a workstation which is located immediately upstream of the fault and is therefore unable to send the received fault recovery request message to the neighboring workstation carries out a procedure of establishing a new communication path to the conference control program of the workstation which issued the fault recovery request message.
    • 会议系统由具有各个会议控制程序并连接到网络的多个工作站形成,每个工作站具有预先确定的目的地工作站,使得在网络上形成环形逻辑通信路径。 在会议期间检测其接收路径上的故障的会议控制程序向相邻工作站发送包括会议控制程序本身的标识符和工作站的地址的故障恢复请求消息,以及相邻工作站的会议控制程序 将接收到的故障恢复请求消息中继到环形逻辑通信路径上的下一个工作站,使得故障恢复请求消息在环形逻辑通信路径上传播。 位于故障紧邻上游的工作站的会议控制程序因此不能将接收到的故障恢复请求消息发送到相邻工作站,执行向工作站的会议控制程序建立新的通信路径的过程, 发出故障恢复请求消息。
    • 22. 发明授权
    • Collaborative information processing system and workstation
    • 协同信息处理系统和工作站
    • US5379374A
    • 1995-01-03
    • US795828
    • 1991-11-21
    • Takeshi IshizakiYoshiyuki NakayamaKenjiro MoriFumio NakamuraTadashi Yamamitsu
    • Takeshi IshizakiYoshiyuki NakayamaKenjiro MoriFumio NakamuraTadashi Yamamitsu
    • G06F3/12G06F13/00G06F15/00G09G5/14H04L29/02G06F3/14G06F15/16
    • G09G5/14
    • In a collaborative information processing system including a plurality of terminals each having a multiwindow function and each being connected to the other terminal via a network, each terminal includes a plurality of application programs for issuing a request for an input event and a request for a window, a window server for converting input data received from the input device into a logical input event and for updating an image on a display screen depending on the content of an output request received from the application program, a plurality of window library modules connected to the window server via a logical communication path and linked with the application programs, and a control program for communicating an input event with other terminals via the network. Each window library module linked with an application program in a collaborative operation mode transfers an input event received from the window server to the control program and delivers an input event received from the control program to the application program to which it is linked therewith.
    • 在包括多个终端的协作信息处理系统中,每个终端具有多窗口功能,并且每个终端经由网络连接到另一终端,每个终端包括用于发出对输入事件的请求和窗口请求的多个应用程序 ,用于将从输入装置接收的输入数据转换为逻辑输入事件并根据从应用程序接收到的输出请求的内容来更新显示屏上的图像的窗口服务器;多个窗口库模块,连接到 通过逻辑通信路径与应用程序链接的窗口服务器,以及用于经由网络与其他终端通信输入事件的控制程序。 以协同操作模式与应用程序链接的每个窗口库模块将从窗口服务器接收的输入事件传送到控制程序,并将从控制程序接收到的输入事件传递到与其相关联的应用程序。
    • 25. 发明授权
    • Battery state-of-charge estimator
    • 电池充电状态估算器
    • US07443139B2
    • 2008-10-28
    • US10519573
    • 2003-06-25
    • Masahiko MitsuiYoshiyuki Nakayama
    • Masahiko MitsuiYoshiyuki Nakayama
    • H02J7/00
    • G01R31/3624G01R31/3648
    • A battery ECU estimates the SOC by integrating the battery current measured by a current sensor, and the battery voltage Vnis measured by a voltage sensor, and the battery temperature Tnis measured by a thermometer if the fluctuation of the charging/discharging current is great. If the number m of estimations of SOCnis m≦10, m is incremented. The battery internal resistance Rnis estimated from the measured battery temperature Tnby using a correlation map showing the correlation between the previously stored battery temperature T and the battery internal resistance R. An estimation charging/discharging current Inis determined using the measured battery voltage Vn,the battery open voltage Vocvn-1determined on the basis of the previously estimated charged state, and the estimated battery internal resistance Rn. The SOCnis estimated by integrating the estimated charging/discharging current In. If the number m of estimations of the SOCnis m=10, the number m of estimations is changed to 0. The charging/discharging current inis measured by a current sensor. The battery internal resistance Rnis calculated from the battery voltage Vnand the charging/discharging current in. The battery temperature Tnis also measured, and the T-R correlation map is corrected
    • 电池ECU通过对由电流传感器测量的电池电流进行积分来估计SOC,并且电池电压V N n由电压传感器测量,并且电池温度T N n 如果充放电电流的波动大,则由温度计测量。 如果SOC的估计数m为m <= 10,则m增加。 通过使用示出先前存储的电池温度T和电池内部电阻R之间的相关性的相关图来从测量的电池温度T N n N估计电池内部电阻R n N 使用测量的电池电压V N n N确定估计的充电/放电电流I N n N,其中确定的电池开路电压V oc ocn-1 < 预先估计的充电状态的基础以及估计的电池内部电阻R n n N。 通过对估计的充电/放电电流I N n进行积分来估计SOC 。 如果SOC的估计数m为m = 10,则估计数m改为0.充电/放电电流i N n通过a 电流传感器 根据电池电压V N n N和充电/放电电流i N n N计算电池内阻R n N。 也测量电池温度T N n N,并校正T-R相关图。