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    • 3. 发明授权
    • Digital sensor apparatus and system for protection, control and management of electricity distribution systems
    • 用于配电系统的保护,控制和管理的数字传感器装置和系统
    • US06236949B1
    • 2001-05-22
    • US09414479
    • 1999-10-07
    • Ronald G. Hart
    • Ronald G. Hart
    • G01R1900
    • H02H7/261G01R15/183Y02E60/728Y04S10/265
    • A sensor apparatus for monitoring voltage and/or current in an electric circuit and a system for monitoring voltages and currents in a system wherein electricity is distributed in a plurality of circuits. A sensor apparatus is associated with each phase conductor in each of the circuits. The sensor apparatus senses the electricity in the phase conductor and provides a digital output that is representative of the sensed electricity in the phase conductor. The digital output preferably includes phasor data for the sensed phase conductor. The monitoring system includes a plurality of such sensor apparatuses. The plurality of sensor apparatuses are coupled to a digital data network that provides for the exchange of sensed data among nodes on the digital data network. On a node of the network, phasor data from some of the plurality of sensor apparatuses are summed or otherwise processed to obtain phasor data representative of a plurality of the circuits.
    • 一种用于监测电路中的电压和/或电流的传感器装置以及用于监视系统中的电压和电流的系统,其中电分布在多个电路中。 传感器装置与每个电路中的每个相导体相关联。 传感器装置感测相导体中的电,并提供表示相导体中检测到的电的数字输出。 数字输出优选地包括感测相导体的相量数据。 监视系统包括多个这样的传感器装置。 多个传感器设备耦合到数字数据网络,数字数据网络提供数字数据网络上的节点之间的感测数据的交换。 在网络的节点上,来自多个传感器装置中的一些的相量数据相加或以其他方式处理,以获得表示多个电路的相量数据。
    • 5. 发明授权
    • Digital sensor apparatus and system for protection, control, and
management of electricity distribution systems
    • 用于配电系统的保护,控制和管理的数字传感器装置和系统
    • US5995911A
    • 1999-11-30
    • US798724
    • 1997-02-12
    • Ronald G. Hart
    • Ronald G. Hart
    • G01R15/18H02H7/26G01R19/00
    • H02H7/261G01R15/183Y02E60/728Y04S10/265
    • A sensor apparatus for monitoring voltage and/or current in an electric circuit and a system for monitoring voltages and currents in a system wherein electricity is distributed in a plurality of circuits. A sensor apparatus is associated with each phase conductor in each of the circuits. The sensor apparatus senses the electricity in the phase conductor and provides a digital output that is representative of the sensed electricity in the phase conductor. The digital output preferably includes phasor data for the sensed phase conductor. The monitoring system includes a plurality of such sensor apparatuses. The plurality of sensor apparatuses are coupled to a digital data network that provides for the exchange of sensed data among nodes on the digital data network. On a node of the network, phasor data from some of the plurality of sensor apparatuses are summed or otherwise processed to obtain phasor data representative of a plurality of the circuits.
    • 一种用于监测电路中的电压和/或电流的传感器装置以及用于监视系统中的电压和电流的系统,其中电分布在多个电路中。 传感器装置与每个电路中的每个相导体相关联。 传感器装置感测相导体中的电,并提供表示相导体中检测到的电的数字输出。 数字输出优选地包括感测相导体的相量数据。 监视系统包括多个这样的传感器装置。 多个传感器设备耦合到数字数据网络,数字数据网络提供数字数据网络上的节点之间的感测数据的交换。 在网络的节点上,来自多个传感器装置中的一些的相量数据相加或以其他方式处理,以获得表示多个电路的相量数据。
    • 6. 发明授权
    • Push communications architecture for intelligent electronic devices
    • 推动智能电子设备的通信架构
    • US07734380B2
    • 2010-06-08
    • US10666398
    • 2003-09-19
    • Douglas S. RansomMartin A. HancockRonald G. HartJ. Bradford ForthMichael E. TeachmanAndrew W. Blackett
    • Douglas S. RansomMartin A. HancockRonald G. HartJ. Bradford ForthMichael E. TeachmanAndrew W. Blackett
    • G01R21/00G05D17/00H04K1/00
    • H04L63/1441G01D4/004G01R19/2513G06F19/00H02H1/0061H02J3/00H02J3/008H02J13/0006H04L63/029H04L63/168H04L67/02Y02B90/242Y02E60/723Y02E60/724Y04S10/16Y04S10/18Y04S20/322Y04S40/24Y04S50/10
    • A power management architecture for an electrical power distribution system, or portion thereof, is disclosed. The architecture includes multiple intelligent electronic devices (“IED's”) distributed throughout the power distribution system to manage the flow and consumption of power from the system using real time communications. Power management application software and/or hardware components operate on the IED's and the back-end servers and inter-operate via the network to implement a power management application. The architecture provides a scalable and cost effective framework of hardware and software upon which such power management applications can operate to manage the distribution and consumption of electrical power by one or more utilities/suppliers and/or customers which provide and utilize the power distribution system. Autonomous communication on the network between IED's, back-end servers and other entities coupled with secure networks, themselves interconnected, via firewalls, by one or more unsecure networks, is facilitated by the use of a back-channel protocol. The back-channel protocol allows a device coupled with a secure network to solicit communications from a device on the unsecure network, thereby opening a back-channel through the firewall through which the unsecure network device may send unsolicited messages to the secure network device. Communications between multiple secure networks is accomplished using a unsecure device on an intermediary unsecure network to relay communications between the secure network devices using the protocol described above.
    • 公开了用于配电系统或其一部分的电力管理架构。 该架构包括分布在整个配电系统中的多个智能电子设备(“IED”),用于使用实时通信来管理来自系统的电力的流量和消耗。 电源管理应用软件和/或硬件组件在IED和后端服务器上运行,并通过网络进行互操作以实现电源管理应用。 该架构提供了一种可扩展且具有成本效益的硬件和软件框架,通过该框架,这些电源管理应用可以由一个或多个提供和利用配电系统的公用设施/供应商和/或客户来管理电力的分配和消耗。 通过使用反向通道协议,便于通过一个或多个不安全网络自身通过防火墙互连的IED,后端服务器和其他实体之间的网络上的自动通信。 背信道协议允许与安全网络耦合的设备从非安全网络上的设备寻求通信,从而打开通过防火墙的反向信道,不安全网络设备可以通过该信道向安全网络设备发送非请求消息。 使用在中间不安全网络上的不安全的设备来实现多个安全网络之间的通信,以使用上述协议中继安全网络设备之间的通信。
    • 7. 发明授权
    • Push communications architecture for intelligent electronic devices
    • 推动智能电子设备的通信架构
    • US07216043B2
    • 2007-05-08
    • US10340374
    • 2003-01-09
    • Douglas S. RansomMartin A. HancockRonald G. HartJ. Bradford ForthMichael E. TeachmanAndres W. Blackett
    • Douglas S. RansomMartin A. HancockRonald G. HartJ. Bradford ForthMichael E. TeachmanAndres W. Blackett
    • G06F21/20
    • H04L63/1441G01D4/004G01R19/2513G06F19/00H02H1/0061H02J3/00H02J3/008H02J13/0006H04L63/029H04L63/168H04L67/02Y02B90/242Y02E60/723Y02E60/724Y04S10/16Y04S10/18Y04S20/322Y04S40/24Y04S50/10
    • A power management architecture for an electrical power distribution system, or portion thereof, is disclosed. The architecture includes multiple intelligent electronic devices (“IED's”) distributed throughout the power distribution system to manage the flow and consumption of power from the system using real time communications. Power management application software and/or hardware components operate on the IED's and the back-end servers and inter-operate via the network to implement a power management application. The architecture provides a scalable and cost effective framework of hardware and software upon which such power management applications can operate to manage the distribution and consumption of electrical power by one or more utilities/suppliers and/or customers which provide and utilize the power distribution system. Autonomous communication on the network between IED's, back-end servers and other entities coupled with secure networks, themselves interconnected, via firewalls, by one or more unsecure networks, is facilitated by the use of a back-channel protocol. The back-channel protocol allows a device coupled with a secure network to solicit communications from a device on the unsecure network, thereby opening a back-channel through the firewall through which the unsecure network device may send unsolicited messages to the secure network device. Communications between multiple secure networks is accomplished using a unsecure device on an intermediary unsecure network to relay communications between the secure network devices using the protocol described above.
    • 公开了用于配电系统或其一部分的电力管理架构。 该架构包括分布在整个配电系统中的多个智能电子设备(“IED”),用于使用实时通信来管理来自系统的电力的流量和消耗。 电源管理应用软件和/或硬件组件在IED和后端服务器上运行,并通过网络进行互操作以实现电源管理应用。 该架构提供了一种可扩展且具有成本效益的硬件和软件框架,通过该框架,这些电源管理应用可以由一个或多个提供和利用配电系统的公用设施/供应商和/或客户来管理电力的分配和消耗。 通过使用反向通道协议,便于通过一个或多个不安全网络自身通过防火墙互连的IED,后端服务器和其他实体之间的网络上的自动通信。 背信道协议允许与安全网络耦合的设备从非安全网络上的设备寻求通信,从而打开通过防火墙的反向信道,不安全网络设备可以通过该信道向安全网络设备发送非请求消息。 使用在中间不安全网络上的不安全的设备来实现多个安全网络之间的通信,以使用上述协议中继安全网络设备之间的通信。
    • 10. 发明授权
    • Phasor transducer apparatus and system for protection, control, and management of electricity distribution systems
    • 用于电力分配系统的保护,控制和管理的相量传感器装置和系统
    • US07248977B2
    • 2007-07-24
    • US10613611
    • 2003-07-03
    • Ronald G. Hart
    • Ronald G. Hart
    • G01R21/00
    • G01R22/00G01D4/004G01R19/2513G01R21/133H02H1/0061H02J3/00H02J13/00Y02B90/242Y02B90/248Y02E60/728Y04S10/265Y04S20/322Y04S20/52
    • A system for measuring the delivery of electrical energy from an energy supplier to a consumer through an electric circuit is disclosed. The system includes devices coupled with the network. Each device comprises a sensor, an analog to digital converter, a processor and communications ports. The sensor is coupled with the electric circuit, senses power parameters in the circuit and generates an analog signal indicative thereof. The converter is coupled with the sensor and converts the analog signal to a representative digital signal. The processor is coupled with the converter and generates a computed value from the digital signal. Each of the ports is operative to receive communications from the network and transmit the communications to the processor. The ports are coupled with the network, wherein each device engages in multiple substantially simultaneous communications from the ports, and whereby one of the devices communicates with another device over the network.
    • 公开了一种用于通过电路测量从能量供给器向消费者传递电能的系统。 该系统包括与网络耦合的设备。 每个设备包括传感器,模数转换器,处理器和通信端口。 传感器与电路耦合,感测电路中的功率参数并产生指示其的模拟信号。 转换器与传感器耦合,并将模拟信号转换成代表性的数字信号。 处理器与转换器耦合,并从数字信号产生一个计算值。 每个端口都可操作以从网络接收通信并将通信发送到处理器。 端口与网络耦合,其中每个设备从端口接合多个基本上同时的通信,并且其中一个设备通过网络与另一设备通信。