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公开(公告)号:US20240265466A1
公开(公告)日:2024-08-08
申请号:US18634539
申请日:2024-04-12
Inventor: Larry Stevig
IPC: G06Q40/08 , B32B17/06 , B32B27/06 , E06B5/10 , E06B7/28 , G05B19/042 , H01L31/0468 , H01L31/048 , H02S20/26
CPC classification number: G06Q40/08 , B32B17/06 , B32B27/06 , E06B7/28 , G05B19/042 , H01L31/0468 , H01L31/048 , H01L31/0488 , H02S20/26 , B32B2307/416 , B32B2307/558 , B32B2419/00 , B32B2457/12 , B32B2605/006 , E06B5/10 , G05B2219/25387 , G05B2219/2639
Abstract: An impact-resistant, photovoltaic (IRPV) window system is provided. The system may include an IRPV window coupled to a structure, a controller, and an insurance computing device. The IRPV window may include an impact resistant (IR) layer, a photovoltaic (PV) material that may generate an electrical output, and an electrode coupled to the PV material that may receive the electrical output. The IRPV window may permit a portion of visible light to pass through the IRPV window. The controller may monitor the electrical output and generate a solar profile of the structure based upon the electrical output. The insurance computing device may receive the solar profile and determine if an insurance policy associated with the structure is eligible for a policy adjustment and/or an insurance reward or discount offer.
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132.
公开(公告)号:US12056859B2
公开(公告)日:2024-08-06
申请号:US18091227
申请日:2022-12-29
Inventor: Ryan Knuffman
CPC classification number: G06T5/77 , G06N3/045 , G06N3/088 , G06T7/579 , G06T2207/10028 , G06T2207/20081 , G06T2207/20084
Abstract: A method for using a trained generative adversarial network to improve peril modeling includes receiving a semantically-segmented 3D point cloud; generating a gap-filled point cloud; and generating a digital map. A computing system for using a trained generative adversarial network to improve vehicle orientation and navigation includes one or more processors, and one or more memories having stored thereon computer-executable instructions that, when executed, cause the computing system to: receive a semantically-segmented 3D point cloud; generate a gap-filled point cloud; and generate a digital map. A non-transitory computer-readable medium includes computer-executable instructions that, when executed, cause a computer to: receive a semantically-segmented 3D point cloud; generate a gap-filled point cloud; and generate a digital map.
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公开(公告)号:US12051179B2
公开(公告)日:2024-07-30
申请号:US18091183
申请日:2022-12-29
Inventor: Ryan Knuffman
CPC classification number: G06T5/77 , G06N3/045 , G06N3/088 , G06T7/579 , G06T2207/10028 , G06T2207/20081 , G06T2207/20084
Abstract: A method includes receiving a navigation data set; generating a combined data set using a trained generative adversarial network; and generating a high resolution map that includes spatial data. A computing system includes: one or more processors, and one or more memories having stored thereon computer-executable instructions that, when executed, cause the computing system to: receive a navigation data set; generate a combined data set using a trained generative adversarial network; and generate a high resolution map that includes spatial data. A non-transitory computer-readable medium includes computer-executable instructions that, when executed, cause a computer to: receive a navigation data set; generate a combined data set using a trained generative adversarial network; and generate a high resolution map that includes spatial data.
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公开(公告)号:US20240251014A1
公开(公告)日:2024-07-25
申请号:US18624760
申请日:2024-04-02
Inventor: Chad Skinner , Jason Potts , Scott D. Dies , Aaron Kammeyer , Amit Gupta
IPC: H04L67/141 , G06N20/00 , H04L67/02
CPC classification number: H04L67/141 , G06N20/00 , H04L67/02
Abstract: Various techniques described herein relate to a client application framework for a contact center environment. A role-specific thick client framework may include a web browser-based application having multiple processes that can be distributed across the computing infrastructure of the client device. A portion of the framework may include a container application image received from an internal server of the contact center and launched by the client device. The framework also may include queuing and communication services executing on the client device, which interface with the internal client application and external service providers to support a common queuing framework and an integrated model implementation across the contact center environment.
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公开(公告)号:US12045783B2
公开(公告)日:2024-07-23
申请号:US18143163
申请日:2023-05-04
Inventor: Timothy Joel Davis
IPC: G06Q30/00 , G06Q10/20 , G06Q30/0601
CPC classification number: G06Q10/20 , G06Q30/0613 , G06Q30/0631 , G06Q30/0633
Abstract: Systems and methods for ordering a replacement component or repair service are disclosed. According to some aspects, condition data indicating a condition of a consumable component may be generated by sensor and transmitted to an order assistance system. The order assistance system may determine whether the consumable component requires at least one of replacement or repair by comparing the condition data with one or more maintenance parameters. Additionally, in response to a determination that the consumable component requires at least one of replacement or repair, the order assistance system may recommend at least one of a replacement component or a repair service in accordance with one or more order parameters pre-selected by a user. In some aspects, an insurance policy associated with the consumable component may be adjusted based on the successful repair or replacement of the consumable component.
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136.
公开(公告)号:US20240242292A1
公开(公告)日:2024-07-18
申请号:US18621455
申请日:2024-03-29
Inventor: Gregory Hayward , Scott Christensen
IPC: G06Q40/08 , G06Q30/0283 , G07C5/00 , G07C5/02
CPC classification number: G06Q40/08 , G06Q30/0283 , G07C5/008 , G07C5/02
Abstract: Vehicle costs may be allocated between users of a vehicle, including autonomous vehicles. A vehicle cost allocation (VCA) computing device receives an anticipated trip report associated with an anticipated future trip, the anticipated trip report associated with at least one vehicle user including an anticipated driver of the vehicle and an anticipated passenger, the anticipated trip report including at least one of an anticipated destination and a distance of the anticipated future trip. The VCA computing device is also configured to determine one or more anticipated vehicle costs for the anticipated future trip. The vehicle costs may include usage-based or trip-based insurance. The VCA computing device is also configured to allocate a respective portion of the vehicle cost to the anticipated driver and passenger and transmit the anticipated vehicle costs to for review by the anticipated driver.
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公开(公告)号:US12039534B2
公开(公告)日:2024-07-16
申请号:US17198687
申请日:2021-03-11
Inventor: Jacob J. Alt , Eric Bellas , Jaime Skaggs , Shawn M. Call , Melinda Teresa Magerkurth , Vicki King , Charles H. Roscow , Scott Shoop , Greg Hayes , Robert Alpine Jennings , Amber Nelson-Wolfe , Shyam Tummala
CPC classification number: G06Q20/401 , G06F21/105 , G06F21/645 , G06Q20/3827 , G06Q20/3829 , G06Q20/4014 , G06Q40/08 , H04L9/3236 , H04L9/3239 , H04L9/3247 , G06F21/6245 , G06Q2220/00 , G06Q2220/18 , H04L9/50 , H04L2209/56
Abstract: The present methods and systems relate to using and accessing data stored in a blockchain, and in particular, interacting with the blockchain and users to provide bank card activation services using smart contracts. The methods and systems include (1) receiving a credit card application package associated with a credit card, wherein the credit card application package includes credit card information and a set of user information, (2) verifying the credit card information and the set of user information, (3) checking the credit card information and the set of user information against the smart contract stored on the blockchain, wherein the smart contract includes a set of conditions, and (4) activating the credit card when the credit card information and the set of user information satisfy the set of conditions stored in the smart contract.
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公开(公告)号:US20240233035A1
公开(公告)日:2024-07-11
申请号:US18617534
申请日:2024-03-26
Inventor: Todd Binion , Jennifer Criswell Kellett , Jeremy Carnahan , Matt Megyese
CPC classification number: G06Q40/08 , G01C23/00 , G07C5/008 , B64C39/024
Abstract: A system for determining drone operation rules configured to (i) receive a plurality of telematics data from a plurality of missions; (ii) analyze the plurality of telematics data to determine one or more mission trends; and (iii) determine one or more rules based upon the one or more mission trends.
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公开(公告)号:US20240233030A1
公开(公告)日:2024-07-11
申请号:US17237898
申请日:2021-04-22
Inventor: Sunish Menon , Weixin Wu , Bernardo Bracero , Jeffrey Wilson Stoiber , Stan E. Gozur , Jeremy Shawn Fogg , Phillip Sangpil Moon
CPC classification number: G06Q40/08 , G06N20/00 , G06Q10/20 , G06Q50/16 , H04L67/125
Abstract: Provided herein is a damage prevention and mitigation (DPM) computing device including at least one processor in communication with a memory device. The at least one processor may be configured to identify a plurality of property parameters associated with a property wherein the property parameters are associated with one of a structure and design of the property; receive, via one or more telematics sensors, property telematics data; determine one or more damage factors associated with the property, wherein each damage factor includes an aspect of the property that increases a likelihood of the property incurring some damage; and generate a damage profile for the property based upon the determined damage factors, wherein the damage profile includes at least (a) one or more recommendations to address the damage factors and mitigate the likelihood that the property will incur damage, and (b) an insurance coverage amount for the property.
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公开(公告)号:US20240232859A9
公开(公告)日:2024-07-11
申请号:US18187631
申请日:2023-03-21
Inventor: Joseph Robert Brannan , Brian N. Harvey , Edward W. Breitweiser , Joseph P. Harr
CPC classification number: G06Q20/3672 , G06Q50/188 , G16H10/60
Abstract: The following relates generally to implementing a medical data non-fungible token (NFT). In some embodiments, one or more processors receive medical data of a plurality of users, and store the medical data of the plurality of users in a first storage location in a medical data database. The one or more processors may then detect a request to purchase a data feed for one or more types of medical data, and identify medical data corresponding to the request in the medical data database. The one or more processors may then store the identified medical data in a second storage location, and mint a medical data NFT that indicates the second storage location.
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