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    • 52. 发明申请
    • Distributed intelligence ballast system and extended lighting control protocol
    • 分布式智能镇流器系统和扩展照明控制协议
    • US20060125426A1
    • 2006-06-15
    • US11011933
    • 2004-12-14
    • Dragan VeskovicRobert AnselmoAudwin CashMatthew Skvoretz
    • Dragan VeskovicRobert AnselmoAudwin CashMatthew Skvoretz
    • H05B37/00
    • H05B37/0254H05B41/38
    • A ballast for use in a multi-ballast lighting system wherein the ballasts are coupled together by a digital communication network. The ballast comprises a power circuit portion for providing an electrical current to power a lamp. The ballast further includes a sensor input circuit for receiving at least one sensor input from a sensor device, a processor receiving an input from the sensor input circuit and providing control signals to control the operation of the ballast, and a communication port coupled to the processor and to the communication network for exchanging data. The ballast processor is operative to receive a serial data that has a portion defining whether the message is in a first or a second format, the first format comprising a DALI standard format and the second format comprising a format providing extended functionality. The ballast processor is capable of processing messages in either the first or second formats.
    • 一种用于多镇流照明系统的镇流器,其中镇流器通过数字通信网络耦合在一起。 镇流器包括用于提供电流来为灯供电的电源电路部分。 所述镇流器还包括用于接收来自传感器装置的至少一个传感器输入的传感器输入电路,处理器从所述传感器输入电路接收输入并提供控制信号以控制所述镇流器的操作,以及连接到所述处理器的通信端口 以及用于交换数据的通信网络。 镇流器处理器可操作以接收具有定义消息是处于第一还是第二格式的部分的串行数据,第一格式包括DALI标准格式,第二格式包括提供扩展功能的格式。 镇流器处理器能够以第一或第二格式处理消息。
    • 53. 发明授权
    • Method of automatically programming a load control device using a remote identification tag
    • 使用远程识别标签自动编程负载控制装置的方法
    • US08760262B2
    • 2014-06-24
    • US12718273
    • 2010-03-05
    • Dragan Veskovic
    • Dragan Veskovic
    • H04Q5/22H05B37/00
    • H05B37/0272G06K7/10297H05B33/0845H05B37/02H05B37/0254H05B37/0263
    • A method of automatically programming a new load control device that replaces an old load control device takes advantage of a remote identification tag (e.g., an RFID tag) located in the vicinity of the old device. The remote identification tag stores an identifier that is representative of a location in which the old device is installed. The method includes the steps of: (1) storing a setting of an old device in a memory of a controller; (2) associating the setting with the identifier of the old device in the memory of the controller; (3) the new device retrieving the identifier from the remote identification tag after the new device is installed in the location of the old device; (4) the new device transmitting the identifier to the controller; and (5) the controller transmitting the setting of the old device to the new device in response to receiving the identifier.
    • 自动编程代替旧的负载控制装置的新的负载控制装置的方法利用位于旧装置附近的远程识别标签(例如,RFID标签)。 远程识别标签存储代表旧设备安装位置的标识符。 该方法包括以下步骤:(1)将旧设备的设置存储在控制器的存储器中; (2)将设置与控制器的存储器中的旧设备的标识符相关联; (3)新设备在新设备安装在旧设备的位置之后从远程识别标签检索标识符; (4)新设备向控制器发送标识符; 以及(5)所述控制器响应于接收到所述标识符而将所述旧设备的设置发送到所述新设备。
    • 54. 发明授权
    • Load control device for a light-emitting diode light source
    • 用于发光二极管光源的负载控制装置
    • US08680787B2
    • 2014-03-25
    • US13416741
    • 2012-03-09
    • Dragan Veskovic
    • Dragan Veskovic
    • H05B37/02H05B39/06
    • H05B33/0815H05B33/0824H05B33/0848
    • An LED driver for controlling the intensity of an LED light source includes a power converter circuit for generating a DC bus voltage, an LED drive circuit for receiving the bus voltage and controlling a load current through, and thus the intensity of, the LED light source, and a controller operatively coupled to the power converter circuit and the LED drive circuit. The LED drive circuit comprises a controllable-impedance circuit coupled in series with the LED light source. The controller adjusts the magnitude of the bus voltage to a target bus voltage and generates a drive signal for controlling the controllable-impedance circuit. To adjust the intensity of the LED light source, the controller controls the magnitudes of both the load current and the regulator voltage. The controller controls the magnitude of the regulator voltage by simultaneously maintaining the magnitude of the drive signal constant and adjusting the target bus voltage.
    • 用于控制LED光源的强度的LED驱动器包括用于产生DC总线电压的功率转换器电路,用于接收总线电压并控制负载电流的LED驱动电路,并且因此控制LED光源的强度 以及可操作地耦合到功率转换器电路和LED驱动电路的控制器。 LED驱动电路包括与LED光源串联耦合的可控阻抗电路。 控制器将总线电压的大小调整为目标总线电压,并产生用于控制可控阻抗电路的驱动信号。 为了调整LED光源的强度,控制器控制负载电流和调节器电压的大小。 控制器通过同时保持驱动信号的幅值恒定并调节目标总线电压来控制调节器电压的幅度。
    • 56. 发明授权
    • System providing automatic and manual control of an illumination level in a space
    • 系统提供对空间中的照明水平的自动和手动控制
    • US08197093B2
    • 2012-06-12
    • US13101608
    • 2011-05-05
    • Dragan Veskovic
    • Dragan Veskovic
    • F21V23/04F21V14/08G05D25/02H05B37/02
    • E06B9/32E06B9/68H05B37/0209H05B37/0218Y02A30/257Y02B20/46Y02B80/50Y10S362/802
    • A method of controlling a light level in a space of a building, the method comprising the steps of measuring the light level in the space; automatically adjusting the light level in the space towards a control setpoint; receiving an input to manually override the light level in the space to an override light level; adjusting the light level in the space to the override light level; temporarily adjusting the control setpoint from a default setpoint to a temporary setpoint in response to the manual override of the light level, the temporary setpoint representative of the override light level; subsequently adjusting the control setpoint from the temporary setpoint back to the default setpoint; and adjusting the default setpoint in response to repeated manual overrides of the light level that result in repeated adjustments of the control setpoint.
    • 一种控制建筑物的空间中的光级的方法,所述方法包括以下步骤:测量所述空间中的光级; 自动将空间中的光级调整到控制设定点; 接收输入以手动将该空间中的光级别覆盖到超驰光级别; 将空间中的光级调节到超驰光级; 响应于光级别的手动超驰,暂时将控制设定值从默认设定值调整到临时设定值,表示超驰光级的临时设定值; 随后将控制设定值从临时设定值调整到默认设定值; 并根据重复的手动重写灯光水平来调整默认设定值,导致重复调整控制设定值。
    • 58. 发明申请
    • Electronic Dimming Ballast Having Advanced Boost Converter Control
    • 具有高级升压转换器控制的电子调光镇流器
    • US20120043899A1
    • 2012-02-23
    • US13212773
    • 2011-08-18
    • Dragan Veskovic
    • Dragan Veskovic
    • H05B39/06
    • H05B41/295
    • An electronic ballast for driving a gas discharge lamp includes a power converter for generating a DC bus voltage, where the bus voltage is controlled to different magnitudes during different operating modes of the ballast. The ballast comprises a control circuit that is coupled to the power converter for adjusting the magnitude of the bus voltage to a first magnitude when the lamp is off, to a second magnitude when preheating filaments of the lamp, and to a third magnitude when the lamp is on. The control circuit is also operable to preemptively adjust the magnitude of the bus voltage prior to changing modes of operation. For example, when turning the load on, the control circuit first adjusts a power-conversion-drive level of the power converter to begin adjusting the magnitude of the bus voltage towards a predetermined magnitude, and then waits for a predetermined time period before attempting to turn the load on.
    • 用于驱动气体放电灯的电子镇流器包括用于产生DC总线电压的功率转换器,其中在镇流器的不同操作模式期间总线电压被控制到不同的幅度。 镇流器包括控制电路,其耦合到功率转换器,用于当灯关闭时将总线电压的幅度调整到第一幅度,当预热灯的灯丝时达到第二幅度,并且当灯 是在。 控制电路还可操作以在改变操作模式之前先预先调节总线电压的幅度。 例如,当打开负载时,控制电路首先调整功率转换器的功率转换驱动电平,以开始将总线电压的幅度调整到预定的大小,然后在尝试之前等待预定的时间段 打开负载。
    • 59. 发明授权
    • System to control daylight and electric light in a space
    • 系统控制空间中的日光和电灯
    • US07566137B2
    • 2009-07-28
    • US11530161
    • 2006-09-08
    • Dragan Veskovic
    • Dragan Veskovic
    • H05B35/00
    • E06B9/32E06B9/68H05B37/0209H05B37/0218Y02A30/257Y02B20/46Y02B80/50Y10S362/802
    • An illumination maintenance system for maintaining a desired illumination profile in a space throughout at least a portion of a day, the space being illuminable by both daylight and electric light, the system comprising a sensor for sensing an illumination level in at least a portion of the space; a plurality of dimmable electric lamps providing the electric light to supplement the daylight illumination of the space, the electric lamps arranged in one or more zones in the space, the zones defining predefined volumes of the space, each zone having at least one lamp; a control system controlling the dimming levels of the plurality of electric lamps, the at least one lamp of each zone being controlled to a dimming level to achieve a desired illumination level in the respective zone according to the desired illumination profile and compensate for the daylight illumination in the space throughout at least the portion of the day; wherein the dimming level of each lamp is selected by the control system from one of a plurality of lighting presets, each lighting preset comprising a combination of dimming levels of the lamps, and wherein the control system adjusts the dimming level of the electric lamps toward a preset that will result in an appropriate supplementing of the daylight illumination to achieve the desired illumination profile in the space.
    • 一种照明维护系统,用于在一天中的至少一部分时间内将空间保持在期望的照明轮廓,所述空间由日光和电光照亮,所述系统包括用于感测至少一部分中的照明水平的传感器 空间; 多个可调光电灯,提供电光以补充空间的日光照明,布置在空间中的一个或多个区域中的电灯,所述区域限定空间的预定体积,每个区域具有至少一个灯; 控制多个电灯的调光水平的控制系统,每个区域的至少一个灯被控制到调光水平,以根据期望的照明轮廓在相应的区域中实现期望的照明水平,并补偿日光照明 至少在一天中的空间中; 其中每个灯的调光电平由所述控制系统从多个照明预设中的一个选择,每个照明预设包括所述灯的调光电平的组合,并且其中所述控制系统将所述电灯的调光电平调整为朝向 预设将导致适当补充日光照明以在该空间中实现期望的照明轮廓。
    • 60. 发明授权
    • Distributed intelligence ballast system and extended lighting control protocol
    • 分布式智能镇流器系统和扩展照明控制协议
    • US07369060B2
    • 2008-05-06
    • US11011933
    • 2004-12-14
    • Dragan VeskovicRobert AnselmoAudwin W. CashMatthew A. Skvoretz
    • Dragan VeskovicRobert AnselmoAudwin W. CashMatthew A. Skvoretz
    • G08B5/22
    • H05B37/0254H05B41/38
    • A ballast for use in a multi-ballast lighting system wherein the ballasts are coupled together by a digital communication network. The ballast comprises a power circuit portion for providing an electrical current to power a lamp. The ballast further includes a sensor input circuit for receiving at least one sensor input from a sensor device, a processor receiving an input from the sensor input circuit and providing control signals to control the operation of the ballast, and a communication port coupled to the processor and to the communication network for exchanging data. The ballast processor is operative to receive a serial data that has a portion defining whether the message is in a first or a second format, the first format comprising a DALI standard format and the second format comprising a format providing extended functionality. The ballast processor is capable of processing messages in either the first or second formats.
    • 一种用于多镇流照明系统的镇流器,其中镇流器通过数字通信网络耦合在一起。 镇流器包括用于提供电流来为灯供电的电源电路部分。 所述镇流器还包括用于接收来自传感器装置的至少一个传感器输入的传感器输入电路,处理器从所述传感器输入电路接收输入并提供控制信号以控制所述镇流器的操作,以及连接到所述处理器的通信端口 以及用于交换数据的通信网络。 镇流器处理器可操作以接收具有定义消息是处于第一还是第二格式的部分的串行数据,第一格式包括DALI标准格式,第二格式包括提供扩展功能的格式。 镇流器处理器能够以第一或第二格式处理消息。