SETTING UP HYBRID CODED-LIGHT - ZIGBEE LIGHTING SYSTEM
    1.
    发明申请
    SETTING UP HYBRID CODED-LIGHT - ZIGBEE LIGHTING SYSTEM 有权
    设置混合编码灯 - ZIGBEE照明系统

    公开(公告)号:US20160134369A1

    公开(公告)日:2016-05-12

    申请号:US14997976

    申请日:2016-01-18

    CPC classification number: H04B10/116 H04B10/114 H04B10/1149 H05B37/0272

    Abstract: A lighting system (100) comprising a central lighting device (111), at least one satellite lighting device (121, 131), and a controller (141) for adjusting light settings, is provided. The controller is arranged for transmitting, in response to a user request (140), an association request over a first communication link (142). The central lighting device is arranged for receiving the association request and re-transmitting the association request over a second communication link by means of coded light (112). The satellite lighting device is arranged for transmitting, in response to receiving the association request, its identifier to the central lighting device. The identifier is only transmitted if an association process is enabled. The association process is enabled, in response to a user request, during a limited time period. The central lighting device is further arranged for associating, in response to receiving the identifier, the satellite lighting device with the central lighting device.

    Abstract translation: 提供一种包括中央照明装置(111),至少一个卫星照明装置(121,131)和用于调节光设置的控制器(141)的照明系统(100)。 控制器被布置为响应于用户请求(140),通过第一通信链路(142)发送关联请求。 中央照明装置被布置成通过编码光(112)接收关联请求并通过第二通信链路重新发送关联请求。 卫星照明装置被布置成响应于接收到关联请求而将其标识符发送到中央照明装置。 只有在启用关联过程时才会发送标识符。 响应于用户请求,在有限的时间段内启用关联过程。 中央照明装置还被布置成响应于接收到标识符而将卫星照明装置与中央照明装置相关联。

    ALIGNMENT OF BREATH SAMPLE DATA FOR DATABASE COMPARISONS

    公开(公告)号:US20210356453A1

    公开(公告)日:2021-11-18

    申请号:US16479775

    申请日:2018-01-17

    Abstract: A method (RT_A) for synchronizing data for a plurality of gas samples, e.g. breath samples, with volatile organic compounds. The data comprises chromatographic data indicative of molecule elution times, and preferably also mass spectrography data. The method comprises identifying or selecting (I_MM) marker molecules, e.g. 5-20 molecules, preferably easily identifiable molecules for each of the plurality of gas samples, and clustering (CL) the plurality of gas samples into a plurality of clusters according to a clustering criterion, e.g. including additional information such as time of obtaining the data and/or analyzing equipment used. Next, a first correction of retention time deviations (P_C1) is performed on the data for the gas samples between clusters by using the marker molecules as anchor points, so as to provide a coarse reduction of retention time deviations (d) between the data for the gas samples. Finally, a second correction of retention time deviations (P_C2) on the data for the gas samples, so as to further reduce retention time deviations (d) between the data for the gas samples, e.g. by using standard software packages. The method can reduce significant retention time deviations so as to allow e.g. breath sample fingerprints obtained by different equipment at different periods of time to be compared in one database for use on a digital platform (DP) such as the HSDP.

    COMPACT GAS ANALYSIS DEVICE AND METHOD
    5.
    发明申请

    公开(公告)号:US20190331660A1

    公开(公告)日:2019-10-31

    申请号:US16310469

    申请日:2017-06-12

    Abstract: A gas analysis device suited for e.g. medical analysis of exhaled breath from a subject. A gas inlet receives a gas sample to a flow path for guiding the gas sample to two or more gas separators, e.g. gas chromatography columns, with respective molecule selectivity properties which are different. One or more detectors, each with a sensor, are arranged to generate respective responses to outputs from the two or more gas separators. A communication module generate output data in response to the respective responses from the one or more detectors, e.g. data indicative of selected molecules in the gas sample, e.g. data indicative of one or more diseases identified as a result of identified biomarkers in the gas sample. The device is suitable as a compact device, e.g. a handheld breath analysis device, since the use of a plurality of gas separators allows use of very molecule specific gas separators which can be implemented with a small size. E.g. a flow path with several parallel paths each comprising one or more gas separator may be used.

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