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    • 2. 发明申请
    • ELECTRICAL EVENT DETECTION DEVICE AND METHOD OF DETECTING AND CLASSIFYING ELECTRICAL POWER USAGE
    • 电气事件检测装置及其检测和分类电力用途的方法
    • WO2011139715A2
    • 2011-11-10
    • PCT/US2011/033992
    • 2011-04-26
    • BELKIN INTERNATIONAL, INC.PATEL, Shwetak, N.REYNOLDS, Matthew, S.GUPTA, SidhantYOGEESWARAN, Karthik
    • PATEL, Shwetak, N.REYNOLDS, Matthew, S.GUPTA, SidhantYOGEESWARAN, Karthik
    • G01R31/00
    • G01R19/0007G01R19/2513G01R21/133G01R22/10G01R31/2825Y04S20/38
    • Some embodiments can concern an apparatus configured to detect an electrical state of one or more electrical devices. The one or more electrical devices are coupled to an electrical power infrastructure and generate one or more high-frequency electrical signals on the electrical power infrastructure. The apparatus can include: (a) a processing module configured to run on a processor of a computational unit; and (b) a sensing device configured to be coupled to an electrical outlet. The sensing device can have: (a) a data acquisition receiver configured to receive the one or more high-frequency electrical signals via the electrical outlet and convert the one or more high-frequency electrical signals into one or more first data signals when the sensing device is coupled to the electrical outlet. The electrical outlet can be electrically coupled to the electrical power infrastructure. The sensing device is in communication with the computational unit. The processing module is further configured to identify the electrical state of the one or more electrical devices at least in part using the one or more first data signals. The high-frequency electrical signals comprise electrical signals in the ten kilohertz to three megahertz range. Other embodiments are disclosed.
    • 一些实施例可以涉及被配置为检测一个或多个电气设备的电气状态的设备。 一个或多个电气设备耦合到电力基础设施并且在电力基础设施上产生一个或多个高频电信号。 该装置可以包括:(a)处理模块,被配置为在计算单元的处理器上运行; 和(b)被配置为联接到电源插座的感测装置。 感测装置可以具有:(a)数据采集接收器,被配置为经由电源插座接收一个或多个高频电信号,并且当感测时将一个或多个高频电信号转换成一个或多个第一数据信号 设备耦合到电源插座。 电源插座可以电连接到电力基础设施。 感测装置与计算单元通信。 处理模块还被配置为至少部分地使用一个或多个第一数据信号来识别一个或多个电气设备的电状态。 高频电信号包括十千赫兹至三兆赫范围内的电信号。 公开了其他实施例。
    • 3. 发明申请
    • SYSTEMS AND METHODS FOR MEASURING ELECTRICAL POWER USAGE IN A STRUCTURE AND SYSTEMS AND METHODS OF CALIBRATING THE SAME
    • 用于测量结构和系统中的电力使用的系统和方法及其校准方法
    • WO2012003492A2
    • 2012-01-05
    • PCT/US2011042873
    • 2011-07-01
    • BELKIN INTERNATIONAL INCPATEL SHWEATK NGUPTA SIDHANTREYNOLDS MATTHEW SYOGEESWARAN KARTHIK
    • PATEL SHWEATK NGUPTA SIDHANTREYNOLDS MATTHEW SYOGEESWARAN KARTHIK
    • G01R22/06
    • G01R19/0092G01R1/20G01R15/202G01R15/207G01R21/001G01R21/06G01R22/06G01R22/063G01R31/327G01R33/07G01R33/09G01R35/005G01R35/007G01R35/04
    • Some embodiments can concern a method of using a power consumption measurement device. The power consumption measurement device can be mechanically coupled to a surface of a circuit breaker box overlying at least part of one or more main electrical supply conductors for an electrical power infrastructure of a structure. The method can include: determining one or more first magnetic field readings from the one or more main electrical supply conductors using one or more sensors in the power consumption measurement device; after determining the one or more first magnetic field readings, electrically coupling a first calibration load to the electrical power infrastructure; while the first calibration load remains electrically coupled to the electrical power infrastructure, determining one or more second magnetic field readings from the one or more main electrical supply conductors using the one or more sensors in the power consumption measurement device; calibrating the power consumption measurement device using at least in part the one or more first magnetic field readings and the one or more second magnetic field readings, after calibrating the power consumption measurement device, determining one or more third magnetic field readings from the one or more main electrical supply conductors using the one or more sensors in the power consumption measurement device; and determining an electrical power used by the electrical power infrastructure of the structure using at least the one or more third magnetic field readings and the one or more calibration coefficients. Calibrating the power consumption measurement device can include determining one or more first calibration coefficients for the power consumption measurement device using at least in part the one or more first magnetic field readings and the one or more second magnetic field readings. Other embodiments are disclosed.
    • 一些实施例可以涉及使用功率消耗测量装置的方法。 功率消耗测量装置可以机械耦合到断路器箱的表面,覆盖用于结构的电力基础设施的一个或多个主电力供应导体的至少一部分。 该方法可以包括:使用功耗测量装置中的一个或多个传感器从一个或多个主供电导体确定一个或多个第一磁场读数; 在确定所述一个或多个第一磁场读数之后,将第一校准负载电耦合到所述电力基础设施; 而所述第一校准负载保持电耦合到所述电力基础设施,使用所述功耗测量装置中的所述一个或多个传感器来确定来自所述一个或多个主供电导体的一个或多个第二磁场读数; 在校准所述功耗测量装置之后,至少部分地使用所述一个或多个第一磁场读数和所述一个或多个第二磁场读数校准所述功耗测量装置,从所述一个或多个第二磁场读数确定一个或多个第三磁场读数 主要供电导体使用功耗测量装置中的一个或多个传感器; 以及使用至少一个或多个第三磁场读数和所述一个或多个校准系数来确定由所述结构的所述电力基础设施使用的电力。 校准功率消耗测量装置可以包括至少部分地使用一个或多个第一磁场读数和一个或多个第二磁场读数来确定功耗测量装置的一个或多个第一校准系数。 公开了其他实施例。
    • 7. 发明申请
    • ELECTRICAL EVENT DETECTION DEVICE AND METHOD OF DETECTING AND CLASSIFYING ELECTRICAL POWER USAGE
    • 电气事件检测装置及其检测和分类电力用途的方法
    • WO2011139715A3
    • 2012-03-01
    • PCT/US2011033992
    • 2011-04-26
    • BELKIN INTERNATIONAL INCPATEL SHWETAK NREYNOLDS MATTHEW SGUPTA SIDHANTYOGEESWARAN KARTHIK
    • PATEL SHWETAK NREYNOLDS MATTHEW SGUPTA SIDHANTYOGEESWARAN KARTHIK
    • G01R31/00
    • G01R19/0007G01R19/2513G01R21/133G01R22/10G01R31/2825Y04S20/38
    • Some embodiments can concern an apparatus configured to detect an electrical state of one or more electrical devices. The one or more electrical devices are coupled to an electrical power infrastructure and generate one or more high-frequency electrical signals on the electrical power infrastructure. The apparatus can include: (a) a processing module configured to run on a processor of a computational unit; and (b) a sensing device configured to be coupled to an electrical outlet. The sensing device can have: (a) a data acquisition receiver configured to receive the one or more high-frequency electrical signals via the electrical outlet and convert the one or more high-frequency electrical signals into one or more first data signals when the sensing device is coupled to the electrical outlet. The electrical outlet can be electrically coupled to the electrical power infrastructure. The sensing device is in communication with the computational unit. The processing module is further configured to identify the electrical state of the one or more electrical devices at least in part using the one or more first data signals. The high-frequency electrical signals comprise electrical signals in the ten kilohertz to three megahertz range. Other embodiments are disclosed.
    • 一些实施例可以涉及被配置为检测一个或多个电气设备的电气状态的设备。 一个或多个电气设备耦合到电力基础设施并且在电力基础设施上产生一个或多个高频电信号。 该装置可以包括:(a)处理模块,被配置为在计算单元的处理器上运行; 和(b)被配置为联接到电源插座的感测装置。 感测装置可以具有:(a)数据采集接收器,被配置为经由电源插座接收一个或多个高频电信号,并且当感测时将一个或多个高频电信号转换成一个或多个第一数据信号 设备耦合到电源插座。 电源插座可以电连接到电力基础设施。 感测装置与计算单元通信。 处理模块还被配置为至少部分地使用一个或多个第一数据信号来识别一个或多个电气设备的电状态。 高频电信号包括十千赫兹至三兆赫范围内的电信号。 公开了其他实施例。
    • 8. 发明申请
    • SYSTEM FOR MONITORING ELECTRICAL POWER USAGE OF A STRUCTURE AND METHOD OF SAME
    • 监视结构的电力使用的系统及其方法
    • WO2012003494A2
    • 2012-01-05
    • PCT/US2011042877
    • 2011-07-01
    • BELKIN INTERNATIONAL INCYOGEESWARAN KARTHIKKELLY FRANKPATEL SHWETAK NGUPTA SIDHANTREYNOLDS MATTHEW S
    • YOGEESWARAN KARTHIKKELLY FRANKPATEL SHWETAK NGUPTA SIDHANTREYNOLDS MATTHEW S
    • G01R22/06
    • G01R19/0092G01R1/20G01R15/202G01R15/207G01R21/001G01R21/06G01R22/06G01R22/063G01R31/327G01R33/07G01R33/09G01R35/005G01R35/007G01R35/04
    • Some embodiments can teach a system for monitoring usage of electrical power by a structure. The structure can have one or more main electrical power lines that supply the electrical power to a first load in the structure. A portion of the one or more main electrical power lines can run substantially parallel to a first axis. The structure can further have a panel that overlies the portion of the one or more main electrical power lines. The system can include: (a) a current sensor unit configured to be coupled to a portion of a surface of the panel, the current sensor unit having: (a) at least one magnetic field sensor having a length substantially parallel to a second axis, wherein the second axis is substantially perpendicular to the first axis, and the at least one magnetic field sensor is configured to detect a magnetic field generated by the one or more main electrical power lines; and (b) a processing unit configured to run on a processor. The current sensor unit can be configured to produce an output signal based on the magnetic field detected by the at least one magnetic field sensor. The processing unit further can be configured to receive the output signal from the current sensor unit and process the output signal to determine one or more parameters related to the usage of the electrical power by the first load in the structure. Other embodiments are disclosed.
    • 一些实施例可以教导一种用于监视结构对电力的使用的系统。 该结构可以具有一个或多个主电力线,其将电力供应给该结构中的第一负载。 一个或多个主电力线的一部分可以基本上平行于第一轴延伸。 该结构可以进一步具有覆盖一个或多个主电力线的一部分的面板。 该系统可以包括:(a)电流传感器单元,其被配置为耦合到面板的表面的一部分,电流传感器单元具有:(a)至少一个磁场传感器,其具有基本平行于第二轴 其中所述第二轴线大致垂直于所述第一轴线,且所述至少一个磁场传感器经配置以检测由所述一个或一个以上主电力线产生的磁场; 和(b)配置成在处理器上运行的处理单元。 电流传感器单元可以被配置为基于由至少一个磁场传感器检测到的磁场来产生输出信号。 处理单元还可以被配置为接收来自电流传感器单元的输出信号并且处理输出信号以确定与结构中的第一负载对电力的使用相关的一个或多个参数。 公开了其他实施例。
    • 9. 发明申请
    • SYSTEMS AND METHODS FOR MEASURING ELECTRICAL POWER USAGE IN A STRUCTURE AND SYSTEMS AND METHODS OF CALIBRATING THE SAME
    • WO2012003492A3
    • 2012-01-05
    • PCT/US2011/042873
    • 2011-07-01
    • BELKIN INTERNATIONAL, INC.PATEL, Shweatk N.GUPTA, SidhantREYNOLDS, Matthew S.YOGEESWARAN, Karthik
    • PATEL, Shweatk N.GUPTA, SidhantREYNOLDS, Matthew S.YOGEESWARAN, Karthik
    • G01R22/06
    • Some embodiments can concern a method of using a power consumption measurement device. The power consumption measurement device can be mechanically coupled to a surface of a circuit breaker box overlying at least part of one or more main electrical supply conductors for an electrical power infrastructure of a structure. The method can include: determining one or more first magnetic field readings from the one or more main electrical supply conductors using one or more sensors in the power consumption measurement device; after determining the one or more first magnetic field readings, electrically coupling a first calibration load to the electrical power infrastructure; while the first calibration load remains electrically coupled to the electrical power infrastructure, determining one or more second magnetic field readings from the one or more main electrical supply conductors using the one or more sensors in the power consumption measurement device; calibrating the power consumption measurement device using at least in part the one or more first magnetic field readings and the one or more second magnetic field readings, after calibrating the power consumption measurement device, determining one or more third magnetic field readings from the one or more main electrical supply conductors using the one or more sensors in the power consumption measurement device; and determining an electrical power used by the electrical power infrastructure of the structure using at least the one or more third magnetic field readings and the one or more calibration coefficients. Calibrating the power consumption measurement device can include determining one or more first calibration coefficients for the power consumption measurement device using at least in part the one or more first magnetic field readings and the one or more second magnetic field readings. Other embodiments are disclosed.