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公开(公告)号:US20240337249A1
公开(公告)日:2024-10-10
申请号:US18745330
申请日:2024-06-17
IPC分类号: F03D7/04 , F03D7/02 , G05B19/042 , G06F113/06 , G06N20/00
CPC分类号: F03D7/046 , F03D7/0224 , F03D7/0276 , F03D7/045 , G05B19/042 , G06N20/00 , F05B2200/13 , F05B2200/14 , F05B2200/211 , F05B2200/221 , F05B2220/30 , F05B2240/221 , F05B2260/74 , F05B2260/84 , F05B2270/101 , F05B2270/1033 , F05B2270/32 , F05B2270/323 , F05B2270/324 , F05B2270/325 , F05B2270/402 , G05B2219/2619 , G06F2113/06
摘要: A system for generating power includes an environmental engine that determines performance metrics for a plurality of wind turbines deployed at a plurality of windfarms, such that each windfarm includes a corresponding subset of the plurality of windfarms. The performance metrics for a given wind turbine of the plurality of wind turbines characterizes wind flowing over blades of the given wind turbine. The system includes an artificial intelligence (AI) ensemble engine operating on the one or more computing devices that generates a set of models for each wind turbine of the plurality of wind turbines, wherein each model of each set of models is generated with a different machine learning algorithm and selects, for each respective set of models, a model with a highest efficiency metric. The AI engine provides edge computing systems operating at the plurality of windfarms with a selected model and corresponding recommended operating parameters.
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公开(公告)号:US20240217039A1
公开(公告)日:2024-07-04
申请号:US18092094
申请日:2022-12-30
摘要: A method of replacing at least one tooth of a gear includes providing a tool jig including a mounting block with a plurality of indexing jig features. The tool jig also includes a tool-supporting feature in laterally movable contact with a jig rail feature. With at least one indexing jig feature, relative motion of the tool jig relative to the gear is resisted. A material-removal tool is operated, while attached to the tool-supporting feature in the tooth-removal position, to remove at least a portion of a working circumference of the gear including a native gear tooth to be replaced. Motion of the material-removal tool is guided to generate a circumferential gear cut including a relatively smooth first cut surface formed by removal of at least the native gear tooth to be replaced. The material-removal tool is removed from the tool-supporting feature. The tool jig is removed from the gear.
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公开(公告)号:US20240217038A1
公开(公告)日:2024-07-04
申请号:US18091955
申请日:2022-12-30
摘要: An apparatus for replacing at least one tooth of a gear includes an elongate anchoring lip having a laterally extending lip body with at least one anchoring hole extending longitudinally therethrough. The lip body is bounded within a lateral plane by transversely spaced front and rear lip faces and laterally spaced first and second side edges. A tooth block extends longitudinally from a selected one of the front and rear lip faces. The tooth block includes at least one replacement gear tooth extending longitudinally therealong. The tooth block is spaced laterally apart from at least one of the first and second side edges, with at least a portion of the lip body extending laterally between the tooth block and the at least one of the first and second side edges.
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公开(公告)号:US20240159136A1
公开(公告)日:2024-05-16
申请号:US17987134
申请日:2022-11-15
发明人: Dimitri C. Critsinelis , Dustin S. Claiborne , Kiran Singh , Hamzah M. Al-Najada , Gunjan Neopaney , Sri Vaishnavi Vemulapalli , Hooman Yousefizadeh , Andrew B. Stokes, JR. , Vincent P. LeMoine
IPC分类号: E21B44/00
CPC分类号: E21B44/00 , E21B2200/22
摘要: A system for guiding a drill assembly boring the Earth can include a drill controller engine that receives parameters characterizing sensor data from a plurality of sensors of the drill assembly, and a condition of the drill assembly. The parameters and condition can be aggregated into a historical record. A subset of the parameters can be selected based on a relationship between the subset of parameters and the condition of the drill assembly, the relationship being determined by a drill assembly machine learning model. A Damage Index (DI) can be calculated from the subset of parameters. The DI can be matched with a plurality of DIs computed for the historical record to determine a risk of failure of the drill assembly. The drilling operations of the drill assembly can be adjusted by the drill controller engine in response to the risk of failure.
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公开(公告)号:US20240112105A1
公开(公告)日:2024-04-04
申请号:US17956302
申请日:2022-09-29
发明人: Ricardo L. Rivera , Kevin K. Ogden , Michael E. Willis , Carlos A. Lizano , Sally A. Rosen , Randall R. Wagner , Faye G. Spindler
CPC分类号: G06Q10/063118 , G06Q10/063112 , G06Q10/20 , G06Q50/06
摘要: A work request interface receives work request data for a power generation system. The work request data includes a work request having data characterizing equipment of the power generation system and a first state of the equipment. The work request interface processes the work request to modify at least one field in the work request to provide a standardized work request. The standardized work request includes data characterizing operations needed to change a state of the equipment from the first state to a second state. A work order generator receives the standardized work request and determines a priority of the standardized work request. The work order generator determines a mode of operation of the power generation system needed to change the state of the equipment from the first state to the second state and generates a set of work orders for the work request.
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公开(公告)号:US20230417456A1
公开(公告)日:2023-12-28
申请号:US17851757
申请日:2022-06-28
摘要: A solar tracking system includes a database to store data associated with a solar field comprising physical location parameters of each of a set of solar panels. The physical location parameters can include a relative row-to-row height and spacing of the solar panels. The system also includes a parameter aggregation tool to aggregate the physical location parameters to generate aggregate time-based output power data associated with the solar field based on geolocation data associated with the solar field. The system also includes a solar tracking tool to generate a solar tracking control scheme for the solar field based on the aggregate time-based output power data, the geolocation data associated with the solar field, and a row-to-row backtracking constraint. The set of solar panels of the solar field can implement solar tracking based on the solar tracking scheme.
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公开(公告)号:US20230399933A1
公开(公告)日:2023-12-14
申请号:US17839757
申请日:2022-06-14
发明人: Taran Raj , Jon Renner , Ross Weinstein , Michael Osterlie , Jack Stubbs , Brittany Pitlik , Gordon Paynter , Emmanuel Resch
CPC分类号: E21B44/00 , G06Q10/103 , E21B2200/22 , E21B2200/20
摘要: Disclosed is a system and method for improving oil and gas drilling scheduling. A plurality of project projections is performed by accessing data elements, each associated with criteria. Each of the criteria is used to project expected gas production from gas wells, and the criteria include a number of crews to perform jobs and a total number of jobs. The criteria are converted into a uniform data format. Next, a total number of simulations (M) are executed in parallel up to the total number of jobs or until a time period expires. The simulations include evaluating each of the jobs to be performed and which crews are available to perform jobs and executing an algorithm to produce results, wherein the results include a schedule of crews and jobs and a production timeline. The results are ranked with the highest gas production. The results are sent to a display.
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公开(公告)号:US11799278B1
公开(公告)日:2023-10-24
申请号:US17147394
申请日:2021-01-12
发明人: Phillip S. Givens , Chung Jerry Wong , Robert K. Dunn , Jerry W. Hutcheson , Jose R. F. Ribeiro , Keith E. Lindsey , Miguel A. Flores , Thomas R. Koegel , Erica Souza Nogueira Bretas
摘要: An electric transmission line support structure. A first vertical shaft and a parallel second vertical shaft are connected by a crossarm. A first conductor attachment point is connected to the first vertical shaft at a first vertical shaft attachment by a first structural string. A second conductor attachment point is connected to the second vertical shaft at a second vertical shaft attachment point by a second structural string and to the first conductor attachment point by a third structural string. A third conductor attachment point connected to the first vertical shaft at a third vertical shaft attachment point by a fourth structural string and to the second vertical shaft at a fourth vertical shaft attachment point by a fifth structural string. The third vertical shaft attachment point is below the first vertical shaft attachment point, and the fourth vertical shaft attachment point is below the second vertical shaft attachment point.
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公开(公告)号:US11551149B2
公开(公告)日:2023-01-10
申请号:US16876519
申请日:2020-05-18
摘要: In some examples, sensor data comprising a first set and second set of sensor data can be received. The first set of sensor data can be provided to a rule-based classifier to identify a first normalized data tag. The second set of sensor data can be provided to a trained classifier to identify a second normalized data tag. The trained classifier can include a machine-learning model that has been trained based on tag sensor training data for classifying the second set of sensor data into a respective class associated with the second normalized data tag. The first and second sets of sensor data can be updated with respective first and second normalized data tags to normalize the first and second sets of sensor data to provide a standardized data label for each of the first and second sets of sensor data.
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公开(公告)号:US11530041B2
公开(公告)日:2022-12-20
申请号:US16891542
申请日:2020-06-03
发明人: Jeroen Leverman
摘要: A drone for replacing a removeable device can include a drone body with at least three lift-generating rotors spaced apart from the drone body and operating in concert that provide lift sufficient to propel the drone in at least six directions. The drone can include a first bay attached to the drone body, the first bay comprising a first mounting mechanism to dismount a first removeable device from a device receptacle and to securely stow the first removeable device. The drone can also include a second bay attached to the drone body comprising a second mounting mechanism to stow a second removeable device and to mount the second removeable device on the device receptacle.
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