Patents by Inventor Johannes Lindner
Johannes Lindner has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12096210Abstract: The present invention relates to a system for operating a waste container comprising a waste container which has an electronic control device, a first communication interface for transmitting and receiving data and a storage device, and a server which is remote from the waste container and has a second communication interface, wherein usage data can be stored in the storage device by the control device after use of the waste container, wherein the first communication interface has no device for direct data transmission to the second communication interface, wherein an indirect first data transfer between the first communication interface and the second communication interface and/or between the second communication interface and the first communication interface can be initiated via at least one further communication interface, which is provided in a further communication device, which is not associated with the waste container, wherein the stored usage data are transferable via the first data transfer to theType: GrantFiled: December 18, 2019Date of Patent: September 17, 2024Assignee: emz-Hanauer GmbH & Co. KGaAInventors: Alexander Salomon, Raoul Janssen, Gabi Hahn, Johannes Lindner, Michael Schmid, Andreas Söldner
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Publication number: 20240203139Abstract: An electronic imaging device and method for image capture are described. The imaging device includes a camera configured to obtain image information of a scene and that may be focused on a region of interest in the scene. The imaging device also includes a LIDAR unit configured to obtain depth information of at least a portion of the scene at specified scan locations of the scene. The imaging device is configured to detect an object in the scene and provides specified scan locations to the LIDAR unit. The camera is configured to capture an image with an adjusted focus based on depth information, obtained by the LIDAR unit, associated with the detected object.Type: ApplicationFiled: January 9, 2024Publication date: June 20, 2024Inventors: Albrecht Johannes LINDNER, Volodimir SLOBODYANYUK, Stephen Michael VERRALL, Kalin Mitkov ATANASSOV
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Patent number: 11915502Abstract: An electronic imaging device and method for image capture are described. The imaging device includes a camera configured to obtain image information of a scene and that may be focused on a region of interest in the scene. The imaging device also includes a LIDAR unit configured to obtain depth information of at least a portion of the scene at specified scan locations of the scene. The imaging device is configured to detect an object in the scene and provides specified scan locations to the LIDAR unit. The camera is configured to capture an image with an adjusted focus based on depth information, obtained by the LIDAR unit, associated with the detected object.Type: GrantFiled: May 21, 2021Date of Patent: February 27, 2024Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Volodimir Slobodyanyuk, Stephen Michael Verrall, Kalin Mitkov Atanassov
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Patent number: 11873162Abstract: The invention relates to a system for operating a refuse container, comprising a refuse container which has an electronic control device and a first communication interface for sending and receiving data, wherein a first data transfer to at least one further communication interface can be initiated via the first communication interface, said further communication interface being provided in at least one further communication device which is not associated with the refuse container, wherein a further data transfer between at least one internal device can be initiated via the first communication interface, wherein the first and the further data transfer are based on a wireless technology.Type: GrantFiled: December 18, 2019Date of Patent: January 16, 2024Assignee: EMZ-HANAUER GMBH & CO. KGAAInventors: Alexander Salomon, Raoul Janssen, Gabi Hahn, Johannes Lindner, Michael Schmid, Andreas Söldner
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Patent number: 11629949Abstract: Aspects of the present disclosure relate to systems and methods for structured light depth systems. An example active depth system may include a receiver to receive reflections of transmitted light and a transmitter including one or more light sources to transmit light in a spatial distribution. The spatial distribution of transmitted light may include a first region of a first plurality of light points and a second region of a second plurality of light points. A first density of the first plurality of light points is greater than a second density of the second plurality of light points when a first distance between a center of the spatial distribution and a center of the first region is less than a second distance between the center of the spatial distribution and the center of the second region.Type: GrantFiled: April 20, 2018Date of Patent: April 18, 2023Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, Stephen Michael Verrall
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Patent number: 11187804Abstract: Aspects of the present disclosure relate to systems and methods for determining one or more depths. An example system includes a time-of-flight receiver configured to sense pulses from reflections of light from a structured light transmitter. An example method includes sensing, by a time-of-flight receiver, pulses from reflections of light from a structured light transmitter.Type: GrantFiled: May 30, 2018Date of Patent: November 30, 2021Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Htet Naing, Kalin Atanassov
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Publication number: 20210279444Abstract: An electronic imaging device and method for image capture are described. The imaging device includes a camera configured to obtain image information of a scene and that may be focused on a region of interest in the scene. The imaging device also includes a LIDAR unit configured to obtain depth information of at least a portion of the scene at specified scan locations of the scene. The imaging device is configured to detect an object in the scene and provides specified scan locations to the LIDAR unit. The camera is configured to capture an image with an adjusted focus based on depth information, obtained by the LIDAR unit, associated with the detected object.Type: ApplicationFiled: May 21, 2021Publication date: September 9, 2021Inventors: Albrecht Johannes Lindner, Volodimir Slobodyanyuk, Stephen Michael Verrall, Kalin Mitkov Atanassov
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Patent number: 11042723Abstract: A method and electronic device for selectively obtaining depth information at locations within a scene are described. Image content analysis is performed on a received image of the scene. Locations within the image to obtain depth information within the scene are determined based on the image analysis. The locations are provided to a LIDAR (light+radar) unit to selectively obtain depth information at the scene locations. The depth information is received from the LIDAR unit and a second image analysis is performed on a second image. The second image analysis is based on the image content of the second image and the received depth information. Updated locations based on the second image analysis may be provided to the LIDAR unit to obtain updated depth information.Type: GrantFiled: March 20, 2019Date of Patent: June 22, 2021Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Volodimir Slobodyanyuk, Stephen Michael Verrall, Kalin Mitkov Atanassov
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Publication number: 20200204994Abstract: The present invention relates to a system for operating a waste container comprising a waste container which has an electronic control device, a first communication interface for transmitting and receiving data and a storage device, and a server which is remote from the waste container and has a second communication interface, wherein usage data can be stored in the storage device by the control device after use of the waste container, wherein the first communication interface has no device for direct data transmission to the second communication interface, wherein an indirect first data transfer between the first communication interface and the second communication interface and/or between the second communication interface and the first communication interface can be initiated via at least one further communication interface, which is provided in a further communication device, which is not associated with the waste container, wherein the stored usage data are transferable via the first data transfer to theType: ApplicationFiled: December 18, 2019Publication date: June 25, 2020Applicant: emz-Hanauer GmbH & Co. KGaAInventors: Alexander SALOMON, Raoul JANSSEN, Gabi HAHN, Johannes LINDNER, Michael SCHMID, Andreas SÖLDNER
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Publication number: 20200204995Abstract: The invention relates to a system for operating a refuse container, comprising a refuse container which has an electronic control device and a first communication interface for sending and receiving data, wherein a first data transfer to at least one further communication interface can be initiated via the first communication interface, said further communication interface being provided in at least one further communication device which is not associated with the refuse container, wherein a further data transfer between at least one internal device can be initiated via the first communication interface, wherein the first and the further data transfer are based on a wireless technology.Type: ApplicationFiled: December 18, 2019Publication date: June 25, 2020Applicant: emz-Hanauer GmbH & Co. KGaAInventors: Alexander SALOMON, Raoul JANSSEN, Gabi HAHN, Johannes LINDNER, Michael SCHMID, Andreas SÖLDNER
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Patent number: 10620316Abstract: Systems, methods, and devices for generating a depth map of a scene are provided. The method comprises projecting, onto the scene, a codeword pattern including a plurality of light points including a first set of light points projected at a first intensity and a second set of light points projected at a second intensity greater than the first intensity. The method further comprises detecting, from the scene, a reflection of the codeword pattern. The method further comprises generating a first depth map layer at a first resolution. The method further comprises generating a second depth map layer at a second resolution lower than the first resolution. The method further comprises generating the depth map of the scene, wherein the depth map includes depth information for the scene according to each of the first depth map layer and the second depth map layer.Type: GrantFiled: May 5, 2017Date of Patent: April 14, 2020Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, James Wilson Nash
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Patent number: 10574947Abstract: Systems and methods for reconstructing an object boundary in a disparity map generated by a structured light system are disclosed. One aspect is a structured light system. The system includes an image projecting device configured to project codewords. The system further includes a receiver device including a sensor, the receiver device configured to sense the projected codewords reflected from an object. The system further includes a processing circuit configured to generate a disparity map of the object, detect a first boundary of the object in the disparity map, identify a shadow region in the disparity map adjoining the first boundary, the shadow region including pixels with codeword outages, and change a shape of the object in the disparity map based on the detected shadow region. The system further includes a memory device configured to store the disparity map.Type: GrantFiled: July 15, 2016Date of Patent: February 25, 2020Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Hasib Ahmed Siddiqui, Kalin Mitkov Atanassov
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Patent number: 10565726Abstract: A device includes a first camera and a processor configured to detect one or more first keypoints within a first image captured by the first camera at a first time, detect one or more second keypoints within a second image captured by a second camera at the first time, and detect the one or more first keypoints within a third image captured by the first camera at a second time. The processor is configured to determine a pose estimation based on coordinates of the one or more first keypoints of the first image relative to a common coordinate system, coordinates of the one or more second keypoints of the second image relative to the common coordinate system, and coordinates of the one or more first keypoints of the third image relative to the common coordinate system. The first coordinate system is different than the common coordinate system.Type: GrantFiled: July 3, 2017Date of Patent: February 18, 2020Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, James Wilson Nash, Hasib Siddiqui
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Publication number: 20190369247Abstract: Aspects of the present disclosure relate to systems and methods for determining one or more depths. An example system includes a time-of-flight receiver configured to sense pulses from reflections of light from a structured light transmitter. An example method includes sensing, by a time-of-flight receiver, pulses from reflections of light from a structured light transmitter.Type: ApplicationFiled: May 30, 2018Publication date: December 5, 2019Inventors: Albrecht Johannes Lindner, Htet Naing, Kalin Atanassov
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Publication number: 20190323827Abstract: Aspects of the present disclosure relate to systems and methods for structured light depth systems. An example active depth system may include a receiver to receive reflections of transmitted light and a transmitter including one or more light sources to transmit light in a spatial distribution. The spatial distribution of transmitted light may include a first region of a first plurality of light points and a second region of a second plurality of light points. A first density of the first plurality of light points is greater than a second density of the second plurality of light points when a first distance between a center of the spatial distribution and a center of the first region is less than a second distance between the center of the spatial distribution and the center of the second region.Type: ApplicationFiled: April 20, 2018Publication date: October 24, 2019Inventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, Stephen Michael Verrall
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Patent number: 10412362Abstract: Methods, systems, and apparatuses are provided to compensate for a misalignment of optical devices within an imaging system. For example, the methods receive image data captured by a first optical device having a first optical axis and a second optical device having a second optical axis. The methods also receive sensor data indicative of a deflection of a substrate that supports the first and second optical devices. The deflection can result from a misalignment of the first optical axis relative to the second optical axis. The methods generate a depth value based on the captured image data and the sensor data. The depth value can reflect a compensation for the misalignment of the first optical axis relative to the second optical axis.Type: GrantFiled: July 27, 2017Date of Patent: September 10, 2019Assignee: QUALCOMM IncorporatedInventors: Htet Naing, Kalin Mitkov Atanassov, Albrecht Johannes Lindner
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Patent number: 10404969Abstract: Systems, apparatus, and methods for generating a fused depth map from one or more individual depth maps, wherein the fused depth map is configured to provide robust depth estimation for points within the depth map. The methods, apparatus, or systems may comprise components that identify a field of view (FOV) of an imaging device configured to capture an image of the FOV and select a first depth sensing method. The system or method may sense a depth of the FOV with respect to the imaging device using the first selected depth sensing method and generate a first depth map of the FOV based on the sensed depth of the first selected depth sensing method. The system or method may also identify a region of one or more points of the first depth map having one or more inaccurate depth measurements and determine if additional depth sensing is needed.Type: GrantFiled: January 20, 2015Date of Patent: September 3, 2019Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, Sergiu Radu Goma
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Publication number: 20190220650Abstract: A method and electronic device for selectively obtaining depth information at locations within a scene are described. Image content analysis is performed on a received image of the scene. Locations within the image to obtain depth information within the scene are determined based on the image analysis. The locations are provided to a LIDAR (light+radar) unit to selectively obtain depth information at the scene locations. The depth information is received from the LIDAR unit and a second image analysis is performed on a second image. The second image analysis is based on the image content of the second image and the received depth information. Updated locations based on the second image analysis may be provided to the LIDAR unit to obtain updated depth information.Type: ApplicationFiled: March 20, 2019Publication date: July 18, 2019Inventors: Albrecht Johannes LINDNER, Volodimir SLOBODYANYUK, Stephen Michael VERRALL, Kalin Mitkov ATANASSOV
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Patent number: 10341633Abstract: An electronic device for generating a corrected depth map is described. The electronic device includes a processor. The processor is configured to obtain a first depth map. The first depth map includes first depth information of a first portion of a scene sampled by the depth sensor at a first sampling. The processor is also configured to obtain a second depth map. The second depth map includes second depth information of a second portion of the scene sampled by the depth sensor at a second sampling. The processor is additionally configured to obtain displacement information indicative of a displacement of the depth sensor between the first sampling and the second sampling. The processor is also configured to generate a corrected depth map by correcting erroneous depth information based on the first depth information, the second depth information, and the displacement information.Type: GrantFiled: November 20, 2015Date of Patent: July 2, 2019Assignee: QUALCOMM IncorporatedInventors: Albrecht Johannes Lindner, Kalin Mitkov Atanassov, Stephen Michael Verrall
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Publication number: 20190180475Abstract: Client calibration can include: (a) instructing a host to display a first desired target, (b) imaging the first displayed target, (c) determining a second desired target based on the imaging, (d) instructing the host to display a second desired target, and (e) adjusting a calibration parameter based on one or more images of the second desired target. The second desired target can be determined (e.g., selected, dynamically generated) based on the first desired target.Type: ApplicationFiled: December 8, 2017Publication date: June 13, 2019Inventors: James Wilson Nash, Kalin Mitkov Atanassov, Albrecht Johannes Lindner, Justin Cheng