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    • 3. 发明申请
    • SENSOR FOR ASSESSING AIR POLLUTION
    • 用于评估空气污染的传感器
    • WO2012069963A1
    • 2012-05-31
    • PCT/IB2011/055120
    • 2011-11-16
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.MARRA, Johan
    • MARRA, Johan
    • G01N27/66G01N15/06B60H1/00
    • G01N27/66B03C3/017B03C3/08B03C3/12B03C3/368B03C3/38B03C3/41B03C3/47G01N1/2273G01N15/0656
    • A sensor (1) for assessing air pollution is provided. The sensor comprises a volatile organic compound (VOC) sensing section (100) and an ultrafme particle (UFP) sensing section (200). The VOC sensing section includes an ionizing unit (120) for ionizing at least part of airborne VOCs in air passing through a first conduit (110). The VOC sensing section further includes a first electrode (130) arranged, in the first conduit, downstream of the ionizing unit. The first electrode is arranged in proximity to a second electrode (140) on which a bias voltage is applicable for enabling precipitation of at least part of the ionized airborne VOCs on the first electrode. The UFP sensing section includes a charging unit (220) for charging at least part of airborne particles in air passing through a second conduit (210). The UFP sensing section further includes a capturing element (230) arranged, in the second conduit, downstream of the charging unit. The capturing element is capable of capturing charged airborne particles. Further, the sensor comprises an evaluation unit (300) being connected to both the first electrode and the capturing element for obtaining a signal representative of the air pollution.
    • 提供了一种用于评估空气污染的传感器(1)。 传感器包括挥发性有机化合物(VOC)感测部分(100)和超微粒子(UFP)感测部分(200)。 VOC感测部分包括用于使通过第一导管(110)的空气中的空气传播的VOC的至少一部分电离的离子化单元(120)。 VOC感测部还包括在第一导管中布置在电离单元的下游的第一电极(130)。 第一电极布置在第二电极(140)附近,其上施加偏置电压以使第一电极上的至少部分电离的空气传播的VOC能够沉淀。 UFP感测部分包括用于对通过第二导管(210)的空气中的空气中的颗粒的至少一部分进行充电的充电单元(220)。 UFP感测部分还包括在第二导管中在充电单元的下游布置的捕获元件(230)。 捕获元件能够捕获带电的空气中的颗粒。 此外,传感器包括连接到第一电极和捕获元件两者的评估单元(300),用于获得表示空气污染的信号。
    • 5. 发明申请
    • METHODS FOR DISAGGREGATED SENSING OF ARTIFICIAL LIGHT AND DAYLIGHT DISTRIBUTION
    • 人造光和日光分布的分散感测方法
    • WO2012063149A2
    • 2012-05-18
    • PCT/IB2011/054448
    • 2011-10-10
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PANDHARIPANDE, Ashish, VijayCAICEDO FERNANDEZ, David
    • PANDHARIPANDE, Ashish, VijayCAICEDO FERNANDEZ, David
    • 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.
    • 提供了一种用于配置相对于从照明装置(103)发射的光以外的光的照明系统(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,获得在照明平面中的第一位置(113)处从照明装置发射的光之外的光的第一贡献。 此外,该方法包括以下步骤:基于表示在第二次测量的总光强度的第二信号,获得在工作空间平面中的第二位置处从照明装置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装置发射的光之外的光的第一和第二贡献之间的关系的传递函数(130)的步骤。
    • 8. 发明申请
    • MITIGATION OF CONTROL CHANNEL INTERFERENCE
    • 减缓控制通道干扰
    • WO2011098955A1
    • 2011-08-18
    • PCT/IB2011/050541
    • 2011-02-09
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.TESANOVIC, MilosMOULSLEY, Timothy James
    • TESANOVIC, MilosMOULSLEY, Timothy James
    • H04L5/00
    • H04W72/0406H04L5/0053H04L5/0062H04W72/0453
    • The present invention relates to a method for operating a network comprising a first primary station and a second primary station, wherein the first primary station serves a first cell including at least one first secondary station communicating with the first primary station and wherein the second primary station serves a second cell including at least one second secondary station communicating with the second primary station, the method comprising the steps of (a) the first primary station and the second primary station transmitting payloads in a synchronous manner on at least one set of resources, (b) the first and the second primary stations transmitting control data on the at least one set of resources respectively to the first secondary station and to the second secondary station, wherein the method further comprises (c) at least the first primary station rendering the transmission of control data to the first secondary station orthogonal to the transmission of control data from the second primary station.
    • 本发明涉及一种用于操作包括第一主站和第二主站的网络的方法,其中所述第一主站服务于包括与所述第一主站通信的至少一个第一辅助站的第一小区,并且其中所述第二主站 服务于包括与第二主站通信的至少一个第二次站的第二小区,该方法包括以下步骤:(a)第一主站和第二主站以至少一组资源以同步方式发送有效载荷, (b)第一和第二主站将至少一组资源上的控制数据分别发送到第一副站和第二次站,其中该方法还包括(c)至少第一主站, 将控制数据传输到与控制数据的传输正交的第一副站 第二个主站。
    • 9. 发明申请
    • CONTROL DEVICE, WEARABLE DEVICE AND LIGHTING SYSTEM FOR LIGHT THERAPY PURPOSES
    • 控制装置,易损设备和照明系统用于光疗治疗
    • WO2011089539A1
    • 2011-07-28
    • PCT/IB2011/050155
    • 2011-01-13
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.FERRAZ RIGO, CristinaGEURTS, Lucas Jacobus FranciscusDJAJADININGRAT, Johan Partomo
    • FERRAZ RIGO, CristinaGEURTS, Lucas Jacobus FranciscusDJAJADININGRAT, Johan Partomo
    • A61N5/06
    • A61N5/0618A61N2005/0642A61N2005/0662H05B37/0218H05B37/0227Y02B20/46
    • The control device (10) for controlling a therapy light source (30, 30b) comprises an input (13) for receiving information on an intensity and/or amount of light a person has been exposed to from a wearable device (20) that can connect to the control device via the input (13). The control device (10) further comprises an output (14, 14b) for controlling at least one therapy light source (30, 30b) that can be connected to the control device (10). A control unit (12) of the control device (10) is designed to control a connected therapy light source (30, 30b) dependent on the information on the intensity and/or amount of light the person has been exposed to. A wearable device (20) that is suited to operate in combination with the control device (10) comprises a light sensor (23) for detecting an intensity of received light. It further comprises a storage unit (25) connected to the light sensor (23) for storing at least one value related to the measured intensity of the received light. The invention further relates to a lighting system that comprises at least one therapy light source (30, 30b), a control device (10) and a wearable device (20) as described above.
    • 用于控制治疗光源(30,30b)的控制装置(10)包括用于从可穿戴装置(20)接收人已暴露于的光的强度和/或光量的信息的输入(13) 通过输入(13)连接到控制设备。 控制装置(10)还包括用于控制可连接到控制装置(10)的至少一个治疗光源(30,30b)的输出端(14,14b)。 控制装置(10)的控制单元(12)被设计成根据关于人已暴露于的光的强度和/或光量的信息来控制连接的治疗光源(30,30b)。 适于与控制装置(10)结合操作的可佩戴装置(20)包括用于检测接收光强度的光传感器(23)。 它还包括连接到光传感器(23)的存储单元(25),用于存储与所接收的光的测量强度相关的至少一个值。 本发明还涉及一种照明系统,其包括如上所述的至少一个治疗光源(30,30b),控制装置(10)和可穿戴装置(20)。