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    • 4. 发明申请
    • LIGHTING DEVICE
    • 照明设备
    • WO2014187717A1
    • 2014-11-27
    • PCT/EP2014/059911
    • 2014-05-15
    • KONINKLIJKE PHILIPS N.V.
    • ARULANDU, KumarPASVEER, Willem FrankeDINGEMANS, Antonius Petrus Marinus
    • H05B37/02
    • H05B37/0227H05B37/0272H05B37/029
    • A first lighting device comprises an electromagnetic sensor operable to receive an electromagnetic signal from at least one other lighting device, an acoustic sensor operable to receive an acoustic signal from the other lighting device, and a signal processing module. The signal processing module is configured to determine a distance between the first lighting device and the other lighting device by comparing the acoustic and electromagnetic signals received from the other lighting device. For example, the signals may be emitted when the other device detects occupancy in a space, and the first device may control its light output in dependence on receipt of the signals and the distance from the device that detected the occupancy.
    • 第一照明装置包括可操作以从至少一个其他照明装置接收电磁信号的电磁传感器,可操作以从另一照明装置接收声信号的声学传感器和信号处理模块。 信号处理模块被配置为通过比较从另一个照明装置接收的声学和电磁信号来确定第一照明装置和另一个照明装置之间的距离。 例如,当另一设备检测到空间中的占用时,信号可以被发射,并且第一设备可以根据接收到的信号和从检测到占用的设备的距离来控制其光输出。
    • 5. 发明申请
    • DC POWER DISTRIBUTION SYSTEM
    • 直流电源分配系统
    • WO2014111824A2
    • 2014-07-24
    • PCT/IB2014/058067
    • 2014-01-06
    • KONINKLIJKE PHILIPS N.V.
    • WENDT, MatthiasPASVEER, Willem Franke
    • H02J9/02
    • H02J9/02H02J9/002
    • The invention relates a DC power distribution system, particularly an EMerge DC power distribution system, comprising a main DC power source for providing main DC power, a track (5) connected to the main DC power source for distributing the DC power, an electrical consumer (14) connected to the track for receiving the DC power, and an auxiliary DC power source device (23) for providing auxiliary DC power to the electrical consumer, if the DC voltage level on the track is below a threshold DC voltage level. Thus, if in an emergency situation the DC voltage level on the track falls below the threshold DC voltage level, the auxiliary DC power source device provides auxiliary DC power to the electrical consumer such that it can be still active, for instance, for providing emergency light.
    • 本发明涉及一种DC配电系统,特别是包括用于提供主DC电力的主DC电源的EMerge直流配电系统,连接到用于分配DC电力的主DC电源的轨道(5),电消耗器 (14)连接到用于接收DC电力的轨道;以及辅助DC电源装置(23),用于在轨道上的DC电压电平低于阈值DC电压电平的情况下向消费者提供辅助DC电力。 因此,如果在紧急情况下,轨道上的直流电压电平低于阈值直流电压电平,则辅助直流电源装置向电消费者提供辅助直流电力,使得其可以仍然有效,例如用于提供紧急 光。
    • 7. 发明申请
    • ROBUST PRESENCE DETECTION THROUGH AUDIBLE COMPONENTS ANALYSIS
    • 通过可听成分分析进行稳健存在检测
    • WO2013108229A2
    • 2013-07-25
    • PCT/IB2013/050484
    • 2013-01-18
    • KONINKLIJKE PHILIPS N.V.
    • VANGEEL, Jurgen MarioRIETMAN, Wijnand JohannesDELNOIJ, Roger Peter AnnaPASVEER, Willem FrankeMATOVINA, JelenaCAICEDO FERNANDEZ, David RicardoKLEIN SWORMINK, Michel Albertus Theodorus
    • H05B37/02
    • H05B37/0227Y02B20/44
    • The invention relates to an occupancy sensor (1) for detecting occupancy comprising an ultrasound transmitting device (2), at least one microphone (M1-M4), a processor unit (3) adapted to receive data from said microphone and send and receive information to/from said ultrasound transmitting device (2), a memory (4) storing instructions to be performed by the processor unit (3), wherein said processor unit (3) is adapted to detect movements and presence of objects from data of reflected ultrasound measured by said at least one microphone (M1-M4), wherein the at least on microphone (M1-M4) is a broad band microphone used for receiving both ultrasound and audible sound, wherein said processor unit (3) is further adapted to use audible sound to enhance detection of living presence. The invention further relates to a method of determining occupancy using an occupancy sensor (1) for detecting occupancy comprising an ultrasound transmitting device (2), at least one broad band microphone (M1-M4), able to record both audible sound and ultrasound, a processor unit (3), a memory (4) storing instructions to be performed by the processor, said method comprising the steps of: sending an ultrasound pulse from said ultrasound transmitting device, receiving data from said microphone of the echo of said ultrasound pulse, making a first calculation using said processor unit of a probability of movements and/or presence of objects from data of the measured reflected ultrasound measured by said microphone, making a second calculation using said processor unit of a probability of movements and/or presence of objects from measured audible sound.
    • 本发明涉及一种用于检测占用的占用传感器(1),其包括超声发送设备(2),至少一个麦克风(M1-M4),适于接收数据的处理器单元(3) 从所述传声器接收信息并从所述超声传送设备(2)发送和接收信息;存储器(4),存储由所述处理器单元(3)执行的指令,其中所述处理器单元(3) 其中所述至少一个麦克风(M1-M4)是用于接收超声和可听声音的宽带麦克风,其中所述处理器单元(M1-M4) (3)还适于使用可听声音来增强对活体存在的检测。 本发明还涉及一种使用用于检测占用的占用传感器(1)来确定占用的方法,该方法包括能够记录可听声音和超声波的超声发送设备(2),至少一个宽带麦克风(M1-M4) 处理器单元(3),存储由处理器执行的指令的存储器(4),所述方法包括以下步骤:从所述超声发射装置发送超声脉冲,从所述超声脉冲的回声的所述话筒接收数据 使用所述处理器单元对由所述麦克风测量的所测量的反射超声的数据中的物体的移动和/或存在的概率进行第一计算,使用所述处理器单元对移动和/或存在的移动概率进行第二计算 来自测得的可听声音的物体。
    • 10. 发明申请
    • AUTOMATIC GROUPING VIA LIGHT AND SOUND
    • 自动分组通过光和声
    • WO2014118676A1
    • 2014-08-07
    • PCT/IB2014/058485
    • 2014-01-23
    • KONINKLIJKE PHILIPS N.V.
    • FERI, LorenzoDAVIES, Robert JamesRIETMAN, RonaldPASVEER, Willem Franke
    • H05B37/02
    • H05B37/0236H05B37/0245
    • The invention relates to a method for automatic grouping of light sources within an illumination system. The method is performed starting from a first light source of the illumination system emitting a first light signal and a first sound signal. The method includes steps of using an intensity of the first light signal as received by a second light source and an intensity of the first sound signal as received by the second light source to determine a value of a grouping function (410, 420), and assigning the first light source and the second light source to the same group of light sources when the determined value of the grouping function satisfies one or more pre-determined conditions (430, 440, 450). In this manner, a determination could be made whether or not the first and second light sources should be assigned to the same group in a manner that yields improved results over the prior art solutions.
    • 本发明涉及一种在照明系统内自动分组光源的方法。 该方法是从发出第一光信号和第一声音信号的照明系统的第一光源开始执行的。 该方法包括以下步骤:使用由第二光源接收的第一光信号的强度和由第二光源接收的第一声音信号的强度来确定分组功能的值(410,420),以及 当分组函数的确定值满足一个或多个预定条件(430,440,450)时,将第一光源和第二光源分配给同一组光源。 以这种方式,可以确定第一和第二光源是否应该以相对于现有技术解决方案产生改进结果的方式分配给相同的组。