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    • 1. 发明申请
    • RELAY DEVICE, AUTOMATED RADIO METER READING SYSTEM, AND RELAY METHOD
    • 继电器,自动无线电表读取系统和继电器方法
    • US20130039260A1
    • 2013-02-14
    • US13642445
    • 2011-04-12
    • Yasuo KobaMasahiro YamamotoYoshio HoriikeTakashi Watanabe
    • Yasuo KobaMasahiro YamamotoYoshio HoriikeTakashi Watanabe
    • H04B7/14
    • H04B7/155G01D4/002H04Q9/00H04Q2209/40H04Q2209/60H04W40/22H04W84/047Y02B90/241Y02B90/246Y04S20/32Y04S20/42
    • A relay device for relaying communication information communicated between an access point and an adapter, said relay device comprises a reception means for receiving the communication information transmitted to said relay device itself; a memory means having one or more memory areas, the memory means being configured to store ID of each communication device which is a next transmission destination, in each of the memory areas; a reading means for reading route information from the communication information, said route information including information specifying the memory area containing the ID of the communication device which is the next transmission destination and indicating a route constituted by communication devices provided in a range from at least said relay device itself to a final transmission destination; a transmission destination identifying means for identifying the ID of the communication device which is the next transmission destination, based on the memory area stored in the memory means and the route information read by the reading means; and a transmission means for transmitting the communication information to the communication device identified by the transmission destination identifying means.
    • 一种用于中继在接入点和适配器之间传送的通信信息的中继设备,所述中继设备包括:接收装置,用于接收发送到所述中继设备本身的通信信息; 存储装置具有一个或多个存储区域,存储装置被配置为在每个存储区域中存储作为下一个发送目的地的每个通信装置的ID; 用于从通信信息读取路线信息的读取装置,所述路线信息包括指定包含作为下一个发送目的地的通信设备的ID的存储区域的信息,并指示由至少所述的 中继设备本身到最终传输目的地; 发送目的地识别装置,用于基于存储在存储装置中的存储区域和由读取装置读取的路由信息​​来识别作为下一个发送目的地的通信装置的ID; 以及发送装置,用于将通信信息发送到由发送目的地识别装置识别的通信装置。
    • 4. 发明申请
    • RADIO COMMUNICATION DEVICE, RADIO COMMUNICATION SYSTEM, AND RADIO COMMUNICATION METHOD
    • 无线电通信设备,无线电通信系统和无线电通信方法
    • US20130170429A1
    • 2013-07-04
    • US13820731
    • 2011-09-05
    • Masahiro YamamotoYoshio HoriikeYasuo KobaTakashi Watanabe
    • Masahiro YamamotoYoshio HoriikeYasuo KobaTakashi Watanabe
    • H04W52/02
    • H04W52/0203H04B7/15507H04W52/0209H04W56/0015H04W88/04Y02D70/142Y02D70/144Y02D70/446
    • In a radio communication device used in a radio communication system of the present invention, a radio relay terminal (201) includes a timing information analyzing section (26) which analyzes intermittent reception timing information contained in a radio signal and relay-transmits the radio signal according to intermittent awaiting of reception of a radio adapter terminal (301), and the radio adapter terminal (301) includes a timing information transmission section (24) which creates timing (intermittent reception timing information) which identifies an intermittent reception timing at which the radio adapter terminal (301) intermittently awaits reception, and transmits the radio signal to the radio access point terminal (101) via the radio relay terminal (201). Thus, an increase in electric power consumption can be suppressed with a simple configuration, and communication is enabled at a suitable timing according to the intermittent reception timing of the radio adapter terminal (301) between the radio access point terminal (101) and the radio adapter terminal (301) via the radio relay terminal (201).
    • 在本发明的无线通信系统中使用的无线通信装置中,无线中继终端(201)包括定时信息分析部(26),其对包含在无线信号中的间歇接收定时信息进行分析,并对无线信号进行中继发送 根据等待接收无线电适配器终端(301)的间歇性,并且无线电适配器终端(301)包括定时信息发送部分(24),其创建定时(间歇接收定时信息),其定义间歇接收定时,其中, 无线电适配器终端(301)间歇地等待接收,并且经由无线中继终端(201)将无线电信号发送到无线接入点终端(101)。 因此,可以通过简单的配置来抑制电力消耗的增加,并且根据无线接入点终端(101)和无线电接收机(101)之间的无线适配器终端(301)的间歇接收定时,在适当的定时进行通信 适配器终端(301)经由无线中继终端(201)。
    • 5. 发明申请
    • RADIO DEVICE
    • 无线电设备
    • US20130109397A1
    • 2013-05-02
    • US13808546
    • 2011-03-09
    • Takashi WatanabeMasahiro YamamotoYoshio HoriikeYasuo Koba
    • Takashi WatanabeMasahiro YamamotoYoshio HoriikeYasuo Koba
    • H04W40/12
    • H04W40/12H04W40/08H04W48/20Y02D70/1224Y02D70/142Y02D70/324Y02D70/34
    • In a conventional configuration, it is necessary to install all radio terminals and search a route based on a fixed condition, which makes it difficult to provide a balance between an enlarged communication area and economic efficiency of a system. In a meter interface (150), a demodulator unit (156) demodulates installation information transmitted from a concentrator (100) on a regular basis, a connected target determiner unit (158) searches an upper terminal to be connected based on a threshold pre-stored in a memory unit (157), and control is executed such that when the obtained electric field intensity level is higher than a threshold, a concentrator connected with meter interfaces of a smallest number is connected to the meter interface, while when the obtained electric field intensity level is lower than the threshold, a concentrator having a highest electric field intensity level is connected to the meter interface.
    • 在常规配置中,需要安装所有无线电终端并且基于固定条件搜索路由,这使得难以在扩大的通信区域和系统的经济效率之间提供平衡。 在仪表接口(150)中,解调器单元(156)定期对从集中器(100)发送的安装信息进行解调,连接的目标确定单元(158)根据阈值预测单元(158)搜索要连接的上级终端, 存储在存储器单元(157)中,并且执行控制,使得当所获得的电场强度水平高于阈值时,将与最小数量的仪表接口连接的集中器连接到仪表接口,而当所获得的电 场强度级低于阈值,具有最高电场强度水平的聚光器连接到仪表接口。
    • 7. 发明授权
    • Flow rate measuring device
    • 流量测量装置
    • US07340950B2
    • 2008-03-11
    • US11574896
    • 2005-09-29
    • Yasuo KobaHirozumi NakamuraTakuhisa OotaniKazunori Ueyama
    • Yasuo KobaHirozumi NakamuraTakuhisa OotaniKazunori Ueyama
    • G01F3/24
    • G01F3/228G01F3/227G01F15/066
    • To provide a flowmeter capable of enhancing metering resolution to thus effect accurate metering.When a fluid to be measured is supplied to or discharged from a metering chamber 4, a membrane 11 provided in the metering chamber 4 is reciprocally actuated, and a rotation section R1 performs rotational movement in association with reciprocal movement of the membrane 11. At this time, since the rotation section R1 is provided with a magnet 5 or a direction sensor 6, the magnet 5 or the direction sensor 6 also effects rotational movement. The direction sensor 6 detects rotational movement, to thus determine a relative position between the membrane and the rotation section. Thus, the position of the membrane 11 can be detected, and metering resolution is enhanced. Thus, accurate metering can be performed.
    • 提供一种能够提高计量分辨率从而实现精确计量的流量计。 当要测量的流体被供给到计量室4或从计量室4排出时,设置在计量室4中的膜11往复地致动,并且旋转部分R 1与膜11的往复运动相关联地执行旋转运动。 此时,由于旋转部分R 1设置有磁体5或方向传感器6,磁体5或方向传感器6也进行旋转运动。 方向传感器6检测旋转运动,从而确定膜与旋转部之间的相对位置。 因此,能够检测膜11的位置,提高计量分辨率。 因此,可以进行精确的计量。
    • 8. 发明授权
    • Flow-rate measurement device
    • 流量测量装置
    • US09239256B2
    • 2016-01-19
    • US13821879
    • 2011-10-20
    • Kouichi TakemuraYasuo Koba
    • Kouichi TakemuraYasuo Koba
    • G01F1/66
    • G01F1/66G01F1/667G01F1/668
    • A flow-rate measurement device includes a first transducer and a second transducer which are provided in a fluid flow path to transmit and receive an ultrasonic signal, a timer unit which measures a propagation time of the ultrasonic signal propagating between the first transducer and the second transducer, and a flow-rate calculation unit which executes a unit measurement step a predetermined number of times and calculates a flow rate of a fluid flowing in the fluid flow path on the basis of the propagation times measured the predetermined number of times, the unit measurement step being an operation in which a direction of transmission to reception between the first transducer and the second transducer is switched and the timer unit measures the propagation times of the ultrasonic signal in both directions. The flow-rate calculation unit measures a flow rate value of the fluid by a precise measurement step in which the unit measurement step is executed a plural number of times to calculate the flow-rate and an exploratory measurement step in which the unit measurement step is executed a smaller number of times than the number of executions in the precise measurement step to calculate the flow rate.
    • 流量测量装置包括设置在流体流动路径中以发送和接收超声波信号的第一换能器和第二换能器,测量在第一换能器和第二换能器之间传播的超声波信号的传播时间的定时器单元 换能器和流量计算单元,其执行单位测量步骤预定次数,并且基于在预定次数测量的传播时间来计算在流体流路中流动的流体的流量,单元 测量步骤是其中切换第一换能器和第二换能器之间的接收的发送方向的操作,并且定时器单元测量超声信号在两个方向上的传播时间。 流量计算单元通过精确的测量步骤来测量流体的流量值,其中执行单位测量步骤多次以计算流量,以及探测测量步骤,其中单元测量步骤是 执行比精确测量步骤中执行次数少的次数来计算流量。
    • 9. 发明申请
    • FLOW-RATE MEASUREMENT DEVICE
    • 流量测量装置
    • US20130167656A1
    • 2013-07-04
    • US13821879
    • 2011-10-20
    • Kouichi TakemuraYasuo Koba
    • Kouichi TakemuraYasuo Koba
    • G01F1/66
    • G01F1/66G01F1/667G01F1/668
    • A flow-rate measurement device includes a first transducer and a second transducer which are provided in a fluid flow path to transmit and receive an ultrasonic signal, a timer unit which measures a propagation time of the ultrasonic signal propagating between the first transducer and the second transducer, and a flow-rate calculation unit which executes a unit measurement step a predetermined number of times and calculates a flow rate of a fluid flowing in the fluid flow path on the basis of the propagation times measured the predetermined number of times, the unit measurement step being an operation in which a direction of transmission to reception between the first transducer and the second transducer is switched and the timer unit measures the propagation times of the ultrasonic signal in both directions. The flow-rate calculation unit measures a flow rate value of the fluid by a precise measurement step in which the unit measurement step is executed a plural number of times to calculate the flow-rate and an exploratory measurement step in which the unit measurement step is executed a smaller number of times than the number of executions in the precise measurement step to calculate the flow rate.
    • 流量测量装置包括设置在流体流动路径中以发送和接收超声波信号的第一换能器和第二换能器,测量在第一换能器和第二换能器之间传播的超声波信号的传播时间的定时器单元 换能器和流量计算单元,其执行单位测量步骤预定次数,并且基于在预定次数测量的传播时间来计算在流体流路中流动的流体的流量,单元 测量步骤是其中切换第一换能器和第二换能器之间的接收的发送方向的操作,并且定时器单元测量超声信号在两个方向上的传播时间。 流量计算单元通过精确的测量步骤来测量流体的流量值,其中执行单位测量步骤多次以计算流量,以及探测测量步骤,其中单元测量步骤是 执行比精确测量步骤中执行次数少的次数来计算流量。