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1.
公开(公告)号:US20240119522A1
公开(公告)日:2024-04-11
申请号:US18542716
申请日:2023-12-17
申请人: BlueOwl, LLC
发明人: Michael Sungjun Kim
摘要: A credit score prediction (CSP) computing device comprising at least one processor in communication with a memory device. The at least one processor can be configured to receive current user data and current vehicle telematics data associated with a first user. The at least one processor further can be configured to apply a model, as trained, to the current user data and the current vehicle telematics data to predict a credit score associated with the first user. The model can be trained using a training dataset. The at least one processor also can be configured to determine a probability of error associated with the credit score, as predicted, based upon a number of records in the current vehicle telematics data. The probability of error can be lower when the number of records in the current vehicle telematics data is higher. The at least one processor additionally can be configured to update the model, as trained, based at least in part upon the credit score, as predicted, the current user data, and the current vehicle telematics data. Other embodiments are disclosed.
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公开(公告)号:US11915535B2
公开(公告)日:2024-02-27
申请号:US17344296
申请日:2021-06-10
CPC分类号: G07C5/02 , G01C21/10 , G01C21/30 , G01C21/3423 , G01C21/343 , G01C21/3697 , G06Q40/08 , G07C5/008
摘要: Aspects of the present disclosure describe systems, methods, and devices for vehicle mode detection based on acceleration data and location data during a trip detected by mobile devices in a vehicle. According to some examples, location data will be compared to known routeway data to detect a vehicle mode. In other examples acceleration data will be used to calculate the consistency of vehicular velocity during a trip to detect a vehicle mode. In some additional aspects, multiple analyses will be performed on the same data sets to check for false positives with vehicle mode detection.
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公开(公告)号:US11867913B2
公开(公告)日:2024-01-09
申请号:US18046696
申请日:2022-10-14
发明人: Robert B. Atac , Richard Madison , James E. Melzer
CPC分类号: G02B27/0176 , B64D11/0015 , G01C21/10 , G02B27/017 , G02B2027/0198
摘要: A method, medium and system for auto-aligning displays of a head/helmet mounted display. The method, medium and system may provide for an auto-alignment of components of a headband, headgear, or a helmet. The method, medium and system may provide for a first sensor mounted to the helmet of a user and configured to communicate and transfer align with a vehicle comprising an inertial navigation system (INS). The method, medium and system may provide for display comprising a second sensor configured to communicate with the first sensor and transfer align the second sensor with the first sensor based on the transfer alignment of the first sensor with the vehicle. The method, medium and system may provide for wherein the first sensor and the second sensor comprise an inertial measurement unit (IMU). Further, the method, medium and system may also provide for the aligning of two displays on the head/helmet relative to each other in real time.
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4.
公开(公告)号:US11842500B2
公开(公告)日:2023-12-12
申请号:US17234576
申请日:2021-04-19
申请人: Trifo, Inc.
发明人: Grace Tsai , Zhe Zhang , Shaoshan Liu
IPC分类号: G06T7/246 , G06V20/56 , G05D1/02 , G06T7/73 , G01C21/10 , G01S5/16 , H04N13/261 , G01C21/00 , G05D1/00 , G06T7/579 , G06V10/46 , G06V20/10 , G06V20/20 , G01C21/16 , G06F18/22 , H04N23/60 , H04N23/73
CPC分类号: G06T7/246 , G01C21/005 , G01C21/10 , G01C21/1656 , G01S5/16 , G05D1/0044 , G05D1/027 , G05D1/0246 , G05D1/0251 , G05D1/0253 , G05D1/0274 , G06F18/22 , G06T7/579 , G06T7/73 , G06V10/464 , G06V20/10 , G06V20/20 , G06V20/56 , H04N13/261 , H04N23/60 , H04N23/73 , G06T2207/10016 , G06T2207/30244 , G06T2207/30252 , Y10S901/01
摘要: The described positional awareness techniques employing visual-inertial sensory data gathering and analysis hardware with reference to specific example implementations implement improvements in the use of sensors, techniques and hardware design that can enable specific embodiments to provide positional awareness to machines with improved speed and accuracy.
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公开(公告)号:US20230073522A1
公开(公告)日:2023-03-09
申请号:US17799863
申请日:2021-02-25
摘要: An angle of attack sensor includes a housing and a faceplate. A vane assembly extends through a central opening of the faceplate and includes a vane. The vane comprises a root, a tip, a leading edge, a trailing edge, a first lateral face, and a second lateral face. The first lateral face and the second lateral face are symmetric about a chord of the vane and each have a forward section with an outer surface profile that is nonlinear and geometrically convex from the leading edge to a transition point at a tangent to the widest point of the geometrically convex outer surface profile and each have an aft section with an outer surface profile that extends out to form a diverging wedge shape from the transition point to the trailing edge.
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公开(公告)号:US11579239B2
公开(公告)日:2023-02-14
申请号:US17329915
申请日:2021-05-25
申请人: LocatorX, Inc.
发明人: William D. Meadow
摘要: A global resource locator (GRL) device can be used to track a physical asset. The GRL device can a semiconductor chip with a processor and a timing device. The semiconductor chip can generate a timing signal. The GRL device can include a blockchain, a communication device, and a memory in logical communication with the processor. The memory can store an identifier, a public key, a private key, and a hash. The communication device can communicate wirelessly with an authenticated radio source, the micro sized timing device, and the blockchain. Each authenticated radio source can be located at a respective reference location. The communication device can receive wireless timing signals from at least three authenticated radio sources. The GRL device can be affixed to a product.
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公开(公告)号:US11511750B2
公开(公告)日:2022-11-29
申请号:US16691177
申请日:2019-11-21
发明人: Anna Clarke , Eyal Bagon
IPC分类号: B60W40/06 , B60W40/072 , B60W40/076 , B60W30/18 , B60T7/12 , G01C21/26 , G08G1/0962 , G08G1/16 , B60K31/00 , B60W30/14 , G06V20/56 , B60W30/00 , B60W30/09 , G01C11/04 , G01C21/10 , B60W30/12 , G05D1/02 , B60T8/32 , B60W30/08 , B60T7/22 , B60W30/165 , B60R1/00 , B60W10/18 , B60W10/20 , B60W30/095 , G05D1/00 , B62D15/02 , H04N5/247 , B60W50/14 , G01C21/30 , G06T7/00 , G06T7/70 , G06T7/285 , G06T7/292 , H04N7/18 , B62D6/00 , G08G1/00 , B60W50/00 , G01S5/00 , G08G1/09
摘要: An autonomous vehicle control system is provided. The control system may include a plurality of cameras to acquire a plurality of images of an area in a vicinity of a vehicle; and at least one processing device configured to: recognize a curve to be navigated based on map data and vehicle position information; determine an initial target velocity for the vehicle based on at least one characteristic of the curve as reflected in the map data; adjust a velocity of the vehicle to the initial target velocity; determine, based on the plurality of images, observed characteristics of the curve; determine an updated target velocity based on the observed characteristics of the curve; and adjust the velocity of the vehicle to the updated target velocity.
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公开(公告)号:US20220081113A1
公开(公告)日:2022-03-17
申请号:US17423087
申请日:2020-01-14
发明人: David TWINING
摘要: The present disclosure provides systems and methods for delivery using unmanned aerial vehicles (UAVs). In an aspect, the present disclosure provides an unmanned aircraft system, comprising: a communications unit; and a UAV comprising: a non-transitory computer-readable medium; a lift system comprising lift mechanisms to propel the UAV; a sensor system to obtain sensor information related to the UAVs environment; a processor to control operation of the lift system and the sensor system; an object detection module to detect potential mobile landing structures within the UAVs environment based on the sensor information; a mobile landing area recognition module to identify a mobile landing area on a mobile landing structure based on the sensor information; and a navigation module to estimate a real-time state of the mobile landing area based on the sensor information or the mobile landing area and to land the UAV onto the mobile landing area.
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公开(公告)号:US20220078322A1
公开(公告)日:2022-03-10
申请号:US17526791
申请日:2021-11-15
申请人: GoPro, Inc.
摘要: Systems and methods are disclosed for image signal processing. For example, method may include determining a sequence of orientation estimates based on sensor data from one or more motion sensors. The method may include receiving an image from the image sensor. The method may include filtering the sensor data with a pass band matching an operation bandwidth to the sequence of orientation estimates to obtain filtered data. The method may include invoking an electronic image stabilization module to correct the image based on the filtered data to obtain a stabilized image. The method may include storing, displaying, or transmitting an output image based on the stabilized image.
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公开(公告)号:US11199406B2
公开(公告)日:2021-12-14
申请号:US16684859
申请日:2019-11-15
申请人: NextNav, LLC
发明人: Michael Dormody , Ganesh Pattabiraman , Abijith Kumar , Thomas Wolf , Gary Parsons , Christian Gates , Deepak Joseph , Badrinath Nagarajan
摘要: Calibrating an unstable sensor of a mobile device. Systems and methods for calibrating a sensor of a mobile device determine a first estimated position of the mobile device without using any measurement from the sensor of the mobile device, generate a second estimated position of the mobile device using a measurement from the sensor, estimate a sensor error of the sensor using the first estimated position and the second estimated position, and use the sensor error to determine a calibration value for adjusting one or more measurements from the sensor.
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