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    • 1. 发明授权
    • Detection device and method for detecting fires and/or signs of fire
    • 用于检测火灾和/或火灾迹象的检测装置和方法
    • US08754942B2
    • 2014-06-17
    • US12988350
    • 2008-11-21
    • Thomas HansesRalph Bergmann
    • Thomas HansesRalph Bergmann
    • H04N7/18H04N9/47
    • G08B17/125G08B13/19628
    • Fire detector installations comprise fire detectors as sensor devices for detecting fires, smoke, flames or other signs of fire, and are used in both public buildings, such as schools or museums, and in private buildings. The invention relates to a detection device (1) for detecting fires and/or signs of fire in an area to be monitored, said detection device comprising an image-producing sensor element (2) for emitting image data, and an optical element (3) mounted upstream of the sensor element (2), which together form a camera system (6) for monitoring the area to be monitored. The detection device also comprises an evaluation element (8) designed to detect fires or signs of fire in the area to be monitored by evaluating the image data. The optical element (3) is arranged and/or embodied in such a way that the field of vision (4) of the camera system has a maximum viewing angle alpha of at least 120°, preferably at least 150°, and especially at least 180°, in at least one plane which is coplanar to the direction of observation (5) of the camera system (6).
    • 火灾探测器装置包括火灾探测器作为用于检测火灾,烟雾,火焰或其他火灾迹象的传感器装置,并用于公共建筑物,如学校或博物馆以及私人建筑物中。 本发明涉及一种用于检测要监视的区域中的火灾和/或火灾迹象的检测装置(1),所述检测装置包括用于发射图像数据的图像产生传感器元件(2)和光学元件(3) )安装在所述传感器元件(2)的上游,所述传感器元件一起形成用于监视要监视的区域的相机系统(6)。 检测装置还包括评估元件(8),其被设计为通过评估图像数据来检测要监视的区域中的火灾或火焰的迹象。 光学元件(3)以这样的方式布置和/或实施,使得照相机系统的视野(4)具有至少120°,优选至少150°的最大视角α,特别是至少 在与摄像系统(6)的观察方向(5)共面的至少一个平面中为180°。
    • 2. 发明申请
    • PHOTOELECTRIC SMOKE DETECTOR AND PROCESS FOR TESTING THE PHOTOELECTRIC SMOKE DETECTOR
    • 光电式烟雾探测器及测试光电式烟雾探测器的方法
    • US20140015668A1
    • 2014-01-16
    • US14008003
    • 2011-03-28
    • Thomas HansesGerhard GruenerWolfgang WerkmeisterJoerg Tuermer
    • Thomas HansesGerhard GruenerWolfgang WerkmeisterJoerg Tuermer
    • G08B29/14
    • G08B29/145G08B17/107G08B29/24
    • A photoelectric smoke detector 1 for detecting smoke particles 4 is disclosed, the smoke detector 1 comprising: a light emitting element 5, a light receiving element 6 for receiving light 8 emitted by the light emitting element 5 and scattered by the smoke particles 4 and for outputting a detection signal 12 obtained by photoelectrical converting the received light 10, 11, an amplifier circuit 13 for amplifying the detection signal 12 and providing an amplified output signal 14, wherein the amplified output signal 14 may be divided into an offset-signal 20 and an amplified detection signal 21, whereby the photoelectric smoke detector 1 is adapted to operate in a pulsed mode, so that the detection signal 12 comprises high-frequency components, whereby the amplified detection signal 21 is determined by high-frequency components of the detection signal 12 and that the offset-signal 20 is determined by low-frequency components of the detection signal 12 and/or by low-frequency components of at least an intermediate signal based on the detection signal 12, and whereby the amplifier circuit 13 is adapted to transfer the high-frequency components with a higher gain and to transfer the low-frequency components with a lower gain in order to improve the signal ratio between the amplified detection signal 21 and the off-set-signal 20.
    • 公开了一种用于检测烟雾颗粒4的光电烟雾探测器1,烟雾探测器1包括:发光元件5,用于接收由发光元件5发射并被烟颗粒4散射的光8的光接收元件6, 输出通过光电转换接收光10,11获得的检测信号12,用于放大检测信号12并提供放大的输出信号14的放大器电路13,其中放大的输出信号14可以被分成偏移信号20和 放大检测信号21,由此光电烟雾检测器1适于以脉冲模式操作,使得检测信号12包括高频分量,由此放大检测信号21由检测信号的高频分量确定 并且偏移信号20由检测信号12的低频分量和/或低频分量o确定 f至少基于检测信号12的中间信号,并且由此放大器电路13适于以较高增益传送高频分量并且以较低增益传送低频分量,以便改善信号 放大检测信号21和偏移信号20之间的比率。
    • 3. 发明申请
    • DETECTION DEVICE AND METHOD FOR DETECTING FIRES AND/OR SIGNS OF FIRE
    • 用于检测火灾和/或火灾信号的检测装置和方法
    • US20110050902A1
    • 2011-03-03
    • US12988350
    • 2008-11-21
    • Thomas HansesRalph Bergmann
    • Thomas HansesRalph Bergmann
    • H04N7/18
    • G08B17/125G08B13/19628
    • Fire detector installations comprise fire detectors as sensor devices for detecting fires, smoke, flames or other signs of fire, and are used in both public buildings, such as schools or museums, and in private buildings. The invention relates to a detection device (1) for detecting fires and/or signs of fire in an area to be monitored, said detection device comprising an image-producing sensor element (2) for emitting image data, and an optical element (3) mounted upstream of the sensor element (2), which together form a camera system (6) for monitoring the area to be monitored. The detection device also comprises an evaluation element (8) designed to detect fires or signs of fire in the area to be monitored by evaluating the image data. The optical element (3) is arranged and/or embodied in such a way that the field of vision (4) of the camera system has a maximum viewing angle alpha of at least 120°, preferably at least 150°, and especially at least 180°, in at least one plane which is coplanar to the direction of observation (5) of the camera system (6).
    • 火灾探测器装置包括火灾探测器作为用于检测火灾,烟雾,火焰或其他火灾迹象的传感器装置,并用于公共建筑物,如学校或博物馆以及私人建筑物中。 本发明涉及一种用于检测要监视的区域中的火灾和/或火灾迹象的检测装置(1),所述检测装置包括用于发射图像数据的图像产生传感器元件(2)和光学元件(3) )安装在所述传感器元件(2)的上游,所述传感器元件一起形成用于监视要监视的区域的相机系统(6)。 检测装置还包括评估元件(8),其被设计为通过评估图像数据来检测要监视的区域中的火灾或火焰的迹象。 光学元件(3)以这样的方式布置和/或实施,使得照相机系统的视野(4)具有至少120°,优选至少150°的最大视角α,特别是至少 在与摄像系统(6)的观察方向(5)共面的至少一个平面中为180°。
    • 6. 发明授权
    • Photoelectric smoke detector and process for testing the photoelectric smoke detector
    • 光电烟雾探测器和光电烟雾探测器测试过程
    • US09117359B2
    • 2015-08-25
    • US14008003
    • 2011-03-28
    • Thomas HansesGerhard GruenerWolfgang WerkmeisterJoerg Tuermer
    • Thomas HansesGerhard GruenerWolfgang WerkmeisterJoerg Tuermer
    • G08B17/10G08B29/14G08B17/107G08B29/24
    • G08B29/145G08B17/107G08B29/24
    • A photoelectric smoke detector 1 for detecting smoke particles 4 is disclosed, the smoke detector 1 comprising: a light emitting element 5, a light receiving element 6 for receiving light 8 emitted by the light emitting element 5 and scattered by the smoke particles 4 and for outputting a detection signal 12 obtained by photoelectrical converting the received light 10, 11, an amplifier circuit 13 for amplifying the detection signal 12 and providing an amplified output signal 14, wherein the amplified output signal 14 may be divided into an offset-signal 20 and an amplified detection signal 21, whereby the photoelectric smoke detector 1 is adapted to operate in a pulsed mode, so that the detection signal 12 comprises high-frequency components, whereby the amplified detection signal 21 is determined by high-frequency components of the detection signal 12 and that the offset-signal 20 is determined by low-frequency components of the detection signal 12 and/or by low-frequency components of at least an intermediate signal based on the detection signal 12, and whereby the amplifier circuit 13 is adapted to transfer the high-frequency components with a higher gain and to transfer the low-frequency components with a lower gain in order to improve the signal ratio between the amplified detection signal 21 and the offset-signal 20.
    • 公开了一种用于检测烟雾颗粒4的光电烟雾探测器1,烟雾探测器1包括:发光元件5,用于接收由发光元件5发射并被烟颗粒4散射的光8的光接收元件6, 输出通过光电转换接收光10,11获得的检测信号12,用于放大检测信号12并提供放大的输出信号14的放大器电路13,其中放大的输出信号14可以被分成偏移信号20和 放大检测信号21,由此光电烟雾检测器1适于以脉冲模式操作,使得检测信号12包括高频分量,由此放大检测信号21由检测信号的高频分量确定 并且偏移信号20由检测信号12的低频分量和/或低频分量o确定 f至少基于检测信号12的中间信号,并且由此放大器电路13适于以较高增益传送高频分量并且以较低增益传送低频分量,以便改善信号 放大检测信号21和偏移信号20之间的比率。