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    • 6. 发明申请
    • ELECTRICAL SUPPLY CONTROLLER
    • 电源控制器
    • WO2013108046A1
    • 2013-07-25
    • PCT/GB2013/050123
    • 2013-01-21
    • SOUTH DOWNS SOLAR LIMITED
    • LAWES, DanielWALTERS, SimonYEOMAN, Michael
    • H02J3/14H02J3/38H02J13/00
    • H02J3/14H02J3/383H02J13/0075Y02B10/14Y02B70/3225Y02B70/3266Y02B90/2653Y02E10/563Y02E40/72Y04S10/123Y04S20/222Y04S20/242Y04S40/126
    • An electrical supply controller has a switch (9) for selectively coupling and decoupling an electrical supply (3) to a hot water immersion heater (11). A first current sensor (19) detects when an electric current delivered from a renewable source of electricity (2), such as a photovoltaic panel, exceeds a first threshold current. A first wireless transmitter (22) transmits a first signal in response to the electric current exceeding the first threshold current, and a wireless receiver (25) is arranged, in response to receiving the first signal, to cause the switch (9) to couple the electrical supply (3) to the output (10). A second current sensor (20) detects when an electric current delivered to an electrical device (15), such as a kettle, exceeds a second threshold current. A second wireless transmitter (23) transmits a second signal in response to the second current sensor (20) detecting the electrical current exceeding the second threshold current. In response to receiving the second signal, the wireless receiver(25) causes the switch (9) to decouple the electrical supply (3) from the hot water immersion heater (11).
    • 电源控制器具有用于选择性地将电源(3)耦合到热水浸入式加热器(11)并将其去耦的开关(9)。 第一电流传感器(19)检测从可再生能源(2)(例如光伏面板)传递的电流何时超过第一阈值电流。 第一无线发射器(22)响应于超过第一阈值电流的电流发射第一信号,并且响应于接收到第一信号而布置无线接收器(25),以使开关(9)耦合 输出(10)的电源(3)。 第二电流传感器(20)检测输送到例如釜的电气设备(15)的电流何时超过第二阈值电流。 响应于检测到超过第二阈值电流的电流的第二电流传感器(20),第二无线发射器(23)发送第二信号。 响应于接收到第二信号,无线接收器(25)使开关(9)将电源(3)与热水浸入式加热器(11)分离。
    • 7. 发明申请
    • LOAD CONTROL SYSTEM HAVING A BROADCAST CONTROLLER WITH A DIVERSE WIRELESS COMMUNICATION SYSTEM
    • 具有多元无线通信系统的广播控制器的负载控制系统
    • WO2013101766A1
    • 2013-07-04
    • PCT/US2012/071421
    • 2012-12-21
    • LUTRON ELECTRONICS CO., INC.
    • MOSEBROOK, DonaldMAJEWSKI, Timothy, S.ALTONEN, GregoryBARD, Benjamin, F.
    • H04L12/28H02J3/14
    • H02J3/00G08C17/02H02J3/14H02J4/00H02J5/005H02J13/0075H02J50/80H02J2003/143H04H20/00H04L12/2816H05B37/02H05B37/0272Y02B70/3225Y02B70/325Y02B70/3275Y02B70/3283Y02B90/2653Y02B90/2684Y04S20/222Y04S20/228Y04S20/244Y04S20/246Y04S40/126Y04S40/143Y10T307/25Y10T307/461
    • A load control system (900) for controlling the amount of power delivered from an AC power source to a plurality of electrical loads (lighting load 212, plug-in load 224, damper 242 of an HVAC system, discharge lamps 314, electronic drive unit 326) includes a plurality of energy controllers (dimmer switch 210, plug-in load control 220, temperature control devices 230, 330, contact-closure output pack 240, digital ballast controller 310, motorized window treatment 320). Each energy controller is operable to control at least one of the electrical loads. The load control system also includes a first broadcast controller (980) that has a first antenna (990) and a second antenna (991). The first antenna is arranged in a first position and the second antenna is arranged in a second position that is orthogonal to the first position. The broadcast controller is operable to transmit a first wireless signal via the first antenna and a second wireless signal via the second antenna. Each of the energy controllers is operable to receive at least one of the first and second wireless signals, and to control the respective load in response to the received wireless signal. The load control system includes a plurality of independently-controlled units (or sub-systems 910, 912) having commanders (remote controllers 250, 350, occupancy sensors 260, 360, temperature sensor 270, daylight sensor 370) for controlling the energy controllers, where the independent units are configured and operate independent of each other. The broadcast controller is also operable to receive digital messages from the commanders and energy controllers and thus- to collect data from the commanders and energy controllers of the independent units. The load control system enables system-wide functionality, such as demand response and whole-building time clock functions.
    • 一种负载控制系统(900),用于控制从AC电源传送到多个电负载的功率量(照明负载212,插入式负载224,HVAC系统的风门242,放电灯314,电子驱动单元 326)包括多个能量控制器(调光开关210,插入式负载控制220,温度控制装置230,330,触点闭合输出组件240,数字镇流器控制器310,电动窗户处理320)。 每个能量控制器可操作以控制至少一个电负载。 负载控制系统还包括具有第一天线(990)和第二天线(991)的第一广播控制器(980)。 第一天线布置在第一位置,第二天线布置在与第一位置正交的第二位置。 广播控制器可操作以经由第一天线和第二无线信号经由第二天线发送第一无线信号。 每个能量控制器可操作以接收第一和第二无线信号中的至少一个,并且响应于所接收的无线信号来控制相应的负载。 负载控制系统包括多个独立控制的单元(或子系统910,912),其具有用于控制能量控制器的指令器(遥控器250,350,占用传感器260,360,温度传感器270,日光传感器370) 其中独立单元被配置和彼此独立地操作。 广播控制器还可操作以从指挥官和能量控制器接收数字消息,从而从独立单元的指挥官和能量控制器收集数据。 负载控制系统实现了系统范围的功能,如需求响应和整体构建时钟功能。
    • 10. 发明申请
    • 콘센트 제어 장치 및 전력 관리 시스템
    • 插座控制装置和电源管理系统
    • WO2012148045A1
    • 2012-11-01
    • PCT/KR2011/006268
    • 2011-08-25
    • 주식회사 다원디엔에스여운남
    • 여운남
    • H02J13/00H02J9/00G01R22/00H02J7/00
    • H02J9/005H02J13/0075H02J2009/007Y02B70/3233Y02B90/2653Y04S20/225Y04S40/126
    • 콘센트 제어 장치 및 전력 관리 시스템이 개시된다. 상기 전력 관리 시스템은 제 1 단자에 전자 기기가 접속되고, 상기 제 1 단자와 연결되는 제 2 단자가 콘센트에 삽입되고, 상기 접속된 전자기기의 전력 사용 정보를 생성하여 출력하며, 상기 접속된 전자기기의 유효 전력값이 대기 전력 기준값 이하인 경우 상기 제 1 단자와 상기 제 2 단자의 연결을 차단하며, 통신 장치에서 수신된 신호에 응답하여 상기 제 1 단자와 상기 제 2 단자의 연결 여부를 제어하는 콘센트 제어 장치 및 상기 출력된 전력 사용 정보를 직접 수신하여 디스플레이하고, 상기 제 1 단자와 상기 제 2 단자의 연결 여부를 제어하는 신호를 생성하여 상기 콘센트 제어 장치로 직접 전송하는 상기 통신 장치를 포함할 수 있다.
    • 公开了插座控制装置和电源管理系统。 电源管理系统包括插座控制装置和通信装置。 关于插座控制装置,第一端子连接到电子装置,连接到第一端子的第二端子插入插座中,并且生成并输出连接的电子装置上的电力使用信息。 当所连接的电子设备的有效功率值小于标准待机功率值时,插座控制装置切断第一端子与第二端子之间的连接,并且响应于第一端子和第二端子之间的连接, 在通信设备中接收的信号。 通信装置直接接收输出的功率使用信息并显示所接收的信息,并且生成用于控制第一终端和第二终端之间的连接的信号,以便将产生的信号直接发送到插座控制装置。