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    • 5. 发明授权
    • Independent automatic shedding branch circuit breaker
    • 独立自动脱落分路断路器
    • US07274974B2
    • 2007-09-25
    • US11063184
    • 2005-02-22
    • Scott R. BrownGary M. Kuzkin
    • Scott R. BrownGary M. Kuzkin
    • H02J7/00
    • H02J3/14H02J9/06Y02B70/3225Y04S20/222Y10T307/647Y10T307/68
    • An independent automatic shedding system that automatically allows any combination of loads to powered under limited power availability (such as a standby power source) without overloading the generator or rewiring, while contributing to the stability of the power grid. A motorized disconnection actuation mechanism under control of a controller disconnects or recloses the contacts of a branch circuit breaker. A sensor detects the presence or absence of a power source and the type of power source, which is classified according to its type. A power source classification program is executed by the controller that interprets the sensor data and causes disconnection or reclosing of the disconnection actuation mechanism depending on a desired status (ON or OFF) of the branch circuit breaker when standby power is available. Conventional circuit protection is provided an optional advanced circuit protection such as ground or arc fault circuit interruption.
    • 一个独立的自动脱落系统,可自动允许任何组合的负载在有限的功率可用性(例如备用电源)下供电,而不会使发电机重新接线或重新布线,同时有助于电网的稳定性。 在控制器下的电动断开致动机构断开或重新连接分支断路器的触点。 传感器检测电源的存在或不存在以及根据其类型分类的电源的类型。 电源分类程序由解释传感器数据的控制器执行,并且当备用电源可用时,根据分支断路器的期望状态(ON或OFF)导致断开致动机构的断开或重新闭合。 传统的电路保护提供了可选的高级电路保护,例如接地或电弧故障电路中断。
    • 6. 发明授权
    • Electrical fault detection system
    • 电气故障检测系统
    • US07079365B2
    • 2006-07-18
    • US10718244
    • 2003-11-20
    • Scott R. BrownKyle P. HunterRoy S. Colby
    • Scott R. BrownKyle P. HunterRoy S. Colby
    • H00H3/00
    • H02H3/04H02H3/331
    • A microcontroller-based system to detect ground-fault and grounded-neutral conditions in a monitored circuit of an electrical distribution system having line and neutral conductors. The system includes a single sensor producing an output signal responsive to current flow in both the line and neutral conductors of the monitored circuit, and a microcontroller receiving the sensor output signal and initiating the generation of a circuit status signal indicating one of a normal operating condition, a ground-fault condition or a grounded-neutral condition in the monitored circuit. The microcontroller is programmed to continuously test for ground-fault conditions by evaluating the sensor output signal and, at selected intervals, test for grounded-neutral conditions by evaluating the sensor's output signal response to a microcontroller initiated ping in the sensor circuit.
    • 一种基于微控制器的系统,用于检测具有线路和中性导体的配电系统的监控电路中的接地故障和接地中性条件。 该系统包括单个传感器,其产生响应于被监测电路的线路和中性线路中的电流的输出信号,以及微控制器,其接收传感器输出信号,并启动生成指示正常操作条件之一的电路状态信号 ,受监控电路中的接地故障状况或接地中性状态。 微控制器被编程为通过评估传感器输出信号来连续测试接地故障情况,并且以选定的间隔通过评估传感器对传感器电路中微控制器启动的ping的输出信号响应来测试接地中性条件。
    • 9. 发明授权
    • Power line communications apparatus and method
    • 电力线通信装置及方法
    • US06563420B2
    • 2003-05-13
    • US09951604
    • 2001-09-13
    • Scott R. BrownGary W. Scott
    • Scott R. BrownGary W. Scott
    • H04M1104
    • H04B3/56H04B2203/5466H04B2203/547H04B2203/5483
    • A power line communications apparatus and method for providing communications over power leads connecting two pieces of electrical equipment. One power lead is split into similarly sized first and second parallel conductors. The first and second conductors pass through a current transformer, the first conductor having a load current flow opposite the second conductor with respect to the current transformer. The transmitted communications signal is applied to the secondary of the current transformer and is induced on the primary of the transformer, namely a loop formed by the first and second conductors. A second current transformer serves as a receiving transducer and senses the communications signal on the first and second conductors.
    • 一种用于通过连接两个电气设备的电源线提供通信的电力线通信装置和方法。 一个电源线被分成类似尺寸的第一和第二平行导体。 第一和第二导体穿过电流互感器,第一导体具有与第二导体相对于电流互感器相反的负载电流流动。 发射的通信信号被施加到电流互感器的次级,并且被感应在变压器的初级,即由第一和第二导体形成的环路。 第二电流互感器用作接收换能器并感测第一和第二导体上的通信信号。