会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明申请
    • 制御システム、照明制御システムおよび制御用端末装置
    • 控制系统,照明控制系统和控制终端
    • WO2005031476A1
    • 2005-04-07
    • PCT/JP2004/003799
    • 2004-03-19
    • 学校法人同志社三木 光範
    • 三木 光範
    • G05B13/02
    • H05B39/042Y02B20/14
    • 本発明は、所望の位置の照度と目標照度との関係が所定の条件を満足するか、満足しないかを判断し、判断結果に基づき、複数の照明装置のそれぞれの光度を増加または減少させる手順を順次行わせることにより、所望の位置の照度を目標照度に近づけてゆく。照明装置の光度をランダムに変更し、所望の位置の照度と目標照度の比較を行い、比較結果に基づき、変光幅を狭くしてゆくことにより、所望の位置の照度を目標照度に近づけてゆく。更に、他の制御量の制御にも使用可能とする。制御用の制御端末装置も提供することができる。
    • 通过顺序地执行用于判定期望位置处的照度与目标照度之间的关系是否满足规定条件的步骤,并且增加/减少每个的目标照度的发光强度,使期望位置处的照度更接近目标照度 的多个照明器。 通过随机地改变照明器的发光强度,将期望位置处的照度与目标照度进行比较,并且基于比较结果使变化宽度变窄,使期望位置的照度更接近目标照度。 适用于其他受控变量的控制。 还可以提供控制终端。
    • 12. 发明申请
    • PHOTOSENSOR AND CONTROL SYSTEM FOR DIMMING LIGHTING FIXTURES TO REDUCE POWER CONSUMPTION
    • 用于调节照明设备的照明和控制系统以减少功耗
    • WO2003043385A1
    • 2003-05-22
    • PCT/US2002/034051
    • 2002-10-24
    • RENSSELAER POLYTECHNIC INSTITUTE
    • BIERMAN, Andrew
    • H05B39/04
    • H05B39/042Y02B20/14
    • A lighting control system provides a desired illumination level at a task location while saving power. Controlled electric light is produced having an intensity responsive to a control signal. The system comprises at least one light fixture and photosensor that is configured to provide the control signal to the light fixture. The control signal is responsive to an illumination level at a sensor location and ratios of illumination levels at the sensor location to task for uncontrolled (e.g.,solar) light and controlled electric light. The photosensor has the ability to self-commission. In one embodiment, the photosensor includes a self-powered photcell unit that transmits a wireless sensor signal responsive to the illumination level at the photocell unit. This photocell unit can be moved for use at different locations during photosensor commissioning.
    • 照明控制系统在任务位置提供期望的照明水平,同时节省电力。 产生具有响应于控制信号的强度的受控电灯。 该系统包括被配置为向灯具提供控制信号的至少一个灯具和光电传感器。 控制信号响应于传感器位置处的照明水平和传感器位置处的照明水平与不受控制(例如,太阳能)光和受控电灯的任务的比率。 光电传感器具有自我调节功能。 在一个实施例中,光传感器包括自发电光电池单元,其响应于光电池单元处的照明水平发送无线传感器信号。 光电管单元可以在光电传感器调试期间移动到不同位置使用。
    • 13. 发明申请
    • LIGHT-DETECTING DEVICE
    • 光检测装置
    • WO99045749A1
    • 1999-09-10
    • PCT/EP1999/000919
    • 1999-02-06
    • H05B39/04H05B37/02
    • H05B39/042Y02B20/14
    • A work station is fitted with a light-detecting device comprising a light sensor which detects the light intensity of the ambient light at the work station and generates a voltage which is proportional to the detected light intensity. The voltage is transmitted to a comparator (16) which is connected to the light sensor (10) and compares the voltage generated by the light sensor with a reference voltage and emits an electrical signal when the voltage generated by the light sensor (10) falls below the reference voltage. The light-detecting device also comprises an actuating element (22, 24, 26) which is controlled by the electrical signal emitted by the comparator (16) and generates an actuating signal.
    • 工作站配备的光检测,其检测到的环境光的照度在其产生与检测到的照度成比例的电压工作的照明传感器(10)的装置。 该电压被施加到连接到所述比较器(16)的照度传感器的一个(10),其比较由参考电压照度传感器所产生的电压,并且当从所述照明传感器(10)产生的电压下降到低于参考电压输出电信号。 光感测装置还包括用于产生一个操作信号通过从比较器(16)的电信号的上操作的致动(22,24,26)。
    • 15. 发明申请
    • METHODS FOR DISAGGREGATED SENSING OF ARTIFICIAL LIGHT AND DAYLIGHT DISTRIBUTION
    • 人造光和日光分布的混乱方法
    • WO2012063149A3
    • 2012-11-15
    • PCT/IB2011054448
    • 2011-10-10
    • KONINKL PHILIPS ELECTRONICS NVPANDHARIPANDE ASHISH VIJAYCAICEDO FERNANDEZ DAVID
    • PANDHARIPANDE ASHISH VIJAYCAICEDO FERNANDEZ DAVID
    • H05B37/02H05B39/04
    • H05B37/0218H05B37/0245H05B39/042Y02B20/46
    • A method, configuration unit (100), and control unit (160) for configuring a lighting system (101) with respect to light other than light emitted from an illumination device (103) are provided. The lighting system comprises the at least one illumination device arranged in an illumination plane (104) to illuminate a workspace plane (110). The method comprises the step of obtaining a first contribution of the light other than the light emitted from the illumination device at a first location (113) in the illumination plane based on a first signal representative of a total light intensity measured at the first location. Furthermore, the method comprises the step of obtaining a second contribution of the light other than the light emitted from the illumination device at a second location (121) in the workspace plane based on a second signal representative of a total light intensity measured at the second location. Moreover, the method comprises the step of determining a transfer function (130) representative of the relationship between the first and the second contributions of the light other than the light emitted from the illumination device.
    • 提供了用于相对于从照明设备(103)发射的光以外的光配置照明系统(101)的方法,配置单元(100)和控制单元(160)。 照明系统包括布置在照明平面(104)中以照亮工作空间平面(110)的至少一个照明装置。 该方法包括以下步骤:基于表示在第一位置处测量的总光强度的第一信号,在照明平面中的第一位置(113)处获得除了从照明设备发射的光之外的光的第一贡献。 此外,该方法包括以下步骤:基于表示在第二位置(121)处测量的总光强度的第二信号,在工作空间平面中的第二位置(121)处获得除了从照明设备发射的光之外的光的第二贡献 位置。 此外,该方法包括确定表示除了从照明设备发射的光之外的光的第一贡献和第二贡献之间的关系的传递函数(130)的步骤。
    • 19. 发明申请
    • RADIATION MEASURING DEVICE, RADIATION CONTROL SYSTEM, AND RADIATION MEASURING METHOD
    • 辐射测量装置,辐射控制系统和辐射测量方法
    • WO2006030345A1
    • 2006-03-23
    • PCT/IB2005/052907
    • 2005-09-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARTENS, Christiaan, J.
    • MARTENS, Christiaan, J.
    • G01J1/04
    • G01J1/42G01J1/0252G01J1/0271G01J1/04G01J1/0414G01J2001/4247H05B39/042Y02B20/14
    • The invention provides a device for measuring radiation, as well as a method for measuring with the device, and a controllable lighting system with the device. The device (l') has a side wall (2) with a sensor (5, 5'), a radiation entrance opening (4'), and optionally a top wall (9) and bottom cap (10). The sensor is sensitive only to indirect radiation that is reflected at a reflection area, such as a ring (12a - 12b). The device is not sensitive to dust deposition, because most dust is blocked by the side wall (2), while any other dust will pass the sensor surface and reflection area(s) on air currents parallel thereto, without any deposition of dust or dirt. Hence the sensor will give more reliable measurements, even in dusty environments. The method involves orienting the device with respect to the light to be measured and to possible currents. The controllable lighting system involves measuring light levels with the device, and having a control unit control one or more lamps on the basis of those measurements.
    • 本发明提供一种用于测量辐射的装置,以及一种用该装置进行测量的方法,以及一种具有该装置的可控照明系统。 装置(1')具有侧壁(2),其具有传感器(5,5'),辐射入口(4')和可选地的顶壁(9)和底盖(10)。 该传感器仅对在诸如环(12a-12b)的反射区域反射的间接辐射敏感。 该设备对灰尘沉积不敏感,因为大多数灰尘被侧壁(2)阻挡,而任何其他灰尘将通过与其平行的气流上的传感器表面和反射区域,而不会沉积灰尘或污垢 。 因此,即使在多尘环境中,传感器也将提供更可靠的测量。 该方法包括相对于待测量的光和可能的电流定向该器件。 可控照明系统包括用设备测量光级,并且具有控制单元,以这些测量为基础控制一个或多个灯。