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    • 3. 发明授权
    • Vibration reduction device and vibration reduction method
    • 减振装置及减振方法
    • US09387925B2
    • 2016-07-12
    • US13579150
    • 2011-02-11
    • Yuji YoshizakiHidetoshi SuzukiHiroshi Ito
    • Yuji YoshizakiHidetoshi SuzukiHiroshi Ito
    • B64C27/51B64C27/00F16F7/10
    • B64C27/001B64C2027/005F16F7/1005F16F2224/0283
    • A vibration reduction device includes: an elastic body; a dynamic mass; and a controllable mass. The dynamic mass is supported by an object of vibration reduction through the elastic body. An actuator causes the controllable mass to move with respect to the dynamic mass. Such a vibration reduction device can vary the frequency and the amplitude at which the dynamic mass vibrates with respect to the object of vibration reduction by causing the controllable mass to move appropriately with respect to the dynamic mass, thereby enabling vibration of the object of vibration reduction to be reduced more reliably. In addition, such a vibration reduction device can reduce vibration of a certain frequency of the object of vibration reduction even when the controllable mass is fixed with respect to the dynamic mass.
    • 减振装置包括:弹性体; 动态质量 和可控质量。 动态质量由通过弹性体进行减振的物体支撑。 致动器使可控质量相对于动态质量移动。 这样的减振装置可以通过使可控质量相对于动态质量适当地移动来改变动态质量相对于减振对象振动的频率和振幅,从而使得减振对象的振动 更可靠地减少。 此外,这种减振装置即使当可控质量相对于动态质量固定时,也可以减小振动目标的某一频率的振动。
    • 4. 发明授权
    • Control device for internal combustion engine
    • 内燃机控制装置
    • US09328712B2
    • 2016-05-03
    • US14344580
    • 2012-09-14
    • Jun KawagoeHidetoshi SuzukiKei Hiramatsu
    • Jun KawagoeHidetoshi SuzukiKei Hiramatsu
    • F02P5/00F02P23/04F02P1/08F02P7/067F02D41/00
    • F02P23/04F02D41/0097F02D2400/06F02D2400/14F02P1/08F02P7/067
    • Provided is a control device for an internal combustion engine, employing a microprocessor to control a load other than an ignition device, the control device being provided to an internal combustion engine in which is installed a magnet generator that has a magneto coil for successively generating, in association with revolution of the internal combustion engine, a first half wave voltage, a second half wave voltage of different polarity than the first half wave voltage, and a third half wave voltage of identical polarity to the first half wave voltage; and the magnet generator employing the second half wave voltage to drive the ignition device. The device is provided with an electricity storage element which draws excess power from the output that is output by the magnet generator for the purpose of driving the ignition device, and which is charged by the first and second half wave voltages, as well as being charged by the second half wave voltage as well at times that the internal combustion engine is in the exhaust stroke, in order to supply power to the load and to the microprocessor. The power source circuit is constituted to use the energy stored in this electricity storage element to generate power source voltage for presentation to the microprocessor and to the load other than an ignition device.
    • 提供了一种内燃机的控制装置,其使用微处理器来控制点火装置以外的负载,所述控制装置设置在内燃机中,所述内燃机安装有具有用于依次产生的电磁线圈的磁铁发电机, 与内燃机的转速相关联的第一半波电压,与第一半波电压不同极性的第二半波电压和与第一半波电压相同极性的第三半波电压; 以及采用第二半波电压驱动点火装置的磁体发生器。 该装置设置有蓄电元件,其从为了驱动点火装置的目的而由磁体发生器输出的输出抽取多余的电力,并且由第一和第二半波电压充电,以及被充电 通过第二半波电压以及内燃机处于排气冲程的时间,以便向负载和微处理器供电。 电源电路被构造成使用存储在该蓄电元件中的能量来产生用于呈现给微处理器的电源电压和除了点火装置之外的负载。
    • 6. 发明授权
    • Relay station, base station and communication method
    • 中继站,基站和通信方式
    • US09065527B2
    • 2015-06-23
    • US13819292
    • 2012-02-08
    • Masayuki HoshinoHidetoshi SuzukiAyako HoriuchiDaichi Imamura
    • Masayuki HoshinoHidetoshi SuzukiAyako HoriuchiDaichi Imamura
    • H04W88/04H04W72/04H04L27/28H04B7/155
    • H04B7/155H04L27/28H04W72/04H04W88/04
    • Provided is a relay station that is capable of improving PDSCH channel estimation accuracy, even in a case where a DL grant is provided that gives instructions for downlink data allocation for R-PDCCH. In this device, a signal separation unit (203) receives, of the control information and data and reference signals sent from a base station (100), the reference signals disposed in a first region and a second region within a pre-coding RB group (PRG) comprising one or more PRBs of the plurality of PRBs constituting a divided frequency region; the control information disposed in the first region; and the data disposed in the second region. A demodulation unit (204) demodulates the data on the basis of the reference signals. The demodulation unit (204) demodulates the data using the reference signals disposed in the second region.
    • 即使在提供给R-PDCCH的下行链路数据分配指令的DL授权的情况下,也能够提高PDSCH信道估计精度。 在该装置中,信号分离单元(203)接收从基站(100)发送的控制信息和数据以及参考信号中设置在预编码RB组内的第一区域和第二区域中的参考信号 (PRG),包括构成分频区域的多个PRB中的一个或多个PRB; 所述控制信息设置在所述第一区域中; 以及设置在第二区域中的数据。 解调单元(204)根据参考信号对数据进行解调。 解调单元(204)使用布置在第二区域中的参考信号来解调数据。
    • 10. 发明申请
    • TRANSMISSION DEVICE AND TRANSMISSION METHOD
    • 传输设备和传输方法
    • US20130163573A1
    • 2013-06-27
    • US13820221
    • 2011-09-29
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • Toru OizumiSeigo NakaoAyako HoriuchiDaichi ImamuraHidetoshi Suzuki
    • H04W72/04
    • H04W72/0446H04L5/0007H04L5/0053H04L5/0091H04W72/042
    • Provided are a transmission device and transmission method that are capable of allowing leeway in data reception processing on the receiving side regardless of the position in time of a resource region to which control information, which is contained in resource allocation information for transmission data, is mapped. A setting unit (101) sets a mapping region, which maps a DCI in accordance with the downlink data size that the DCI indicates, from among a PDCCH region, an R-PDCCH region in slot 0, and an R-PDCCH region in slot 1 that are provided in order in the time direction within a subframe. In a setting rule table used in setting the mapping region, PDCCH region, R-PDCCH region in slot 0, and R-PDCCSH region in slot 1 are associated with maximum size value of a downlink data size that the DCI indicates and that can be set in each resource region.
    • 提供了能够在接收侧的数据接收处理中允许余地的发送装置和发送方法,而不管发送数据的资源分配信息中包含的控制信息被映射到资源区域的时间的位置 。 设置单元(101)根据PDCCH指示的下行链路数据大小,将时隙0中的R-PDCCH区域和时隙0中的R-PDCCH区域设置映射区域,该映射区域根据DCI指示的下行链路数据大小映射DCI 1,其在子帧内沿时间方向依次提供。 在用于设置映射区域的设置规则表中,时隙0中的PDCCH区域,时隙0中的R-PDCCH区域和时隙1中的R-PDCCSH区域与DCI指示的下行链路数据大小的最大大小值相关联,并且可以是 设置在每个资源区域。