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    • 21. 发明授权
    • Flow metering method and flowmeter
    • 流量计和流量计
    • US06782743B2
    • 2004-08-31
    • US10343341
    • 2003-01-29
    • Atsushi KoikeKiyoshi YamagishiShinya FurukiKenichi Hiraizumi
    • Atsushi KoikeKiyoshi YamagishiShinya FurukiKenichi Hiraizumi
    • G01F500
    • G01F1/684G01F1/6965G01F15/022G01F25/003
    • A flow metering method and a flowmeter capable of providing an electric output corresponding to the metered flow rate of metered fluid by an electric circuit including a thermal type flow sensor disposed in a metering flow path and an electric output corresponding to the reference flow rate of the metered fluid by an electric circuit including a reference thermal type flow sensor disposed in a reference flow path allowing the metered flow to flow freely; the flow metering method, comprising the steps of providing a calibration curve including a reference flow calibration curve and a measurement flow calibration curve at a plurality of temperatures for reference fluid beforehand, providing the deviated amount of the temperature of the reference flow calibration curve from the reference temperature corresponding to the electric output based on the electric output corresponding to the reference flow calibration curve based on the deviated amount, and converting the temperature corrected amount to the flow value of the metered fluid based on the electric output corresponding to the metered flow rate of the metered fluid by using the measured flow rate calibration curve of the reference temperature and by allowing for the temperature corrected amount.
    • 一种流量测量方法和流量计,其能够通过包括设置在计量流路中的热式流量传感器的电路和对应于计量流量的参考流量的电输出来提供与计量流体的计量流量相对应的电输出 计量流体包括设置在允许计量流自由流动的参考流动路径中的参考热式流量传感器的电路; 所述流量计量方法包括以下步骤:预先在多个温度下提供包括参考流量校准曲线和测量流量校准曲线的校准曲线,从而提供参考流校准曲线的温度的偏离量 基于与基准流量校准曲线对应的电输出的电力输出的基准温度,基于偏差量,根据与计量流量对应的电输出,将温度校正量转换为计量流量的流量值 的计量流体,通过使用测量的参考温度的流量校准曲线并允许温度校正量。
    • 22. 发明授权
    • Device for detecting leakage of liquid in tank
    • 用于检测罐中液体泄漏的装置
    • US07574897B2
    • 2009-08-18
    • US11791685
    • 2005-11-21
    • Atsushi KoikeToshimi NakamuraTsutomu Makino
    • Atsushi KoikeToshimi NakamuraTsutomu Makino
    • G01M3/04
    • G01M3/3254
    • A device for detecting leakage of liquid in a tank, capable of detecting the leakage at high accuracy and sensitivity for a wide range of a leakage quantity. A flow rate sensor section attached to a measurement fine tube (13b) includes temperature sensors (133, 134) and an indirectly heated sensor (135). A leakage detection control section connected to a pressure sensor (137) for measuring a liquid level and to the flow rate sensor section has a voltage generation circuit (67) for applying a voltage to a heater (163) of the indirectly heated sensor, a first leakage detection circuit (71), and a second leakage detection circuit for generating an output corresponding to temperature sensed by the indirectly heated sensor (135). First leakage detection using an output of the first leakage detection circuit, second leakage detection using an output of the pressure sensor, and third leakage detection using an output of the second leakage detection circuit are performed, and at least one of the results of the detections is outputted.
    • 一种用于检测罐中液体泄漏的装置,能够在宽范围的泄漏量下以高精度和灵敏度检测泄漏。 附接到测量细管(13b)的流量传感器部分包括温度传感器(133,134)和间接加热的传感器(135)。 连接到用于测量液位的压力传感器(137)和流量传感器部分的泄漏检测控制部分具有用于向间接加热的传感器的加热器(163)施加电压的电压产生电路(67), 第一泄漏检测电路(71)和用于产生对应于由间接加热的传感器(135)感测的温度的输出的第二泄漏检测电路。 执行使用第一泄漏检测电路的输出,使用压力传感器的输出的第二泄漏检测和使用第二泄漏检测电路的输出的第三泄漏检测的第一泄漏检测,并且检测结果中的至少一个 被输出。
    • 24. 发明申请
    • Device For Detecting Leakage of Liquid In Tank
    • 用于检测罐中液体泄漏的装置
    • US20080121022A1
    • 2008-05-29
    • US11791685
    • 2005-11-21
    • Atsushi KoikeToshimi NakamuraTsutomu Makino
    • Atsushi KoikeToshimi NakamuraTsutomu Makino
    • G01M3/04
    • G01M3/3254
    • A device for detecting leakage of liquid in a tank, capable of detecting the leakage at high accuracy and sensitivity for a wide range of a leakage quantity. A flow rate sensor section attached to a measurement fine tube (13b) includes temperature sensors (133, 134) and an indirectly heated sensor (135). A leakage detection control section connected to a pressure sensor (137) for measuring a liquid level and to the flow rate sensor section has a voltage generation circuit (67) for applying a voltage to a heater (163) of the indirectly heated sensor, a first leakage detection circuit (71), and a second leakage detection circuit for generating an output corresponding to temperature sensed by the indirectly heated sensor (135). First leakage detection using an output of the first leakage detection circuit, second leakage detection using an output of the pressure sensor, and third leakage detection using an output of the second leakage detection circuit are performed, and at least one of the results of the detections is outputted.
    • 一种用于检测罐中液体泄漏的装置,能够在宽范围的泄漏量下以高精度和灵敏度检测泄漏。 附接到测量细管(13b)的流量传感器部分包括温度传感器(133,134)和间接加热的传感器(135)。 连接到用于测量液位的压力传感器(137)和流量传感器部分的泄漏检测控制部分具有用于向间接加热的传感器的加热器(163)施加电压的电压产生电路(67), 第一泄漏检测电路(71)和用于产生对应于由间接加热的传感器(135)感测的温度的输出的第二泄漏检测电路。 执行使用第一泄漏检测电路的输出,使用压力传感器的输出的第二泄漏检测和使用第二泄漏检测电路的输出的第三泄漏检测的第一泄漏检测,并且检测结果中的至少一个 被输出。
    • 26. 发明授权
    • Noise suppression system, sound acquisition apparatus, sound output apparatus, and computer-readable medium
    • 噪声抑制系统,声音采集装置,声音输出装置和计算机可读介质
    • US08165641B2
    • 2012-04-24
    • US12179776
    • 2008-07-25
    • Atsushi KoikeMasahito Togami
    • Atsushi KoikeMasahito Togami
    • H04M1/00
    • H04M9/082
    • The sound acquisition apparatus broadcasts a sound “output notice request” through a communication network. In response to the request by the sound acquisition apparatus, the sound output apparatus gives notification of starting a sound output operation, the sound acquisition apparatus requests the sound output apparatus to transfer “output sound data”. The sound output apparatus then transfers “output sound data” representing the sound outputted by its own speaker to the sound acquisition apparatus in response to this request. The sound acquisition apparatus then suppresses a noise component from sound data acquired through a microphone using the transferred “output sound data”.
    • 声音获取装置通过通信网络广播声音“输出通知请求”。 响应于声音获取装置的请求,声音输出装置发出开始声音输出操作的通知,声音获取装置请求声音输出装置传送“输出声音数据”。 然后,响应于该请求,声音输出装置将表示由其自己的扬声器输出的声音的“输出声音数据”传送到声音获取装置。 声音获取装置然后使用传送的“输出声音数据”抑制通过麦克风获取的声音数据的噪声分量。
    • 27. 发明申请
    • Wireless Communication Terminal
    • 无线通信终端
    • US20110021161A1
    • 2011-01-27
    • US12890113
    • 2010-09-24
    • Hidenori SAKANIWAAtsushi KoikeMitsuhiro Kitani
    • Hidenori SAKANIWAAtsushi KoikeMitsuhiro Kitani
    • H04B1/40
    • H04M1/72569H04L1/0045H04L1/20H04L1/201
    • In a wireless communication terminal, information from a wireless communication unit is decoded by a communication control unit and analysis information is acquired. A content reception judgment unit instructs the communication control unit to terminate a content receiving process if a mobile radio environment corresponding to transmission rate information of the contents, included in the analysis information, is below a content reception threshold stored in a content reception threshold storage unit. Thus, the wireless communication terminal can judge that the possibility of a failed reception is high before content reception, and needless power consumption can be prevented and power consumption reduced by not performing reception.
    • 在无线通信终端中,来自无线通信单元的信息由通信控制单元解码,获取分析信息。 如果与包含在分析信息中的内容的传输速率信息相对应的移动无线电环境低于存储在内容接收阈值存储单元中的内容接收阈值,则内容接收判断单元指示通信控制单元终止内容接收处理 。 因此,无线通信终端可以在内容接收之前判断接收失败的可能性高,并且可以防止不必要的功耗,并且通过不执行接收来降低功耗。
    • 28. 发明授权
    • Wireless communication terminal
    • 无线通信终端
    • US07805157B2
    • 2010-09-28
    • US11441713
    • 2006-05-25
    • Hidenori SakaniwaAtsushi KoikeMitsuhiro Kitani
    • Hidenori SakaniwaAtsushi KoikeMitsuhiro Kitani
    • H04M1/00H04W24/00
    • H04M1/72569H04L1/0045H04L1/20H04L1/201
    • In a wireless communication terminal, information from a wireless communication unit is decoded by a communication control unit and analysis information is acquired. A content reception judgment unit instructs the communication control unit to terminate a content receiving process if a mobile radio environment corresponding to transmission rate information of the contents, included in the analysis information, is below a content reception threshold stored in a content reception threshold storage unit. Thus, the wireless communication terminal can judge that the possibility of a failed reception is high before content reception, and needless power consumption can be prevented and power consumption reduced by not performing reception.
    • 在无线通信终端中,来自无线通信单元的信息由通信控制单元解码,获取分析信息。 如果与包含在分析信息中的内容的传输速率信息相对应的移动无线电环境低于存储在内容接收阈值存储单元中的内容接收阈值,则内容接收判断单元指示通信控制单元终止内容接收处理 。 因此,无线通信终端可以在内容接收之前判断接收失败的可能性高,并且可以防止不必要的功耗,并且通过不执行接收来降低功耗。
    • 30. 发明授权
    • Device for detecting leakage of liquid in tank
    • 用于检测罐中液体泄漏的装置
    • US07647820B2
    • 2010-01-19
    • US11791881
    • 2005-11-21
    • Kiyotaka YanagiAtsushi Koike
    • Kiyotaka YanagiAtsushi Koike
    • G01M3/04
    • G01M3/3254
    • A device for detecting leakage of liquid in a tank, in which, even if the liquid in the tank is a low viscosity liquid, degradation in flow rate measurement accuracy by an indirectly heated flow rate meter can be suppressed, so that a very fine amount of leakage can be accurately detected for a long period without degradation in detection accuracy. The liquid in the tank that is led in and out from a liquid lead-in/lead-out section (12) is lead in and out from the lower end of a measurement fine tube (13b, 13b′, 13″) positioned in the flow rate measurement section (13). A measurement tube (17) of a liquid storage section (14) is connected to the upper end of the measurement fine tube. The measurement tube (17) has a larger cross-sectional area than the measurement fine tube. The device has a flow rate sensor section that is attached to the measurement fine tube and measures the flow rate of the liquid. The flow rate sensor section includes a heater (135) and temperature sensors (133, 134). The distance L1 in the measurement fine tube measured from a position corresponding to the heater (135) to an upper end opening of the measurement fine tube is not less than 20 mm and not more than 45 mm.
    • 一种用于检测罐中液体泄漏的装置,其中即使罐中的液体是低粘度液体,也可以抑制通过间接加热的流量计的流量测量精度的劣化,使得非常精细的量 的泄漏可以长时间精确地检测,而不会降低检测精度。 从液体引入/导出部分(12)引出的罐中的液体从位于测量细管(13b,13b',13“)的下端引出 在流量测量部(13)中。 液体储存部分(14)的测量管(17)连接到测量细管的上端。 测量管(17)的横截面积大于测量细管。 该装置具有流量传感器部分,其连接到测量细管并测量液体的流速。 流量传感器部分包括加热器(135)和温度传感器(133,134)。 从与加热器(135)对应的位置测量到测量细管的上端开口的测量细管中的距离L1不小于20mm且不大于45mm。