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    • 53. 发明授权
    • Interface device for an intelligent electronic device and method of operating an interface device
    • 用于智能电子设备的接口设备和操作接口设备的方法
    • US08910249B2
    • 2014-12-09
    • US13432559
    • 2012-03-28
    • Thomas Rudolph
    • Thomas Rudolph
    • G06F21/20G06F19/00H04K1/00G01D4/00G06F7/00
    • H04K1/00G01D4/002G06F7/00G06F19/00Y02B90/241Y04S20/32Y04S20/46
    • The present invention relates to a system comprising an interface device (100) for an intelligent electronic device (200), an intelligent electronic device (200) for substation automation and/or distribution automation and a security server (500), wherein said interface device (100) comprises a data interface (110) for establishing data communications with said intelligent electronic device (200), and a user interface (120) for exchanging data with a user (300) of said interface device (100), wherein said interface device (100) is configured to provide browser means (130) for accessing said intelligent electronic device (200) via said data interface (110), wherein the security server (500) is configured to check an authorization of the interface device (100) by access control means (520) and to control access of the interface device (100) to the intelligent electronic device (200).
    • 本发明涉及一种包括用于智能电子设备(200)的接口设备(100),用于变电站自动化和/或分配自动化的智能电子设备(200)和安全服务器(500)的系统,其中所述接口设备 (100)包括用于建立与所述智能电子设备(200)的数据通信的数据接口(110)和用于与所述接口设备(100)的用户(300)交换数据的用户接口(120),其中所述接口 设备(100)被配置为提供用于经由所述数据接口(110)访问所述智能电子设备(200)的浏览器装置(130),其中所述安全服务器(500)被配置为检查所述接口设备(100)的授权, 通过访问控制装置(520)并且控制接口装置(100)到智能电子装置(200)的访问。
    • 55. 发明授权
    • Identification detection system for power consumption of electric appliance
    • 电器用电识别检测系统
    • US08849596B2
    • 2014-09-30
    • US13209400
    • 2011-08-13
    • Roy TingMax Li
    • Roy TingMax Li
    • G06F19/00G01R21/00G01D4/00H01R24/28H01R103/00
    • G01D4/002H01R24/28H01R2103/00Y02B70/3266Y02B90/241Y04S20/242Y04S20/32Y04S20/38Y10T307/944
    • An identification system for power consumption of electric appliance has multiple electric appliances, each electric appliance having a dedicated identification transmission circuit connected to a power-connecting loop; multiple power sockets mounted within a power supply region, each power socket having at least one identification receiver for receiving identification transmission signals from the corresponding electric appliance and obtaining a corresponding identification code; multiple energy management units respectively mounted in the power sockets to connect with the corresponding identification receivers, recognize the respective electric appliances by determining the identification codes, and record power consumption information of the corresponding electric appliances; and an energy management server connected to the energy management units and the identification receivers to communicate therewith in a wired or wireless manner. Individual and overall power consumption of all the electric appliances within the power supply region can be collected, recorded and calculated as the reference for future power management.
    • 电器用电识别系统具有多个电器,每个电器具有连接到电源连接回路的专用识别传输电路; 多个电源插座安装在电源区域内,每个电源插座具有至少一个识别接收器,用于从相应的电器接收识别传输信号并获得相应的识别码; 多个能量管理单元分别安装在电源插座中以与相应的识别接收器连接,通过确定识别码识别相应的电器,并记录相应电器的功耗信息; 以及连接到能量管理单元和识别接收器的能量管理服务器,以有线或无线的方式与其通信。 供电区域内所有电器的个人和总体功耗可以作为未来电力管理的参考来收集,记录和计算。
    • 57. 发明授权
    • Virtual sub-metering using combined classifiers
    • 使用组合分类器的虚拟子计量
    • US08819018B2
    • 2014-08-26
    • US13114608
    • 2011-05-24
    • Radek FiseraKarel MacekJiri Rojicek
    • Radek FiseraKarel MacekJiri Rojicek
    • G06F7/00G06F17/30
    • G06Q50/06G01D4/002G01R19/2513H02J13/0062Y02B90/241Y02B90/248Y02B90/2638Y04S20/32Y04S20/38Y04S20/52Y04S40/124
    • A virtual sub-metering process using combined classifiers includes generating an electric power consumption signature database by receiving data from an electric power consumption measuring meter and auxiliary data from a building management system, and clustering the data. After the generation of the electric power consumption signature database, additional data from the electric power consumption measuring meter and the auxiliary data from the building management system is received, and this additional data is processed to generate a second steady-state load classification component. A second transient state component is extracted from the additional data. The steady-state load classification components and the transient shape components from the electric power consumption signature database, the second steady state load classification component, the second transient shape component, and control signals and status signals associated with the plurality of electric power consuming devices are correlated and combined.
    • 使用组合分类器的虚拟子计量过程包括通过从电力消耗测量仪表接收数据和来自楼宇管理系统的辅助数据来生成电力消耗特征数据库,并且对数据进行聚类。 在生成电力消耗签名数据库之后,接收来自电力消耗测量计的附加数据和来自楼宇管理系统的辅助数据,并且处理该附加数据以产生第二稳态负载分类组件。 从附加数据中提取第二暂态状态分量。 来自电力消耗特征数据库的稳态负载分类分量和瞬态形状分量,第二稳态负荷分类分量,第二瞬态形状分量以及与多个电力消耗装置相关联的控制信号和状态信号是 相关和组合。
    • 60. 发明申请
    • PRICING SYSTEM AND METHOD FOR UTILITY CONSUMPTIONS WITHIN A SMART GRID
    • 智能网格中的实用性消耗的定价系统和方法
    • US20140214685A1
    • 2014-07-31
    • US14342308
    • 2012-08-30
    • Corinne Le Buhan
    • Corinne Le Buhan
    • G06Q30/02
    • G06Q30/0283G01D4/002H02J3/008H02J13/00H04L9/32H04L63/12Y02B90/241Y04S20/32Y04S40/24Y04S50/10Y04S50/14
    • A pricing method for utility consumptions of utility meters each connected to at least one management center through an intermediate data concentrator. The data concentrator receives, from each management center, at least a tariff table comprising at least one time interval and an associated pricing rate. It selects the lowest rate for each received time interval. The data concentrator receives, from the utility meter, secured utility meter messages, each comprising: a metering data measurement, the utility meter identifier, a data concentrator identifier and a management center identifier. On the basis of several metering data measurements, a metering counter differential consumption value is determined and the management center suggesting the lowest rate is assigned thereto. Finally, a secured report containing at least the metering counter differential consumption value together with the utility meter identifier to which this value refers is sent from the data concentrator towards each management center.
    • 每个通过中间数据集中器与至少一个管理中心连接的公用事业仪表的公用事业消耗的定价方法。 数据集中器从每个管理中心接收至少一个包含至少一个时间间隔和相关的定价率的资费表。 它为每个接收的时间间隔选择最低速率。 数据集中器从公用事业仪表接收固定的公用事业电表消息,每个包括:计量数据测量,公用事业计量表标识符,数据集中器标识符和管理中心标识符。 在多个测量数据测量的基础上,确定计量计数器差分消耗值,并且向其指定建议最低速率的管理中心。 最后,从数据集中器向每个管理中心发送至少包含计量计数器差分消耗值的安全报告以及该值所参考的公用事业计量表标识符。