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公开(公告)号:US11531109B2
公开(公告)日:2022-12-20
申请号:US16370990
申请日:2019-03-30
Applicant: Intel Corporation
Inventor: Naissa Conde , Suhel Jaber , Pragya Agrawal , Darshana Salvi , Petrus van Beek
Abstract: Technologies for managing a world model of a monitored area includes a roadway server configured to receive LIDAR sensing data from a LIDAR sensing system positioned to monitor the monitored area and generate a world map of the monitored area based on the LIDAR sensing data. The world model includes data that identifies objects located in the monitored area. The roadway server may distribute the world model to automated vehicles traveling through the monitored area via a stream or in response to directed requests. The roadway server may also receive sensor data from the automated vehicles, which may be used to generate the world model. The roadway server may distribute the world model to other interested devices located in or near the monitored area.
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公开(公告)号:US10225643B1
公开(公告)日:2019-03-05
申请号:US15843930
申请日:2017-12-15
Applicant: Intel Corporation
Inventor: Gokcen Cilingir , David Pearce , Adam Kupryjanow , Suhel Jaber , Paulo Lopez Meyer
IPC: H04R1/22 , G10K11/175 , G06F17/14 , G10L25/48 , G10L21/007
Abstract: Systems, apparatuses and methods for secure audio acquisition. The method includes receiving audio data via a digital microphone. The digital microphone outputs a single bit at a high sampling rate. The digital microphone output is converted to a full range audio signal. The full range audio signal is filtered to provide a band limited audio output that avoids capture of enough of a spectral range of speech for the speech to be intelligible.
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公开(公告)号:US20220126878A1
公开(公告)日:2022-04-28
申请号:US17434713
申请日:2020-03-27
Applicant: Intel Corporation
Inventor: Hassnaa Moustafa , Suhel Jaber , Darshan Iyer , Mehrnaz Khodam Hazrati , Pragya Agrawal , Naveen Aerrabotu , Petrus J. Van Beek , Monica Lucia Martinez-Canales , Patricia Ann Robb , Rita Chattopadhyay , Soila P. Kavulya , Karthik Reddy Sripathi , Igor Tatourian , Rita H. Wouhaybi , Ignacio J. Alvarez , Fatema S. Adenwala , Cagri C. Tanriover , Maria S. Elli , David J. Zage , Jithin Sankar Sankaran Kutty , Christopher E. Lopez-Araiza , Magdiel F. Galán-Oliveras , Li Chen
Abstract: An apparatus comprising at least one interface to receive sensor data from a plurality of sensors of a vehicle; and one or more processors to autonomously control driving of the vehicle according to a path plan based on the sensor data; determine that autonomous control of the vehicle should cease; send a handoff request to a remote computing system for the remote computing system to control driving of the vehicle remotely; receive driving instruction data from the remote computing system; and control driving of the vehicle based on instructions included in the driving instruction data.
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公开(公告)号:US20190228647A1
公开(公告)日:2019-07-25
申请号:US16370990
申请日:2019-03-30
Applicant: Intel Corporation
Inventor: Naissa Conde , Suhel Jaber , Pragya Agrawal , Darshana Salvi , Petrus Ven Beek
IPC: G08G1/01 , G08G1/0967 , G01S17/89 , G05D1/02 , G05D1/00
Abstract: Technologies for managing a world model of a monitored area includes a roadway server configured to receive LIDAR sensing data from a LIDAR sensing system positioned to monitor the monitored area and generate a world map of the monitored area based on the LIDAR sensing data. The world model includes data that identifies objects located in the monitored area. The roadway server may distribute the world model to automated vehicles traveling through the monitored area via a stream or in response to directed requests. The roadway server may also receive sensor data from the automated vehicles, which may be used to generate the world model. The roadway server may distribute the world model to other interested devices located in or near the monitored area.
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公开(公告)号:US10170135B1
公开(公告)日:2019-01-01
申请号:US15858849
申请日:2017-12-29
Applicant: Intel Corporation
Inventor: David Pearce , Adam Kupryjanow , Gokcen Cilingir , Suhel Jaber , Paulo Lopez Meyer
Abstract: Systems, apparatuses and methods for technology to perform gait detection and identification. The system includes a pre-processing pipeline to process audio input data from one or more microphones to combine and strengthen an audio gait signal. The pre-processing pipeline is coupled to a gait detector to detect the sound of one or more footsteps from the audio gait signal. The system also includes a person evaluator (e.g., identifier/verifier) to identify the person associated with the one or more footsteps using a set of trained footstep identification (ID) classifiers. Each trained footstep ID classifier is mapped to the gait of a specific person in the home based on a particular combination of person, footwear, and floor surface within the home.
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公开(公告)号:US20220161815A1
公开(公告)日:2022-05-26
申请号:US17434721
申请日:2020-03-27
Applicant: Intel Corporation
Inventor: Petrus J. Van Beek , Darshana D. Salvi , Mehrnaz Khodam Hazrati , Pragya Agrawal , Darshan Iyer , Suhel Jaber , Soila P. Kavulya , Hassnaa Moustafa , Patricia Ann Robb , Naveen Aerrabotu , Jeffrey M. Ota , Iman Saleh Moustafa , Monica Lucia Martinez-Canales , Mohamed Eltabakh , Cynthia E. Kaschub , Rita H. Wouhaybi , Fatema S. Adenwala , Jithin Sankar Sankaran Kutty , Li Chen , David J. Zage
Abstract: According to one embodiment, an apparatus includes an interface to receive sensor data from a plurality of sensors of an autonomous vehicle. The apparatus also includes processing circuitry to apply a sensor abstraction process to the sensor data to produce abstracted scene data, and to use the abstracted scene data in a perception phase of a control process for the autonomous vehicle. The sensor abstraction process may include one or more of: applying a Sensor data response normalization process to the sensor data, applying a warp process to the sensor data, and applying a filtering process to the sensor data.
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公开(公告)号:US20220126864A1
公开(公告)日:2022-04-28
申请号:US17434710
申请日:2020-03-27
Applicant: Intel Corporation
Inventor: Hassnaa Moustafa , Darshana D. Salvi , Suhel Jaber , Darshan Iyer , Mehrnaz Khodam Hazrati , Pragya Agrawal , Naveen Aerrabotu , Petrus J. Van Beek , Monica Lucia Martinez-Canales , Patricia Ann Robb , Rita Chattopadhyay , Jeffrey M. Ota , Iman Saleh Moustafa , Soila P. Kavulya , Karthik Reddy Sripathi , Mohamed Eltabakh , Igor Tatourian , Cynthia E. Kaschub , Rita H. Wouhaybi , Ignacio J. Alvarez , Fatema S. Adenwala , Cagri C. Tanriover , Maria S. Elli , David J. Zage , Jithin Sankar Sankaran Kutty , Christopher E. Lopez-Araiza , Magdiel F. Galán-Oliveras , Li Chen , Bahareh Sadeghi , Subramanian Anandaraj , Pradeep Sakhamoori
Abstract: Sensor data is received from a plurality of sensors, where the plurality of sensors includes a first set of sensors and a second set of sensors, and at least a portion of the plurality of sensors are coupled to a vehicle. Control of the vehicle is automated based on at least a portion of the sensor data generated by the first set of sensors. Passenger attributes of one or more passengers within the autonomous vehicles are determined from sensor data generated by the second set of sensors. Attributes of the vehicle are modified based on the passenger attributes and the sensor data generated by the first set of sensors.
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