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    • 42. 发明申请
    • IN-LANE RUNNING SUPPORT SYSTEM, AUTOMOBILE AND IN-LANE RUNNING SUPPORT METHOD
    • 在线运行支持系统,汽车和在线运行支持方法
    • US20090024279A1
    • 2009-01-22
    • US12174140
    • 2008-07-16
    • Yuya TAKEDATakeshi KimuraTaku TakahamaTomoyuki KashiwayaYukinori Nishida
    • Yuya TAKEDATakeshi KimuraTaku TakahamaTomoyuki KashiwayaYukinori Nishida
    • B62D6/00
    • B62D15/025B60W50/16B62D5/006B62D6/008
    • The in-lane running support system includes a steering input device and a steering input detector. The in-lane running support system further comprises a reaction force device that changes a condition of the steering input device between a normal operation mode that provides a normal reaction force to the driver, and a hapthic operation mode that performs a notification operation to the driver, a turning output device that is in a state mechanically disconnected from the steering input device and that turns steerable wheels, and a turning output controller. A running state detecting device acquires information of a running state of the vehicle with respect to a lane. An in-lane running support device controls the turning output device and the haptic device based on the information of the running state such that the vehicle runs in the lane, and has a first control mode that controls the turning output control device and causes the reaction force device to operate in the normal operation mode, and a second control mode that controls the turning output control device and causes the reaction force device to operate in the haptic operation mode.
    • 车内行驶支持系统包括转向输入装置和转向输入检测器。 车内行驶辅助系统还包括反作用力装置,其将转向输入装置的状态改变为向司机提供正常反作用力的正常操作模式和向驾驶员执行通知操作的触觉操作模式 转向输出装置,其处于与转向输入装置机械断开并转向可转向轮的状态和转向输出控制器。 运行状态检测装置获取关于车道的行驶状态的信息。 车内行驶辅助装置根据运行状态的信息来控制车削输出装置和触觉装置,使得车辆在车道中行驶,并且具有控制车削输出控制装置并引起反作用的第一控制模式 力装置在正常运行模式下运行,第二控制模式控制转向输出控制装置,并使反力装置在触觉操作模式下运行。
    • 44. 发明申请
    • Vehicle driving assist system
    • 车辆驾驶辅助系统
    • US20070012499A1
    • 2007-01-18
    • US11481055
    • 2006-07-06
    • Yousuke KobayashiGenpei NaitoTakeshi KimuraHiroyuki Yoshizawa
    • Yousuke KobayashiGenpei NaitoTakeshi KimuraHiroyuki Yoshizawa
    • B62M23/02
    • B60T7/22B60T2201/02B60W10/184B60W40/09B60W2540/10
    • A vehicle driving assist system executes an actuation reaction force control of accelerator pedal, a driving force control or a braking force control in a manner that is appropriate in consideration of the traffic situation in which the vehicle is being driven. The vehicle driving assist system calculates a risk potential that indicates the degree of convergence between the vehicle and an obstacle existing in front of the vehicle based on a prescribed control pattern. Then, based on the risk potential, the accelerator pedal actuation reaction, the host vehicle driving force and/or the host vehicle braking force are controlled. The intent of the driver regarding acceleration and deceleration based on the actuation state of the accelerator pedal is preferably used in controlling one or all of the accelerator pedal actuation reaction, the host vehicle driving force and the host vehicle braking force.
    • 车辆驾驶辅助系统以考虑到车辆被驱动的交通状况为适当的方式来执行加速器踏板的致动反作用力控制,驱动力控制或制动力控制。 车辆驾驶辅助系统基于规定的控制模式来计算指示车辆与存在于车辆前方的障碍物之间的收敛程度的风险潜力。 然后,基于潜在风险,控制加速器踏板动作反应,主车辆驱动力和/或主车辆制动力。 基于加速器踏板的致动状态的驾驶员关于加速和减速的目的优选地用于控制加速踏板致动反应,主车辆驱动力和主车辆制动力中的一个或全部。
    • 45. 发明申请
    • Frequency adjustment circuit
    • 频率调节电路
    • US20060033583A1
    • 2006-02-16
    • US11196512
    • 2005-08-04
    • Tetsuya TokunagaHiroyuki AraiTakeshi KimuraRyouichi AndoMamoru Yamaguchi
    • Tetsuya TokunagaHiroyuki AraiTakeshi KimuraRyouichi AndoMamoru Yamaguchi
    • H03L7/00
    • H03K3/0231H03K2005/00084
    • A frequency adjustment circuit that maintains a target frequency even when frequency adjustment data of zapping circuit is changed by an external noise is offered. The frequency adjustment circuit includes a reset signal generation circuit, a frequency adjustment data latch circuit that latches and retains the frequency adjustment data ZP1 and ZP2 generated by a first zapping circuit and a second zapping circuit based on a latch clock ZCLK and a latch clock generation circuit that generates the latch clock ZCLK. The reset signal generation circuit generates a periodic reset signal ZRES that is synchronized with a rise of an enable signal EN generated from an interface circuit. The latch clock generation circuit generates the latch clock ZCLK that is synchronized with a fall of the enable signal EN.
    • 提供即使在由于外部噪声而使切换电路的频率调整数据变化的情况下也能够维持目标频率的频率调整电路。 频率调整电路包括复位信号生成电路,频率调整数据锁存电路,其锁存并保持由第一切换电路产生的频率调整数据ZP 1和ZP 2,以及基于锁存时钟ZCLK和锁存器的第二切换电路 时钟生成电路,生成锁存时钟ZCLK。 复位信号产生电路产生与从接口电路产生的使能信号EN的上升同步的周期性复位信号ZRES。 锁存时钟产生电路产生与使能信号EN的下降同步的锁存时钟ZCLK。
    • 49. 发明授权
    • Connectionless communication method
    • 无连接通信方式
    • US06381244B1
    • 2002-04-30
    • US09042979
    • 1998-03-17
    • Takashi NishimuraNaohide SekiyaTakeshi KimuraHideki InoueHiroshi NaganoIkuo Taoka
    • Takashi NishimuraNaohide SekiyaTakeshi KimuraHideki InoueHiroshi NaganoIkuo Taoka
    • H04L1256
    • H04L12/5601H04L2012/562H04L2012/5645
    • A plurality of datagram VCCs, each of which is exclusively for connectionless transfer of data, are established between mutually adjacent exchanges in advance, one of these datagram VCCs is assigned exclusively for connectionless data communication and connectionless communication is performed using this datagram VCC. Specifically, an originating terminal disassembles connectionless data into data cells, inserts a cell (a leading cell), which indicates the destination address of a terminal that is the destination of the data, at the head of the data cells and then sends the leading cell to the exchange prior to the data cells. The exchange assigns a prescribed datagram VCC for connectionless communication upon referring to the destination terminal address indicated by the leading cell and thenceforth uses this VCC to transmit data cells having line identifier identical with that of the leading cell.
    • 预先在彼此相邻的交换机之间建立多个专用于数据无连接传输的数据报VCC,这些数据报VCC之一被专门用于无连接数据通信,并且使用该数据报VCC执行无连接通信。 具体来说,始发终端将无连接数据分解成数据单元,将数据单元的头部表示作为数据的目的地的终端的目的地地址的单元(前导单元)插入前端单元 在数据单元之前交换。 交换机在参考由前导小区指示的目的地终端地址时分配用于无连接通信的规定数据报VCC,然后使用该VCC发送具有与前导小区的行标识符相同的线路标识符的数据信元。