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    • 1. 发明申请
    • METHOD AND SYSTEM FOR LIGHTING CONTROL AND MONITORING
    • 用于照明控制和监测的方法和系统
    • US20110215736A1
    • 2011-09-08
    • US12783109
    • 2010-05-19
    • Joseph E. HorbstMark VanWagoner
    • Joseph E. HorbstMark VanWagoner
    • H05B37/02
    • H05B37/02G05B19/418H04L41/00H05B31/00Y02B20/14Y02B20/42
    • Embodiments of the present invention are directed to control of lighting systems at individual-light-fixture, local, regional, and larger-geographical-area levels. One embodiment of the present invention comprises a hierarchical lighting-control system including an automated network-control center that may control up to many millions of individual lighting fixtures and lighting elements, regional routers interconnected to the network-control center or network-control centers by public communications networks, each of which controls hundreds to thousands of individual light fixtures, and light-management units, interconnected to regional routers by radio-frequency communications and/or power-line communications, each of which controls components within a lighting fixture, including lighting elements. LED-luminaire drivers, sensors, and other devices.
    • 本发明的实施例涉及在个人照明设备,地方,区域和更大地理区域的照明系统的控制。 本发明的一个实施例包括分级照明控制系统,其包括可以控制多达数百万个照明灯具和照明元件的自动化网络控制中心,通过网络控制中心或网络控制中心互连的区域路由器 公共通信网络,其中每个通过射频通信和/或电力线路通信来控制数百到数千个独立的灯具以及与区域路由器相互连接的光管理单元,每个通信网络控制照明器具内的组件,包括 照明元素。 LED灯具驱动器,传感器和其他设备。
    • 2. 发明授权
    • Method and system for automated lighting control and monitoring
    • 自动照明控制和监控的方法和系统
    • US08686664B2
    • 2014-04-01
    • US12719681
    • 2010-03-08
    • Joseph E. HerbstMark VanWagoner
    • Joseph E. HerbstMark VanWagoner
    • G05F1/00H05B37/02H05B39/04H05B41/36H05B37/00H05B39/00H05B41/00
    • H04L43/0817H04L41/0803H05B37/0272
    • Embodiments of the present invention are directed to automated control of lighting systems at individual-light-fixture, local, regional, and larger-geographical-area levels. One embodiment of the present invention comprises a hierarchical lighting-control system including an automated network-control center that may control up to many millions of individual lighting fixtures and lighting elements, regional routers interconnected to the network-control center or network-control centers by public communications networks, each of which controls hundreds to thousands of individual light fixtures, and light-management units, interconnected to regional routers by radio-frequency communications and/or power-line communications, each of which controls components within a lighting fixture, including lighting elements, associated ballasts, sensors, and other devices.
    • 本发明的实施例涉及在个人照明设备,地方,区域和更大地理区域的照明系统的自动化控制。 本发明的一个实施例包括分级照明控制系统,其包括可以控制多达数百万个照明灯具和照明元件的自动化网络控制中心,通过网络控制中心或网络控制中心互连的区域路由器 公共通信网络,其中每个通过射频通信和/或电力线路通信来控制数百到数千个独立的灯具以及与区域路由器相互连接的光管理单元,每个通信网络控制照明设备内的组件,包括 照明元件,相关镇流器,传感器和其他设备。
    • 3. 发明申请
    • Lighting System Control and Synthetic Event Generation
    • 照明系统控制和合成事件生成
    • US20130249409A1
    • 2013-09-26
    • US13795848
    • 2013-03-12
    • Mark VanWagonerTim FrodshamJoseph E. Herbst
    • Mark VanWagonerTim FrodshamJoseph E. Herbst
    • H05B33/08
    • H05B33/0854H05B37/0245H05B37/034
    • Systems and methods are described for the control of lighting systems at individual light-fixture, local, regional, and larger-geographical-area levels that also distribute electrical power to consumers. One implementation comprises a hierarchical lighting-control system including an automated network-control center that may control up to many millions of individual lighting fixtures and lighting elements, regional routers interconnected to the network-control center or network-control centers by public communications networks, each of which controls hundreds to thousands of individual light fixtures, and light-management units, interconnected to regional routers by radio-frequency communications and/or power-line communications, each of which controls components within a lighting fixture, including lighting elements, drivers, sensors, and other devices. Systems and methods of using synthetic events for calibration and control of lighting systems are also described.
    • 描述了系统和方法,用于控制个别灯具,地方,区域和较大地理区域的照明系统,并将电力分配给消费者。 一个实施方案包括分级照明控制系统,其包括可以控制多达数百万个照明装置和照明元件的自动化网络控制中心,由公共通信网络互连到网络控制中心或网络控制中心的区域路由器, 每个控制器可控制数百到数千个独立的灯具,以及通过射频通信和/或电力线通信互连到区域路由器的光管理单元,每个照明管理单元控制照明设备内的组件,包括照明元件,驱动器 ,传感器和其他设备。 还描述了使用合成事件来校准和控制照明系统的系统和方法。
    • 4. 发明申请
    • METHOD AND SYSTEM FOR AUTOMATED LIGHTING CONTROL AND MONITORING
    • 自动照明控制与监控方法与系统
    • US20110215735A1
    • 2011-09-08
    • US12719681
    • 2010-03-08
    • Joseph E. HerbstMark VanWagoner
    • Joseph E. HerbstMark VanWagoner
    • H05B37/02
    • H04L43/0817H04L41/0803H05B37/0272
    • Embodiments of the present invention are directed to automated control of lighting systems at individual-light-fixture, local, regional, and larger-geographical-area levels. One embodiment of the present invention comprises a hierarchical lighting-control system including an automated network-control center that may control up to many millions of individual lighting fixtures and lighting elements, regional routers interconnected to the network-control center or network-control centers by public communications networks, each of which controls hundreds to thousands of individual light fixtures, and light-management units, interconnected to regional routers by radio-frequency communications and/or power-line communications, each of which controls components within a lighting fixture, including lighting elements, associated ballasts, sensors, and other devices.
    • 本发明的实施例涉及在个人照明设备,地方,区域和更大地理区域的照明系统的自动化控制。 本发明的一个实施例包括分级照明控制系统,其包括可以控制多达数百万个照明灯具和照明元件的自动化网络控制中心,通过网络控制中心或网络控制中心互连的区域路由器 公共通信网络,其中每个通过射频通信和/或电力线路通信来控制数百到数千个独立的灯具以及与区域路由器相互连接的光管理单元,每个通信网络控制照明设备内的组件,包括 照明元件,相关镇流器,传感器和其他设备。
    • 5. 发明授权
    • Method and system for lighting control and monitoring
    • 照明控制和监控方法和系统
    • US08686665B2
    • 2014-04-01
    • US12783109
    • 2010-05-19
    • Joseph E. HorbstMark VanWagoner
    • Joseph E. HorbstMark VanWagoner
    • G05F1/00H05B37/02H05B39/04H05B41/36H05B37/00H05B39/00H05B41/00
    • H05B37/02G05B19/418H04L41/00H05B31/00Y02B20/14Y02B20/42
    • Embodiments of the present invention are directed to control of lighting systems at individual-light-fixture, local, regional, and larger-geographical-area levels. One embodiment of the present invention comprises a hierarchical lighting-control system including an automated network-control center that may control up to many millions of individual lighting fixtures and lighting elements, regional routers interconnected to the network-control center or network-control centers by public communications networks, each of which controls hundreds to thousands of individual light fixtures, and light-management units, interconnected to regional routers by radio-frequency communications and/or power-line communications, each of which controls components within a lighting fixture, including lighting elements, LED-luminaire drivers, sensors, and other devices.
    • 本发明的实施例涉及在个人照明设备,地方,区域和更大地理区域的照明系统的控制。 本发明的一个实施例包括分级照明控制系统,其包括可以控制多达数百万个照明灯具和照明元件的自动化网络控制中心,通过网络控制中心或网络控制中心互连的区域路由器 公共通信网络,其中每个通过射频通信和/或电力线路通信来控制数百到数千个独立的灯具以及与区域路由器相互连接的光管理单元,每个通信网络控制照明设备内的组件,包括 照明元件,LED灯具驱动器,传感器和其他设备。
    • 8. 发明申请
    • Light Harvesting
    • 轻收获
    • US20130187552A1
    • 2013-07-25
    • US13795906
    • 2013-03-12
    • Tim FrodshamMark VanWagonerJoseph E. Herbst
    • Tim FrodshamMark VanWagonerJoseph E. Herbst
    • H05B37/02
    • H05B37/02H02J7/35H05B33/0845H05B37/0218H05B37/0227H05B37/0245H05B37/034Y02B20/46Y02B20/72
    • The current application is directed to control of lighting systems and utilization of ambient light levels for such control. One implementation comprises one or more lighting fixtures installed in a structure, at least one ambient light information source configured to provide brightness information of ambient light of the structure, and a controller configured to maintain a brightness level of an interior portion of the structure substantially the same as a brightness level of an exterior portion of the structure by controlling outputs of the lighting fixtures in response to the brightness information of the ambient light. The interior portion of the structure may include an entrance portion of the structure. The controller may be further configured to gradually reduce brightness levels of the outputs of the lighting fixtures from the entrance portion towards a center of the structure.
    • 目前的应用是针对照明系统的控制和对这种控制的环境光水平的利用。 一个实施方案包括安装在结构中的一个或多个照明器材,被配置为提供结构的环境光的亮度信息的至少一个环境光信息源,以及被配置为将该结构的内部部分的亮度水平基本保持 通过响应于环境光的亮度信息控制照明器具的输出,与结构的外部部分的亮度水平相同。 结构的内部可以包括结构的入口部分。 控制器还可以被配置为逐渐地将照明器具的输出的亮度从入口部分朝向结构的中心降低。