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    • 1. 发明申请
    • LOAD CONTROL SYSTEM HAVING INDEPENDENTLY-CONTROLLED UNITS RESPONSIVE TO A BROADCSAT CONTROLLER
    • 具有独立控制单元的负载控制系统响应于BROADCSAT控制器
    • WO2013101779A1
    • 2013-07-04
    • PCT/US2012/071496
    • 2012-12-21
    • LUTRON ELECTRONICS CO., INC.
    • ZAHARCHUK, Walter, S.MAJEWSKI, Timothy, S.BUCK, ChristopherVANDER, Valk, DanielBULL, JohnSPIRA, Joel, S.
    • 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 (100) 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. A broadcast controller 180 transmits wireless signals to the energy controllers. The load control system includes a plurality of independently-controlled units (or sub-systems 110, 112) 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 energy controllers do not respond to control signals received from the commanders of other independent units. The energy controller may operate in different operating modes in response to the wireless signals transmitted by the broadcast controller. The broadcast controller is also operable to discover nodes, to receive digital messages from the commanders and energy controllers and 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(100),用于控制从AC电源传输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。 广播控制器180向能量控制器发送无线信号。 负载控制系统包括多个独立控制的单元(或子系统110,112),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。 能量控制器不响应从其他独立单元的指挥官接收的控制信号。 响应于由广播控制器发送的无线信号,能量控制器可以在不同的操作模式下操作。 广播控制器还可操作以发现节点,从指挥官和能量控制器接收数字消息,并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。
    • 3. 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。
    • 7. 发明公开
    • LOAD CONTROL SYSTEM HAVING INDEPENDENTLY-CONTROLLED UNITS RESPONSIVE TO A BROADCAST CONTROLLER
    • EP3481009A1
    • 2019-05-08
    • EP18201138.7
    • 2012-12-21
    • Lutron Electronics Co., Inc.
    • ZAHARCHUK, Walter, S.MAJEWSKI, Timothy, S.BUCK, ChristopherVANDER, Valk, DanielBULL, JohnSPIRA, Joel, S.
    • H04L12/28H02J3/14H04B7/04G08C17/02
    • The application discloses a broadcast controller 180 which acquires information about the constituent nodes of one or more independent units 110, 112 with which the broadcast controller 180 is in communication. The independent units 110; 112 include one or more commanders 250, 260, 270; 350, 360, 370 and one or more energy controllers 210, 220, 230; 310 320, 330. For example, the broadcast controller 180 communicates with a first node of a first independent unit 110, where the first node is a first commander 250, 260, 270 or a first energy controller 210, 220, 230. The broadcast controller 180 obtains an address of the first node. Also, the broadcast controller 180 obtains from the first node an address of at least one second node of the first independent unit 110. The at least one second node is a second commander or a second energy controller and the at least one second node is in communication with the first node. The broadcast controller 180 determines if at least one of the first node or the at least one second node is an energy controller. Also, the broadcast controller 180 identifies at least one of the first node or the at least one second node as an energy controller according to the determination. Additionally, the broadcast controller 180 identifies at least one of the address of the first node or the address of the at least one second node as an energy controller address according to the determination. The broadcast controller 180 determines an operational relationship between the first node and the at least one second node. Further, the broadcast controller 180 determines if the first node communicates with a node of the first independent unit other than the at least one second node. The broadcast controller 180 communicates with the at least one second node. Also, the broadcast controller 180 determines if the at least one second node communicates with a node of the first independent unit other than the first node. The broadcast controller 180 determines that all of the nodes of the first independent unit have been identified upon the determinations indicating that the first node communicates with no other nodes other than the at least one second node and the at least one second node communicates with no other nodes other than the first node. The broadcast controller 180 also obtains an address of a third node of the first independent unit 110 from the second node.