A METHOD OF CONFIGURING A DEVICE THAT IS TO BE ADDED TO A WIRELESS NETWORK SYSTEM

    公开(公告)号:WO2020043713A1

    公开(公告)日:2020-03-05

    申请号:PCT/EP2019/072820

    申请日:2019-08-27

    Abstract: A method (500) of configuring a device that is to be added to a wireless network system is disclosed. The method (500) comprises: receiving (502) a signal indicative of that the device has been ordered by a user, receiving (504) device information about the ordered device, wherein the device information comprises at least information indicative of a type of the ordered device, generating (506) a virtual counterpart of the ordered device based on the device information, storing (508) the virtual counterpart in a memory, receiving (510), at a system controller of the wireless network system, one or more wireless signals from a newly added device that has been added to the wireless network system, wherein the one or more wireless signals are indicative of device information of the newly added device, wherein the device information of the newly added device comprises at least information indicative of a type of the newly added device, comparing (512) the device information of the newly added device with the device information of the ordered device to determine if the device information of the newly added device corresponds with the device information of the ordered device, and, if the device information of the newly added device corresponds with the device information of the ordered device, associating (514) the virtual counterpart with the newly added device.

    LUMINAIRE AND LIGHTING METHOD
    2.
    发明申请

    公开(公告)号:WO2019068675A1

    公开(公告)日:2019-04-11

    申请号:PCT/EP2018/076721

    申请日:2018-10-02

    Abstract: A luminaire (10) comprises an array of lighting units (12) arranged as a plurality of regions (14a-14e). A reflector arrangement (16) is provided over the array of lighting units (12) for directing the light from each region (14a-14e) of the luminaire (10) to a different spread of light output directions. Each lighting unit (12) of at least one of the regions (14a-14e) comprises a first sub-unit (20, 22, 24) with a first polarised light output and a second sub-unit (20, 22, 24) with a second light output which is different from the first light output in polarisation, wherein the first and second sub-units (20, 22, 24) are independently controllable. In this way, light output in a certain range of directions can be controlled to have a desired polarisation. By actuating different sub-units (20, 22, 24), the polarisation can be dynamically controlled. Thus, a system can be set up with a desired static polarisation output pattern, or the polarisation pattern may be controlled to evolve over time, for example in response to external user, sensor or data input.

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