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公开(公告)号:US11337290B2
公开(公告)日:2022-05-17
申请号:US16766302
申请日:2018-11-27
Applicant: OSRAM GmbH
Inventor: Herbert Ernst , Michael Eschey , Holger Sacher , Volker Kamp , Markus Jung
IPC: H05B47/19 , H04W4/029 , H05B47/115 , H04W52/02
Abstract: A method for controlling at least one wireless network access point in a building may include detecting whether a wireless communication device is connected to at least one wireless network access point and/or whether a person is present using a group of presence detectors. An illumination system may include at least one wireless network point and/or the group of presence detectors. An activated network access point may remain activated when the wireless network access point is connected to a wireless communication device and/or when a person is present. A network access point may be automatically deactivated when the wireless network access point is not connected to a wireless communication device and/or when a person is not present. A deactivated network access point may be automatically reactivated when the wireless network access point is connected to a wireless communication device and/or when a person is present. Combinations thereof are also possible.
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2.
公开(公告)号:US10973108B2
公开(公告)日:2021-04-06
申请号:US16081420
申请日:2017-03-01
Applicant: OSRAM GmbH
Inventor: Michael Eschey , Eberhard Hoefflin , Herbert Ernst , Holger Sacher , Bernhard Siessegger
Abstract: A method for optimizing the area coverage of a wireless network may include a lamp to perform this method. The lamp may have an input for connecting a network, a power supply unit for supplying all components of the lamp with an electric power taken from the input, a control unit for controlling the components of the lamp, at least one light source from the power supply unit and controlled by the control unit, and a network access point for providing at least one wireless network. The lamp may include at least one antenna associated with the network access point. The light source and antenna may be arranged and designed such that the radiation characteristics of the light are congruent with the radiation characteristics of the antenna of the wireless network.
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公开(公告)号:US20200374796A1
公开(公告)日:2020-11-26
申请号:US16766302
申请日:2018-11-27
Applicant: OSRAM GmbH
Inventor: Herbert Ernst , Michael Eschey , Holger Sacher , Volker Kamp , Markus Jung
IPC: H04W52/02 , H05B47/115 , H05B47/19 , H04W4/029
Abstract: A method for controlling at least one wireless network access point in a building may include detecting whether a wireless communication device is connected to at least one wireless network access point and/or whether a person is present using a group of presence detectors. An illumination system may include at least one wireless network point and/or the group of presence detectors. An activated network access point may remain activated when the wireless network access point is connected to a wireless communication device and/or when a person is present. A network access point may be automatically deactivated when the wireless network access point is not connected to a wireless communication device and/or when a person is not present. A deactivated network access point may be automatically reactivated when the wireless network access point is connected to a wireless communication device and/or when a person is present. Combinations thereof are also possible.
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4.
公开(公告)号:US20200037420A1
公开(公告)日:2020-01-30
申请号:US16081420
申请日:2017-03-01
Applicant: OSRAM GmbH
Inventor: Michael Eschey , Eberhard Hoefflin , Herbert Ernst , Holger Sacher , Bernhard Siessegger
Abstract: A method for optimizing the area coverage of a wireless network and to a lamp to be used to perform this method, having an input for connecting a network having an integrated power supply, a power supply unit for supplying all components of the lamp with an electric power taken from the input, a control unit for controlling the components of the lamp, at least one light source from the power supply unit and controlled by the control unit, a network access point for providing at least one wireless network, which network access point is supplied from the power supply unit and coupled to the network via the input, at least one antenna associated with the network access point, wherein the light source and antenna are arranged and designed such that the radiation characteristics of the light are congruent with the radiation characteristics of the antenna of the wireless network.
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公开(公告)号:US10986718B2
公开(公告)日:2021-04-20
申请号:US16081428
申请日:2017-02-28
Applicant: OSRAM GmbH
Inventor: Eberhard Hoefflin , Herbert Ernst , Michael Eschey , Holger Sacher , Bernhard Siessegger
IPC: H05B47/19 , H05B47/11 , H05B47/105
Abstract: A method for setting up a lighting system comprising at least two luminaires, which are part of a network and each having a unique network address, wherein each luminaire has at least one sensor and one actuator, characterized by the steps of measuring the relative distance between respectively two luminaires by reading at least one sensor of the luminaire while simultaneously activating at least one actuator of the other luminaire, producing at least one data record, wherein each data record contains the network address of both luminaires and the relative distance of the luminaires from one another, and merging the data records to form a geo-localized network list and comparing the network list to a floorplan underlying the lighting system to determine the physical location of each luminaire.
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公开(公告)号:US20190045605A1
公开(公告)日:2019-02-07
申请号:US16081428
申请日:2017-02-28
Applicant: OSRAM GmbH
Inventor: Eberhard Hoefflin , Herbert Ernst , Michael Eschey , Holger Sacher , Bernhard Siessegger
IPC: H05B37/02
Abstract: A method for setting up a lighting system comprising at least two luminaires, which are part of a network and each having a unique network address, wherein each luminaire has at least one sensor and one actuator, characterized by the steps of measuring the relative distance between respectively two luminaires by reading at least one sensor of the luminaire while simultaneously activating at least one actuator of the other luminaire, producing at least one data record, wherein each data record contains the network address of both luminaires and the relative distance of the luminaires from one another, and merging the data records to form a geo-localized network list and comparing the network list to a floorplan underlying the lighting system to determine the physical location of each luminaire.
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