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公开(公告)号:US10996373B2
公开(公告)日:2021-05-04
申请号:US16921489
申请日:2020-07-06
Applicant: THE CLIMATE CORPORATION
Inventor: Haitao Xiang , Xianyuan Yang , Nick Koshnick , Nick Cisek
IPC: G01V99/00 , G01N21/359 , G01N33/00 , G06Q10/04 , G06F30/27 , A01B76/00 , G01N21/31 , G01W1/10 , G01N33/24 , G01N21/17 , A01B79/00 , G06F111/06
Abstract: A method for building and using soil models that determine soil properties from soil spectrum data is provided. In an embodiment, building soil model may be accomplished using soil spectrum data received via hyperspectral sensors from a land unit. A processor updates the soil spectrum data by removing interference signals from the soil spectrum data. Multiple ground sampling locations within the land unit are then determined based on the updated soil spectrum data. Soil property data are obtained from ground sampling at the ground sampling locations. Soil models that correlate the updated soil spectrum data with the soil property data are created based on the updated soil spectrum data and the soil property data. The soil models are sent to a storage for future use.
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72.
公开(公告)号:US10902161B2
公开(公告)日:2021-01-26
申请号:US15555581
申请日:2015-03-06
Applicant: FUJI CORPORATION
Inventor: Koichiro Sugimoto , Toshimitsu Honda
IPC: G06F30/20 , H05K13/08 , H05K13/04 , G06Q10/04 , G06Q50/04 , G06F30/17 , G06F111/06 , G06F111/20
Abstract: A method for optimizing component type arrangement in which multiple component types are optimally disposed on multiple installation positions when an automatic feeder device which automatically loads the component storage tape, a manual feeder device which does not automatically load the component storage tape, and a reel holding device are installed into the installation positions on a common pallet, the method includes a step of determining a portion of the multiple installation positions as a fixed position and fixing the determined automatic feeder device to the fixed position; and an optimizing step of performing a simulation optimally disposing the multiple component types on the multiple installation positions under a condition that the manual feeder device can be moved to an arbitrary installation position other than the fixed position without moving the automatic feeder device from the fixed position.
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公开(公告)号:US10796497B2
公开(公告)日:2020-10-06
申请号:US16173637
申请日:2018-10-29
Applicant: Autodesk, Inc.
Inventor: Nandakumar Santhanam , Gordon Thomas Finnigan , Arpan Biswas
Abstract: A method and system provide the ability to modify a three-dimensional (3D) model. The 3D model is obtained and arbitrary faces of the model are selected. Shape modification operations to be performed are prescribed. A deformation lattice is constructed by setting up a lattice structure with control points. A space of the 3D model is mapped to a space of the lattice structure. The deformation lattice is evaluated by deforming the lattice using a selected set of control points. The evaluated deformed model is then output.
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74.
公开(公告)号:US10719069B2
公开(公告)日:2020-07-21
申请号:US15858677
申请日:2017-12-29
Applicant: Palo Alto Research Center Incorporated
Inventor: Morad Behandish , Saigopal Nelaturi , Johan de Kleer
IPC: G05B19/41 , G05B19/418 , B33Y50/02 , B33Y50/00 , G06F30/17 , G05B19/4093 , B29C64/386 , G06F111/06 , G06F119/18
Abstract: A systematic approach to constructing process plans for hybrid manufacturing is provided. The process plans include arbitrary combinations of AM and SM processes. Unlike the suboptimal conventional practice, the sequence of AM and SM modalities is not fixed beforehand. Rather, all potentially viable process plans to fabricate a desired target part from arbitrary alternating sequences of pre-defined AM and SM modalities are explored in a systematic fashion. Once the state space of all process plans has been enumerated in terms of a partially ordered set of states, advanced artificial intelligence (AI) planning techniques are utilized to rapidly explore the state space, eliminate invalid process plans, for instance, process plans that make no physical sense, and optimize among the valid process plans using a cost function, for instance, manufacturing time and material or process costs.
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公开(公告)号:US20250021710A1
公开(公告)日:2025-01-16
申请号:US18715355
申请日:2022-11-30
Applicant: Siemens Schweiz AG
Inventor: Kevin BAUER , Fabian PITSCHEIDER
IPC: G06F30/13 , G06F30/27 , G06F111/06
Abstract: A computer-implemented method for positioning technical elements in a space, wherein the elements each have an element work area, where the method includes a) providing the geometry of the space via a space model, b) determining a set of possible element positions for positioning elements from the space model taking into account predetermined positioning rules for the space, c) ascertaining the number of elements for the space via a model based on machine learning, d) determining a set of element arrangements with permutations for elements at each possible element position, and e) determining the element arrangement with the smallest ratio of the number of elements for the space and the total element work area from the ascertained set of element arrangements.
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公开(公告)号:US20240404657A1
公开(公告)日:2024-12-05
申请号:US18735449
申请日:2024-06-06
Applicant: Cytel Inc.
Inventor: Jaydeep Bhattacharyya , James Bolognese , Alexandre Buer , Eric Edwards , Stanley Y. Huang , Yannis Jemiai , Cyrus Mehta , Nitin Patel , Anne Pelz , Ajay Prabhakar Sathe , Joshua A. Schultz , Pralay Senchaudhuri
IPC: G16H10/20 , G06F30/10 , G06F30/12 , G06F30/20 , G06F111/02 , G06F111/04 , G06F111/06 , G06F111/08 , G06F111/16 , G06N5/04 , G06N20/00 , G06Q10/0631 , G06Q10/067 , G06Q30/0204 , G16H40/20 , G16H50/70
Abstract: A method for determining trial designs is provided. The method includes receiving, via at least one processor, one or more trial design criteria and one or more scenarios corresponding to a set of trial designs, and generating, via the at least one processor, simulation data based at least in part on replicating each of the set of trial designs with the one or more trial design criteria and the one or more scenarios. The simulation data includes performance parameters and performance parameter values associated with each design in the set of designs for a set of criteria. The method further includes determining, via the at least one processor, an optimality criteria for evaluating the trial designs, searching, within the set of trial designs, via the at least one processor, for globally optimum designs based on the optimality criteria, and transmitting, via the at least one processor, globally optimum designs.
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公开(公告)号:US12147737B2
公开(公告)日:2024-11-19
申请号:US17342309
申请日:2021-06-08
Applicant: AUTODESK, INC.
Inventor: David Benjamin , James Stoddart , Lorenzo Villaggi , Danil Nagy
IPC: G06F30/13 , G06N3/126 , G06Q10/0631 , G06Q40/12 , G06Q50/16 , G06F3/04815 , G06F3/04847 , G06F111/02 , G06F111/04 , G06F111/06 , G06F111/20 , G06T15/00 , G06T17/05
Abstract: An urban design pipeline automatically generates design options for an urban design project. The urban design pipeline includes a geometry engine and an evaluation engine. The geometry engine analyzes design criteria and design objectives associated with the urban design project and then generates numerous candidate designs that meet the design criteria and optimize the design objectives to varying degrees. The evaluation engine evaluates each candidate design to generate a set of metrics. The geometry engine modifies the candidate designs based on corresponding metrics to generate candidate designs that better meet the design criteria and more effectively achieve the design objectives.
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公开(公告)号:US12141504B2
公开(公告)日:2024-11-12
申请号:US16184972
申请日:2018-11-08
Applicant: AUTODESK, INC.
Inventor: David Benjamin , James Stoddart , Lorenzo Villaggi , Danil Nagy
IPC: G06F30/13 , G06N3/126 , G06Q10/0631 , G06Q40/12 , G06Q50/16 , G06T15/00 , G06T17/05 , G06F3/04815 , G06F3/04847 , G06F111/02 , G06F111/04 , G06F111/06 , G06F111/20
Abstract: An urban design pipeline is configured to automatically generate design options that meet competing design objectives. A geometry engine within the urban design pipeline generates candidate designs for an urban design project. An evaluation engine within the urban design pipeline evaluates the degree to which each candidate design addresses the competing design objectives to produce a set of design metrics. A tradeoff engine within the urban design pipeline generates a design tradeoff space based on the candidate designs and corresponding design metrics. The tradeoff engine traverses the design tradeoff space based on performance modifications to adjust the degree to which the competing design objectives are addressed. The performance modifications can be obtained from any number of stakeholders in the urban design project. In this manner, the urban design pipeline generates and/or modifies candidate designs to generate design options that balance competing design objectives that potentially originate from multiple stakeholders.
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79.
公开(公告)号:US12131105B2
公开(公告)日:2024-10-29
申请号:US17476408
申请日:2021-09-15
Applicant: Applied Materials, Inc.
Inventor: Preetham Prahallada Rao , Prashanth Kothnur
IPC: G06F30/27 , G06F18/214 , G06N20/20 , H01L21/67 , G06F111/06
CPC classification number: G06F30/27 , G06F18/214 , G06N20/20 , H01L21/67011 , H01L21/67248 , G06F2111/06
Abstract: A method includes measuring a subset of property values within a manufacturing chamber during a process performed on a substrate within the manufacturing chamber. The method further includes determining property values in the manufacturing chamber at locations removed from the locations the measurements are taken. The method further includes performing a corrective action based on the determined properties.
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80.
公开(公告)号:US20240346195A1
公开(公告)日:2024-10-17
申请号:US18595173
申请日:2024-03-04
Applicant: AUTODESK, INC.
Inventor: David BENJAMIN , James STODDART , Lorenzo VILLAGGI , Danil NAGY
IPC: G06F30/13 , G06F3/04815 , G06F3/04847 , G06F111/02 , G06F111/04 , G06F111/06 , G06F111/20 , G06N3/126 , G06Q10/0631 , G06Q40/12 , G06Q50/16 , G06T15/00 , G06T17/05
CPC classification number: G06F30/13 , G06N3/126 , G06Q10/06313 , G06Q40/12 , G06Q50/165 , G06F3/04815 , G06F3/04847 , G06F2111/02 , G06F2111/04 , G06F2111/06 , G06F2111/20 , G06T15/005 , G06T17/05
Abstract: An urban design pipeline automatically generates design options for an urban design project. The urban design pipeline includes a geometry engine and an evaluation engine. The geometry engine analyzes design criteria, design objectives, and design heuristics associated with the urban design project and then generates numerous candidate designs. The design criteria specify a property boundary associated with a region of land to be developed. The design objectives indicate a specific type of topology that is derived from an existing urban layout. The design heuristics include different sets of construction rules for generating designs with specific types of topologies. The geometry engine generates candidate designs that conform to the property boundary and have topological characteristics in common with the existing urban layout.
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