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    • 7. 发明授权
    • Ground potential rise sensors
    • 地电位上升传感器
    • US09529028B2
    • 2016-12-27
    • US13870929
    • 2013-04-25
    • SAN DIEGO GAS & ELECTRIC COMPANY
    • Girolamo RosselliPhil A. PattonWilliam J. Cook
    • G01R27/14G01R27/20H02H3/40G01R27/18H02H7/26
    • G01R27/18G01R27/14G01R27/20H02H3/40H02H7/26
    • Ground Potential Rise (GPR) sensors measure the GPR between the ground grid and the remote earth. A GPR sensor may provide a GPR measurement to an existing distance protection, which may operate based on this measurement automatically. A GPR sensor may comprise a potential transformer configured such that one wire of the high voltage side of the potential transformer is coupled to the ground grid of a substation. The second wire of the potential transformer is coupled to an insulated wire which is coupled to a ground rod or multiple of ground rods bonded together, that is driven into the earth. The low voltage side of the potential transformer is used to connect Distance Relays, Voltage Relays, DFR or Alarms.
    • 地电位(GPR)传感器测量接地网与远地之间的GPR。 GPR传感器可以为现有的距离保护提供GPR测量,该距离保护可以基于该测量自动进行操作。 GPR传感器可以包括电位变压器,其被配置为使得电压互感器的高压侧的一根线耦合到变电站的接地网格。 电压互感器的第二根线连接到绝缘线,该绝缘线与接地棒或多个接合在一起的接地棒相连,被驱动进入地面。 电压互感器的低压侧用于连接距离继电器,电压继电器,DFR或报警器。
    • 8. 发明申请
    • MANAGING GRID INTERACTION WITH AN INTERCONNECT SOCKET ADAPTER CONFIGURED FOR A SOLAR POWER SOURCE
    • 使用配置为太阳能电源的互连插座适配器管理网格互动
    • US20160247241A1
    • 2016-08-25
    • US15141657
    • 2016-04-28
    • San Diego Gas & Electric Company
    • Ken ParksMichael COLBURN
    • G06Q50/06G06Q30/02H02B1/03H02J3/38H01R31/02
    • A system for managing grid interaction with a solar power source includes an energy exchange server, a plurality of solar energy sources, a plurality of interconnect socket adapters, and a plurality of energy exchange controllers, each energy exchange controller coupling to one of the plurality of interconnect socket adapters and dictating energy consumption based on energy pricing data received from the energy exchange server. Each interconnect socket adapter electrically couples to the power grid, one or more energy sinks, and a solar energy source, and the energy exchange server receives a real-time energy consumption data set, a real-time energy production data set, a set of environmental parameters and a starting energy price, and generates a current aggregate electricity demand value as a function of the real-time energy consumption data set and the environmental parameters, a current aggregate electricity supply value as a function of the real-time energy production dataset and the environmental parameters, and a current energy price as a function of the starting energy price, the current aggregate electricity demand value, and the current aggregate electricity supply value.
    • 用于管理与太阳能电源的电网相互作用的系统包括能量交换服务器,多个太阳能源,多个互连插座适配器和多个能量交换控制器,每个能量交换控制器耦合到多个 互连插座适配器和基于从能量交换服务器接收的能量定价数据来规定能量消耗。 每个互连插座适配器电耦合到电网,一个或多个能量吸收器和太阳能源,并且能量交换服务器接收实时能量消耗数据集,实时能量产生数据集,一组 环境参数和启动能源价格,并且产生作为实时能量消耗数据集和环境参数的函数的当前总电力需求值,作为实时能量生产数据集的函数的当前总电力供应值 以及当前能源价格作为起始能源价格,当前总需求电价和当前总供电价值的函数。
    • 9. 发明申请
    • MANAGING GRID INTERACTION WITH INTERCONNECT SOCKET ADAPTER CONFIGURED FOR AN ENERGY STORAGE DEVICE
    • 管理与配置为能源存储设备的互连插座适配器的网格互动
    • US20160247171A1
    • 2016-08-25
    • US15141677
    • 2016-04-28
    • San Diego Gas & Electric Company
    • Ken ParksMichael COLBURN
    • G06Q30/02
    • A system for managing grid interaction with an energy storage device includes an energy exchange server, a plurality of energy storage devices, a plurality of interconnect socket adapters, and a plurality of energy exchange controllers, each energy exchange controller coupling to one of the plurality of interconnect socket adapters and dictating energy consumption based on energy pricing data received from the energy exchange server. Each interconnect socket adapter electrically couples to the power grid, one or more energy sinks, and an energy storage device, and the energy exchange server receives a real-time energy consumption data set, a real-time energy production data set, a set of environmental parameters and a starting energy price, and generates a current aggregate electricity demand value as a function of the real-time energy consumption data set and the environmental parameters, a current aggregate electricity supply value as a function of the real-time energy production dataset and the environmental parameters, and a current energy price as a function of the starting energy price, the current aggregate electricity demand value, and the current aggregate electricity supply value.
    • 用于管理与能量存储设备的电网交互的系统包括能量交换服务器,多个能量存储设备,多个互连插座适配器和多个能量交换控制器,每个能量交换控制器耦合到多个 互连插座适配器和基于从能量交换服务器接收的能量定价数据来规定能量消耗。 每个互连插座适配器电耦合到电网,一个或多个能量吸收器和能量存储装置,并且能量交换服务器接收实时能量消耗数据集,实时能量产生数据集,一组 环境参数和启动能源价格,并且产生作为实时能量消耗数据集和环境参数的函数的当前总电力需求值,作为实时能量生产数据集的函数的当前总电力供应值 以及当前能源价格作为起始能源价格,当前总需求电价和当前总供电价值的函数。