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公开(公告)号:US10209821B2
公开(公告)日:2019-02-19
申请号:US15451009
申请日:2017-03-06
Applicant: Google Inc.
Inventor: Katie Leah Roberts-Hoffman , Premal Parekh
IPC: G06F3/041 , G06F3/01 , G06F3/038 , G06F3/0488 , G06F3/0484 , G06F3/0354 , G06F3/02 , G06F1/16 , G06F3/0485
Abstract: Computing devices may include one or more swiping interfaces provided on a base portion and/or a display portion of the computing device. For example, a computing device may include a display disposed within a housing, and a plurality of touch cells in a linear arrangement along an edge portion of the housing. Each of the plurality of touch cells may emit touch fields through the housing at a corresponding surface of the housing. The computing device may also include a processor that can execute machine-readable instructions, allowing the computing device to receive a plurality touch input signals from the plurality of touch cells, and to operate the computing device in response to the received plurality of touch input signals.
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公开(公告)号:US20190050746A1
公开(公告)日:2019-02-14
申请号:US15674885
申请日:2017-08-11
Applicant: Google Inc.
Inventor: Pannag Sanketi , Wolfgang Grieskamp , Daniel Ramage , Hrishikesh Aradhye
Abstract: The present disclosure provides systems and methods for on-device machine learning. In particular, the present disclosure is directed to an on-device machine learning platform and associated techniques that enable on-device prediction, training, example collection, and/or other machine learning tasks or functionality. The on-device machine learning platform can include a context provider that securely injects context features into collected training examples and/or client-provided input data used to generate predictions/inferences. Thus, the on-device machine learning platform can enable centralized training example collection, model training, and usage of machine-learned models as a service to applications or other clients.
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公开(公告)号:US20190049479A1
公开(公告)日:2019-02-14
申请号:US15676564
申请日:2017-08-14
Applicant: Google Inc.
Inventor: Mark Rajan Malhotra , Gwendolyn van der Linden , Yash Modi , Dongeek Shin
Abstract: Systems and methods of detecting human movement with a sensor are provided, including generating a motion event signal in response to movement detected by the sensor, and generating a parameterized curve to represent the detected motion. The parameterized curve is fit to a predetermined window of sensor data captured by the sensor to filter the motion event signal. A noise magnitude estimate and a curve fit error is determined based on the fitted parameterized curve to the predetermined window. A detection threshold value is determined based on the curve fit error, a noise source signal estimate of known noise, and zero or more noise magnitudes from other sources. Human motion is determined by correlating a true motion event signal with human motion based on a comparison between a value of a point on the parameterized curve and the detection threshold value.
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公开(公告)号:US10206062B2
公开(公告)日:2019-02-12
申请号:US14850342
申请日:2015-09-10
Applicant: Google Inc.
Inventor: Hossein Attar , Ilia Tulchinsky , Aaron David Kemp , Andrew Wahbe , Jerred James Costanzo
Abstract: A user installs a hotspot alert application on their mobile device. The application employs the location technology of the user device to transmit the location of the device, and thus the location of the user. The location can be transmitted to a server located in a hotspot tracking system. By establishing the location of the user, the server may search for hotspots on a database stored on the system. The server establishes the dimensions of a hotspot zone around the user's location and transmits the hotspots and the zone dimensions to the application on the user device. The application monitors the location of the user device and deliver's configured alerts to the user when approaching a hotspot. When the device leaves a zone or remains idle for a configured amount of time, the device requests and receives an updated zone of hotspots.
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公开(公告)号:US10204505B2
公开(公告)日:2019-02-12
申请号:US14616302
申请日:2015-02-06
Applicant: Google Inc.
Inventor: Hirofumi Honjo , Prashanth Ramachandran , Mikko Sannala , Naveen Singh , Wes Calidonna , Arjuna Sivasithambaresan , Harry Tannenbaum , Scott Hong
Abstract: Systems and methods for enabling a system to rapidly respond to wireless instructions being transmitted by a personal device over one of several communications networks that share a common RF medium are provided. During operation of the system, certain network communications may take priority over other network communications. Rapid response communications enable a user to communicate with the system, using the personal device, in a manner that does not collide or interfere with higher priority network communications.
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公开(公告)号:US10204264B1
公开(公告)日:2019-02-12
申请号:US15369832
申请日:2016-12-05
Applicant: Google Inc.
Inventor: Andrew Gallagher , Utsav Prabhu
IPC: G06K9/00 , G06F17/27 , H04N21/442 , H04N21/466
Abstract: A method of dynamically scoring implicit interactions can include receiving, by an interaction analysis server from an imaging system, a plurality of images of an environment captured in a period of time corresponding to display of a presentation, retrieving, by the interaction analysis server, content information corresponding to content of the presentation, and identifying, by a presence detector of the interaction analysis server, that a face appears in at least one image of the plurality of images. The method can further include matching, by a facial recognition system of the interaction analysis server, the face with a user identifier, retrieving, by a client device information retriever, client device information associated with the user identifier and corresponding to the period of time, and calculating, by a client device interaction score calculator, a client device interaction score based on one or more correspondences between the client device information and the content information.
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公开(公告)号:US10204162B2
公开(公告)日:2019-02-12
申请号:US15662923
申请日:2017-07-28
Applicant: Google Inc.
Abstract: A method includes receiving landing page information from a content provider, the landing page information being representative of one or more graphical aspects of a landing page associated with the content provider, generating a landing page image representative of the landing page based at least in part on the landing page information, the landing page image being different from the landing page, specifying an association between the landing page image and a content item associated with the content provider, generating a control for presentation along with the content item that, when activated, causes the display of the landing page image providing, in association with a resource, the content item in combination with the control.
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公开(公告)号:US20190045318A1
公开(公告)日:2019-02-07
申请号:US15670131
申请日:2017-08-07
Applicant: Google Inc.
Inventor: Jamieson Brettle
CPC classification number: H04S7/303 , G06F3/167 , G06F16/487 , G06F16/64 , G06F16/68 , G06Q30/0251 , G09B5/04 , H04R5/02 , H04S2400/11 , H04W4/02
Abstract: Techniques of providing spatial audio to a remote user involve transmitting audio data in response to sensor information sent from the remote user. Along these lines, a user remote from a server computer may have a device that is configured to provide data from a sensor, e.g., a GPS, an accelerometer, an orientation sensor, a heart rate monitor, and the like. For example, the user may have granted access to such data via a specialized website hosted by the server computer. The sensor may then send, via a user device (e.g., a smartphone), sensor information that indicates the value of the state of the user. Based on the value of the state of the user, the server computer may then produce an audio file that includes audio data. The server computer may then transmit that audio data to the user device so that the user may hear the audio data.
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公开(公告)号:US20190043624A1
公开(公告)日:2019-02-07
申请号:US15668436
申请日:2017-08-03
Applicant: Google Inc. , University of Maryland, College Park
Inventor: David K. Fork , Jeremy N. Munday , Tarun Narayan , Joseph B. Murray
Abstract: Enhanced Coulomb repulsion screening around light element nuclei is achieved by way of utilizing electromagnetic (EM) radiation to induce plasmon oscillations in target structures (e.g., nanoparticles) in a way that produces high density electron clouds in localized regions of the target structures, thereby generating charge density variations around light element atoms located in the localized regions. Each target structure includes an electrically conductive body including light elements (e.g., a metal hydride/deuteride/tritide) that is configured to undergo plasmon oscillations in response to the applied EM radiation. The induced oscillations causes free electrons to converge in the localized region, thereby producing transient high electron charge density levels that enhance Coulomb repulsion screening around light element (e.g., deuterium) atoms located in the localized regions. Various systems capable of implementing enhanced Coulomb repulsion screening are described, and various nanostructure compositions and configurations are disclosed that serve to further enhance fusion reaction rates.
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公开(公告)号:US10200322B1
公开(公告)日:2019-02-05
申请号:US14996892
申请日:2016-01-15
Applicant: Google Inc.
Inventor: Jimmy S. Shih , Cedric Beust , Joanne McKinley , Derek Jason Phillips
Abstract: Methods for responding to an email message by a phone call from a mobile device are described. In some embodiments, mobile devices are capable of receiving emails. The emails may be in form of messages in a threaded conversation. Each message has metadata and the metadata includes a phone number corresponding to a sender of the message. The text or information associated with the message is displayed but not the metadata. While a user is reading the message displayed on the mobile device, the user is provided with a plurality of options to respond to the message, an option is for the user to call the sender of the message using the phone number in the metadata. Upon selecting such an option, the user is able to initiate a call to the sender of the message by activating a feature to call using the phone number stored in the metadata without physically looking up and dialing the sender's number. Other embodiments are also described.
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