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    • 24. 发明申请
    • Optical transmission network, optical transmission apparatus, dispersion compensator arrangement calculation apparatus and dispersion compensator arrangement calculation method
    • 光传输网络,光传输装置,色散补偿器布置计算装置和色散补偿器布置计算方法
    • US20050175279A1
    • 2005-08-11
    • US11101518
    • 2005-04-08
    • Ichiro NakajimaHiroaki TomofujiTakeshi SakamotoYuji Shimada
    • Ichiro NakajimaHiroaki TomofujiTakeshi SakamotoYuji Shimada
    • H04B10/2507H04B10/07H04B10/2525H04B10/27H04B10/275H04B10/29H04J14/00H04J14/02G02B6/28
    • H04B10/25253
    • An optical transmission network includes a first dispersion compensator arranged in a maximum dispersion span having a maximum dispersion value and searched out from within a maximum dispersion route having a maximum dispersion value from among routes of non-regeneration intervals within which a dispersion value before dispersion compensation does not satisfy an upper limit of a dispersion tolerance, and a second dispersion compensator arranged in a maximum dispersion span having a maximum dispersion value searched out from within a maximum dispersion route having a maximum dispersion value from among the routes when a dispersion compensator is successively arranged until a route of a non-regeneration interval within which a dispersion value of a certain channel does not satisfy the dispersion tolerance does not remain any more based on the dispersion value after the dispersion compensation with respect to the searched out maximum dispersion span. The dispersion compensation amounts of the first and second dispersion compensators are such that, when the dispersion compensation amount of the maximum dispersion span in which the first and second dispersion compensators are arranged is successively increased, the span has a residual dispersion value equal to or higher than a fixed range and the maximum dispersion route which relates to the spans has a residual dispersion value which satisfies the dispersion tolerance or the span has a residual dispersion value which is within the fixed range.
    • 光传输网络包括布置在具有最大色散值的最大色散跨度中的第一色散补偿器,并且从在非再生间隔的路径内具有最大色散值的最大色散路径内搜索出的第一色散补偿器,其中色散补偿之前的色散值 不满足色散公差的上限,并且在色散补偿器连续地从线路中具有最大色散值的最大色散路径中搜索出的具有最大色散值的最大色散范围内的第二色散补偿器 排列直到某个通道的色散值不满足色散容限的非再生间隔的路径基于相对于搜索出的最大色散跨度的色散补偿之后的色散值不再存在。 第一和第二色散补偿器的色散补偿量使得当排列第一和第二色散补偿器的最大色散跨度的色散补偿量依次增加时,跨度具有等于或等于更高的残余色散值 与固定范围相关联的最大色散路径与跨度相关的最大色散路径具有满足色散公差或跨度的残留色散值具有在固定范围内的残留色散值。
    • 25. 发明授权
    • Canister vacuum cleaner with automatic operation control
    • 罐式吸尘器具有自动运行控制
    • US4953253A
    • 1990-09-04
    • US373068
    • 1989-06-29
    • Norisuke FukudaYuji Shimada
    • Norisuke FukudaYuji Shimada
    • B60R19/24A47L9/00A47L9/04A47L9/28
    • A47L9/0411A47L9/2826A47L9/2847Y02B40/82
    • A canister vacuum cleaner capable of performing automatic control of rotary brush operation, locally within the power nozzle without communication between the power nozzle and the canister and of performing suction power control in accordance with the floor condition, without any extra electric connection between the power nozzle and the canister other than that for activating the rotary brush motor. The canister vacuum cleaner includes a power nozzle for cleaning floor by using the suction power including: a rotary brush for beating the floor; a rotary brush motor for activating the rotary brush; floor condition detector; and a device for controlling the rotary brush motor in accordance with the detected floor condition.
    • 一种罐式真空吸尘器,其能够在动力喷嘴内局部地自动控制旋转刷操作,而不需要在动力喷嘴和罐之间进行通信,并且根据地板条件执行抽吸动力控制,而不需要在动力喷嘴之间进行任何额外的电连接 以及用于激活旋转刷马达的罐以外的罐。 罐式吸尘器包括用于通过使用吸力来清洁地板的动力喷嘴,包括:用于打地板的旋转刷; 用于启动旋转刷的旋转刷马达; 地板状态检测器; 以及根据检测到的底板条件来控制旋转刷马达的装置。
    • 26. 发明授权
    • Method for measuring optical characteristics and system thereof
    • 测量光学特性的方法及其系统
    • US07756422B2
    • 2010-07-13
    • US11502535
    • 2006-08-11
    • Takeshi SakamotoKosuke KomakiYuji ShimadaTakuji Maeda
    • Takeshi SakamotoKosuke KomakiYuji ShimadaTakuji Maeda
    • H04B10/00
    • H04B10/07
    • During initial start-up of an optical communication system, an ASE reference span loss is calculated based on transmitting power and received power of ASE light generated by an optical amplifier, and an OSC reference span loss is calculated based on the transmitting power and the received power of OSC light. During normal operation of the optical communication system, a span loss is calculated using the OSC light, and an amount of change in the span loss representing a difference between the span loss and the OSC reference span loss is calculated. A current span loss between a transmitting station and a receiving station is calculated by adding the amount of change in the span loss to the ASE reference span loss.
    • 在光通信系统的初始启动期间,基于由光放大器产生的ASE光的发射功率和接收功率来计算ASE参考跨度损耗,并且基于发射功率和接收到的功率来计算OSC参考跨度损耗 OSC灯的功率。 在光通信系统的正常工作期间,使用OSC灯计算跨度损耗,并且计算表示跨度损耗与OSC参考跨度损耗之间的差异的跨度损耗的变化量。 通过将跨度损耗的变化量与ASE参考跨度损耗相加来计算发送站和接收站之间的电流跨度损耗。
    • 30. 发明授权
    • Lottery device
    • 彩票装置
    • US07396013B2
    • 2008-07-08
    • US11200053
    • 2005-08-10
    • Masato ItoYuji ShimadaMakoto TanakaNaoki Kawajiri
    • Masato ItoYuji ShimadaMakoto TanakaNaoki Kawajiri
    • A63F7/04A63F13/00
    • A63F5/02A63F3/061A63F2007/4043A63F2009/2442A63F2009/2451G07C15/001
    • A lottery device has a turntable 12 with a plurality of ball pockets 13 and balls 2 each to be dropped onto the turntable 12, rolls on the turntable 12 and eventually falls into one of the ball pockets 13 to determine a winner ball pocket 13. The lottery device includes sets of sensors 24 and 25 combined with the ball pockets 13, respectively, to detect the ball that has fallen into the corresponding ball pocket 13, light-emitting rings 23 combined with the ball pockets 13, respectively, a ball identifying mechanism 41 for identifying the balls by type, and a computer 100 including a storage unit storing control programs and controlling lottery operations according to the control programs. The computer 100 executes a control procedure including the steps of: determining a color, indicating the type of the ball identified by the ball identifying mechanism 41, in which the light-emitting ring 23 emits light according to a control program, receiving detection signals provided by the sensors 24 and 25 combined with the ball pocket 13 into which the ball 2 has fallen, and causing the light-emitting ring 23 combined with the ball pocket 13 into which the ball has fallen to emit light in the predetermined color. The lottery device engrosses the players by effectively making the light-emitting rings 23 emit light according to the state of the lottery game to appeal the functions of the ball pockets 13 to the players.
    • 彩票装置具有转盘12,多个球窝13和球2分别落在转盘12上,在转台12上滚动,最终落入一个球窝13中,以确定获胜球袋13。 彩票装置分别包括与球穴13组合的一组传感器24和25,以分别检测已落入对应的球窝13中的球,与球穴13组合的发光环23,球识别 用于根据类型识别球的机构41,以及包括存储控制程序的存储单元和根据控制程序控制彩票操作的计算机100。 计算机100执行控制程序,包括以下步骤:根据控制程序确定指示发光环23发光的球识别机构41识别的球的类型的颜色,接收检测信号 通过与球2已经落下的球袋13组合的传感器24和25,并且使球发出的环23与球囊13结合,以便以预定颜色发光。 彩票装置通过有效地使发光环23根据彩票游戏的状态发光来吸引玩家,从而吸引球袋13的功能给玩家。