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公开(公告)号:US20220299190A1
公开(公告)日:2022-09-22
申请号:US17537756
申请日:2021-11-30
Applicant: OSRAM SYLVANIA Inc.
Inventor: Brian J. Chemel , Colin Piepgras , Steve T. Kondo , Scott D. Johnston
IPC: F21V14/02 , F21V21/15 , F21V21/30 , F21V23/04 , H05B45/20 , H05B47/10 , H05B47/11 , H05B47/12 , H05B47/19 , H05B47/105 , H05B47/155 , F21S2/00 , F21V21/00 , F21V29/56 , F21V29/76 , F21S4/28 , F21S9/02 , F21V15/01
Abstract: In embodiments of the present invention, a method and system is provided for commissioning improved intelligent, LED-based lighting systems. The LED based lighting systems may include fixtures with one or more LED light bars, integrated sensors, onboard intelligence to send and receive signals and control the LED light bars, and network connectivity to other fixtures.
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公开(公告)号:US10891754B2
公开(公告)日:2021-01-12
申请号:US15779608
申请日:2016-12-05
Applicant: OSRAM SYLVANIA Inc. , OSRAM GmbH
Inventor: Bernhard Siessegger , Yang Li , Christian Breuer , Christoph Pietz
Abstract: Techniques and architecture are disclosed for mobile transport systems configured to determine vehicle positions within an area using light-based communication signals. The system includes a plurality of luminaires located in an area and configured to transmit luminaire position data recognizable by a sensor disposed on a vehicle. The sensor receives an image of a luminaire including a light-based communication signal encoded with luminaire position data. Luminaire position data can be combined with luminaire layout information to determine a known location of the luminaire. A vehicle position relative to the known luminaire location can be determined based on mathematical relationships. Vehicle orientation relative to the area can be determined based an asymmetric fiducial pattern or multiple known luminaire locations. The system can combine a vehicle position relative to a known luminaire location with vehicle orientation relative to the area to determine a vehicle position relative to the area.
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公开(公告)号:US10816945B2
公开(公告)日:2020-10-27
申请号:US15078980
申请日:2016-03-23
Applicant: Osram Sylvania Inc.
Inventor: Anant Aggarwal , Bernhard Siessegger
IPC: H04N7/18 , G05B15/02 , H04N5/33 , G01V8/10 , G08B13/194 , G08B13/196
Abstract: Techniques are disclosed for detecting stationary presence using IR sensor array. A number of IR images may be captured. Of the IR images captured by the IR sensor array certain pixels can be identified as causing false triggers. These pixels can be identified and filtered to be ignored. The non-filtered pixels of IR images may be averaged over various time intervals to calculate a number of average IR frames. The difference between these average IR frames provides a delta frame. A mask frame may be calculated as the summation of delta frames over time, and the value of the mask frame may be used to detect a stationary human presence even when no delta value is calculated. Alternatively, the mask frame may be used to calculate a background frame that represents the IR signature of stationary or cyclical objects within the scanned area that are not intended to trigger the presence detection system. A stationary presence may be determined by subtracting the background frame from a current average IR frame.
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44.
公开(公告)号:US10743385B2
公开(公告)日:2020-08-11
申请号:US16486532
申请日:2017-02-27
Applicant: Osram Sylvania Inc.
Inventor: Alireza Safaee
Abstract: Various embodiments include a voltage adjusting block (VAB) coupled to a light emitting diode (LED) string. The VAB includes a first switch having a first lead connected to a voltage input, and having a second lead, the first switch having a controllable duty cycle, a first diode having a cathode connected to the second lead of the first switch, and having an anode, a first inductor having a first lead connected to the cathode of the first diode, and having a second lead, and a first capacitor having a first lead connected to the anode of the first diode and having a second lead connected to the second lead of the first inductor. The VAB may provide a variable voltage across the anode of the first diode and the second lead of the first capacitor dependent upon a number of LEDs in the LED string being turned on.
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公开(公告)号:US20200245424A1
公开(公告)日:2020-07-30
申请号:US16257291
申请日:2019-01-25
Applicant: Osram Sylvania Inc. , Osram GmbH
Inventor: Barry Stout , Henry Feil , Nitin Kumar
IPC: H05B37/03 , H04B10/116 , H05B37/02 , G01S1/04 , H04B10/114
Abstract: The systems and method disclosed herein include a LCom-enabled luminaire configured to transmit a maintenance trigger encoded in an LCom signal in response to detecting an error or maintenance condition in the LCom-enabled luminaire, receive an access request, transmit maintenance information in response to the access request, and receive correction information to correct the error or maintenance condition. The systems and methods further include a receiver device configured to receive the maintenance trigger, generate the access request based on the maintenance trigger, transmit the access request to the LCom-enabled luminaire, receive maintenance information in response to the access request, and transmit control commands based on the maintenance information.
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公开(公告)号:US20200186244A1
公开(公告)日:2020-06-11
申请号:US16642535
申请日:2017-09-13
Applicant: Osram Sylvania Inc.
Inventor: Yang Li , Sergio Bermudez
IPC: H04B10/11
Abstract: Techniques are disclosed for decoding light based communication (LBC) messages transmitted between a transmitter device and a receiver device. The receiver device includes a processor that executes a process to decode a received LBC message. The processor determines a moving average and removes the moving average to provide a second digital message (with the moving average removed), to account for any noises or interferences. The moving average may be determined using a length-preserving moving average. The peak location in the second digital message is identified and used as a start position for synchronization when the peak location is above the threshold. Sampling points are derived, and logical maximum and minimum values (1's and 0's) are assigned to one or more of the sampling points. The logical values are decoded to generate a decoded sequence of data representative of the received LBC message.
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公开(公告)号:US20200003384A1
公开(公告)日:2020-01-02
申请号:US16022046
申请日:2018-06-28
Applicant: OSRAM SYLVANIA INC.
Inventor: Lawrence Rice
IPC: F21S41/265 , F21S41/43 , G02B3/04 , B60Q1/08 , F21S41/143
Abstract: An automotive lighting system (41) includes an automotive lamp having an LED array (14) and a lens (34). The lens (34) images a square field of illumination (101) into rectangular field of illumination (48) to support adaptive front lighting in an automotive environment (28). The lens (34) includes light-transmissive first, second, and third regions (64, 66, 68), and a baffle (70) adapted to obstruct light from spreading between the light-transmissive first, second, and third regions (64, 66, 68). The baffle (70) is disposed between the LED array (14) and light receiving surfaces (98, 104, 110) of the light-transmissive first, second, and third regions (64, 66, 68). The lens (34) enables imaging of an approximately rectangular field of illumination (48) from a single chip (12), reducing cost and cooling needs of adaptive front lighting systems.
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48.
公开(公告)号:US10484828B2
公开(公告)日:2019-11-19
申请号:US15127789
申请日:2015-03-24
Applicant: OSRAM SYLVANIA Inc.
Inventor: Christian Breuer , Bernhard Siessegger , Anant Aggarwal
Abstract: Techniques are disclosed for enhancing indoor navigation using light-based communication (LCom). In some cases, an LCom-enabled luminaire configured as described herein may acquire user data from a local computing device and relay it to a server that tracks and analyzes the data to assess statistics for the luminaire's local spatial environment. The disclosed luminaire may receive from a local computing device a request for indoor navigation to a target of interest, such as a remote computing device. The luminaire may relay that request to a downstream luminaire, which delivers the request to the target. The target may respond with data that allows for tracking of its location and indoor navigation thereto, regardless of whether that target is moving or stationary. In a network of such luminaires, data distribution via inter-luminaire communication may be provided, for example, via an optical interface or other wired or wireless communication.
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公开(公告)号:US10364962B2
公开(公告)日:2019-07-30
申请号:US15439980
申请日:2017-02-23
Applicant: OSRAM GmbH , OSRAM SYLVANIA Inc.
Inventor: Joerg Sorg , Alan L. Lenef , Dennis Sprenger
Abstract: A laser-activated remote phosphor (LARP) target with a first layer having a first index of refraction and a phosphor dispersed within the first layer. A second layer which has a second index of refraction different from the first index of refraction and adjoins the first layer at an interface. The first index of refraction is higher than the second index of refraction such that the interface is configured to at least partially reflect light emitted from the phosphor.
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公开(公告)号:US10260711B2
公开(公告)日:2019-04-16
申请号:US15314933
申请日:2015-06-01
Applicant: OSRAM SYLVANIA Inc.
Inventor: Zhuo Wang , Bruce Radl
IPC: G02B5/02 , F21V13/04 , F21V5/00 , F21S8/02 , F21V7/00 , F21V8/00 , F21V5/08 , F21Y105/16 , F21Y115/00 , F21Y105/10
Abstract: Light control films, and lighting devices including the same, are disclosed. The light control films include a single layer of light transmitting material having a first side and a second side. A plurality of first microstructures are formed in the first side. The first microstructures are configured to receive incident light from a light source and produce an off axis (e.g. batwing) light distribution in a field downstream of the second side of the light control film. In some embodiments, a plurality of second microstructures is formed on the second side of the light control films and are configured to reduce the glare produced by light emitted from the light source passing through the film.
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