Patents Assigned to FORCE-A
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Patent number: 11590610Abstract: The present invention relates to ultrafast laser inscribed structures for signal concentration in focal plan arrays, focal plan arrays, imaging and/or sensing apparatuses comprising said focal plan arrays, as well as methods of making and/or using ultrafast laser inscribed structures for signal concentration in focal plan arrays, focal plan arrays, imaging and/or sensing apparatuses comprising said focal plan arrays. Such ultrafast laser inscribed structures are particularly adapted to condense broad band radiation, thus allowing increased sensing efficiencies to be obtained from imaging and/or sensing apparatuses. Such ultrafast laser inscribed structures can be efficiently produced by the processes provided herein.Type: GrantFiled: June 30, 2021Date of Patent: February 28, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventor: Sean A. McDaniel
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Patent number: 11594796Abstract: A polarizer including an antenna connected to a waveguide. The waveguide including a broad wall having a cross-slot in communication with at least one port.Type: GrantFiled: December 2, 2019Date of Patent: February 28, 2023Assignees: UNM Rainforest Innovations, The U.S. Government as Represented by the Secretary of the Air ForceInventors: Firas Nazem Ayoub, Christos G. Christodoulou, Emil Ardelean, Steven Lane
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Patent number: 11586994Abstract: Systems and transaction-enabled methods for providing provable access to a distributed ledger with serverless code logic are disclosed. A transaction-enabling system may include a controller configured to access a distributed ledger comprising serverless code logic, tokenize the serverless code logic, interpret an access request for the serverless code logic and, in response to the access request, provide a provable access to the serverless code logic.Type: GrantFiled: November 18, 2019Date of Patent: February 21, 2023Assignee: Strong Force TX Portfolio 2018, LLCInventor: Charles Howard Cella
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Patent number: 11586188Abstract: An apparatus, methods and systems for data collection in an industrial environment are disclosed. A monitoring system can include a data collector communicatively coupled to each one of a plurality of input channels utilizing one of a plurality of collector routes, wherein each input channel includes data corresponding to an element of a first industrial machine, and wherein each of the plurality of collector routes includes a distinct data collection routine, a data storage circuit structured to store a plurality of detection values that corresponds to the plurality of input channels, and a data marketplace circuit structured to communicate at least a portion of the detection values to a data marketplace, wherein the data marketplace circuit performs at least one of self-organizing the data marketplace and automating the data marketplace.Type: GrantFiled: October 5, 2018Date of Patent: February 21, 2023Assignee: Strong Force IoT Portfolio 2016, LLCInventors: Charles Howard Cella, Gerald William Duffy, Jr., Jeffrey P. McGuckin, Mehul Desai
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Patent number: 11586181Abstract: Systems and methods for process monitoring through data collection in a production environment can include a data collector communicatively coupled to a plurality of input channels, each input channel connected to a monitoring point from which data is collected, the collected data providing a plurality of process parameter values for the production environment; a data storage structured to store collected data from the plurality of input channels; a data acquisition circuit structured to interpret the plurality of process parameter values from the collected data; a data analysis circuit structured to analyze the plurality of process parameter values to detect a process condition associated with the production environment; and a response circuit structured to adjust an operational process for the production environment in response to the detected process condition.Type: GrantFiled: November 27, 2019Date of Patent: February 21, 2023Assignee: Strong Force IoT Portfolio 2016, LLCInventors: Charles Howard Cella, Gerald William Duffy, Jr., Jeffrey P. McGuckin, Mehul Desai
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Patent number: 11586177Abstract: A system for selection and configuration of a robotic process includes a data input module to receive a stream of inputs relating to a user engaged in a task of interest, an input analysis module to analyze the stream of inputs and provide a series of timestamped actions and associated action parameters, and a component selection module to select a component of an AI solution for use in an automated robotic process, based on, at least in part, an action of the series of actions, the associated action parameters, or the components ability to simulate one or more of the actions in the series of actions.Type: GrantFiled: May 28, 2021Date of Patent: February 21, 2023Assignee: Strong Force TX Portfolio 2018, LLCInventors: Charles Howard Cella, Jenna Lynn Parenti, Taylor D. Charon
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Patent number: 11584550Abstract: Various embodiments of the disclosed subject matter provide systems, methods, architectures, mechanisms, apparatus, computer implemented method and/or frameworks configured for tracking Earth orbiting objects and adapting SSN tracking operations to improve tracking accuracy while reducing computational complexity and resource consumption associated with such tracking.Type: GrantFiled: July 11, 2022Date of Patent: February 21, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventor: Christopher Tyler Diggans
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Patent number: 11586178Abstract: A method for selecting an AI solution for an automated robotic process including receiving at least one functional media including information indicative of brain activity by a human engaged in a task of interest, analyzing the functional media, identifying an activity level in at least one brain region, identifying a brain region parameter and an activity parameter; identifying an action parameter based in part on the brain region parameter or the activity parameter; and selecting a component of the AI solution in part on the brain region parameter, the activity parameter, or the action parameter.Type: GrantFiled: May 28, 2021Date of Patent: February 21, 2023Assignee: Strong Force TX Portfolio 2018, LLCInventors: Charles Howard Cella, Jenna Lynn Parenti, Taylor D. Charon
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Patent number: 11585200Abstract: The present invention includes systems and methods for continuous fracturing operations across a multichannel fracturing configuration. To swap a first well for a second well while continuously pumping water and/or frac fluid through the fracturing system, the second well may be initially prepared through a pressure equalization process. Once the second well is equalized and open, the first well may be sequentially closed and depressurized. Thus, the first well is swapped for the second well while the water and/or frac fluid continuously flows through the system. A conditional flow control valve may be used to sequentially open and/or close the flow of frac fluid through the frac manifold.Type: GrantFiled: October 27, 2021Date of Patent: February 21, 2023Assignee: Force Pressure Control, LLCInventors: Jacob Startz, Dustin Nesloney
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Publication number: 20230046545Abstract: A method for determining the likelihood that a pixel in a video image sequence represents true motion in the image. Light from a scene is captured to yield an original image having a sequence of frames. A prototype image is created from the original image as a geometrically accurate representation of the scene which is substantially free of contamination. A tilt variance-Gaussian mixture model and/or multi-variate Gaussian model, based upon optical turbulence statistics associated with the scene, is developed. Each pixel in the original image sequence of frames is evaluated against the prototype image using a probability density function, to yield a likelihood that the respective pixel represents true motion.Type: ApplicationFiled: July 9, 2022Publication date: February 16, 2023Applicant: Government of the United States as represented by the Secretary of the Air ForceInventors: Richard Van Hook, Russell Hardie
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Patent number: 11580448Abstract: Transaction-enabled systems and methods for royalty apportionment and stacking are disclosed. An example system may include a plurality of royalty generating elements (a royalty stack) each related to a corresponding one or more of a plurality of intellectual property (IP) assets (an aggregate stack of IP). The system may further include a royalty apportionment wrapper to interpret IP licensing terms and apportion royalties to a plurality of owning entities corresponding to the aggregate stack of IP in response to the IP licensing terms and a smart contract wrapper. The smart contract wrapper is configured to access a distributed ledger, interpret an IP description value and IP addition request, to add an IP asset to the aggregate stack of IP, and to adjust the royalty stack.Type: GrantFiled: November 22, 2019Date of Patent: February 14, 2023Assignee: Strong Force TX Portfolio 2018, LLCInventor: Charles Howard Cella
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Patent number: 11577448Abstract: The invention generally relates to shape memory films that are tri-functionally crosslinked and that comprise multiple, non-terminal, phenylethynyl moieties. In addition, the present invention relates methods of fabricating such films. Due to the improved properties of such SMPs, the SMP designer can program in to the SMP thermomechanical property enhancements that make the SMP suitable, among other things, for advanced sensors, high temperature actuators, responder matrix materials and heat responsive packaging.Type: GrantFiled: January 27, 2020Date of Patent: February 14, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventors: Loon-Seng Tan, David H. Wang, Zhenning Yu
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Methods and systems of industrial processes with self organizing data collectors and neural networks
Patent number: 11573557Abstract: Systems and methods for data collection for an industrial heating process are disclosed. The system according to one embodiment can include a plurality of data collectors, including a swarm of self-organized data collector members, wherein the swarm of self-organized data collector members organize to enhance data collection based on at least one of capabilities and conditions of the data collector members of the swarm, and wherein the plurality of data collectors is coupled to a plurality of input channels for acquiring collected data relating to the industrial heating process, and a data acquisition and analysis circuit for receiving the collected data via the plurality of input channels and structured to analyze the received collected data using a neural network to monitor a plurality of conditions relating to the industrial heating process.Type: GrantFiled: December 19, 2018Date of Patent: February 7, 2023Assignee: Strong Force IoT Portfolio 2016, LLCInventors: Charles Howard Cella, Gerald William Duffy, Jr., Jeffrey P. McGuckin, Mehul Desai -
Patent number: 11573558Abstract: Methods and systems for sensor fusion in a production line environment are disclosed. An example system for data collection in an industrial production environment may include an industrial production system comprising a plurality of components, and a plurality of sensors each operatively coupled to at least one of the components; a sensor communication circuit to interpret a plurality of sensor data values in response to a sensed parameter group; and a data analysis circuit to detect an operating condition of the industrial production system based at least in part on a portion of the sensor data values; and a response circuit to modify a production related operating parameter of the industrial production system in response to the detected operating condition.Type: GrantFiled: December 6, 2019Date of Patent: February 7, 2023Assignee: Strong Force IoT Portfolio 2016, LLCInventors: Charles Howard Cella, Gerald William Duffy, Jr., Jeffrey P. McGuckin, Mehul Desai
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Patent number: 11571608Abstract: An exercise device comprises a rigid rod having a first and second ends, a plurality of light sources arranged in a row along at least a portion of an axis extending between the first and second ends of the rigid rod, at least one load sensor for detecting an applied longitudinal force, and a processor coupled to the at least one load sensor and to the plurality of light sources. The processor is configured to execute machine-executable instructions that cause the processor to obtain a signal indicating a magnitude of the applied longitudinal force, and cause a subset of the plurality of light sources to emit light. A ratio of a number of light sources in the subset to a total number of the plurality of light sources represents the magnitude of the applied longitudinal force relative to a reference longitudinal force.Type: GrantFiled: September 24, 2020Date of Patent: February 7, 2023Assignee: Disruptive Force LLC, Campbell, CAInventors: Nicholas P. Sands, Justin Andrews, Krista S. Jacobsen, Daniel K. Harden, Cole Derby, Britt Jensen
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Patent number: 11573466Abstract: A transparent device for use in optical applications, and methods for using and manufacturing the device are disclosed. The device generally requires several layers, including (i) a first layer comprising a transparent conductive oxide (such as indium tin oxide (ITO)), (ii) a second layer comprising a transparent semiconductor (e.g., a pn-heterojunction or a pn-homojunction), the second layer having a surface facing the first layer, (iii) a third layer comprising a liquid crystal (such as E7), the third layer having a surface facing the second layer, and (iv) a fourth layer comprising either a second transparent conductive oxide or a second transparent semiconductor, the fourth layer having a surface facing the third layer. When light illuminates a surface of the transparent metal oxide pn-heterojunction or transparent metal oxide pn-homojunction, it induces photoconductivity, modifying the surface charges.Type: GrantFiled: February 22, 2022Date of Patent: February 7, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventors: Ighodalo U. Idehenre, Dean R. Evans
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Patent number: 11567054Abstract: A shaped lens for minimizing differences in time of arrival at the output surface of an explosive assembly. The lens is plano-convex with the convex shape oriented towards the explosive charge. The lens becomes monotonically thicker as the center of the lens is radially approached from the edge, according to a formula accounting for the detonation velocity of the explosive and velocity of the shockwave through the lens. The lens is preferably incorporated into a test fixture using a liquid explosive, such as nitromethane. The test fixture may be assembled on site, at the test location.Type: GrantFiled: July 9, 2021Date of Patent: January 31, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventor: Eric Welle
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Patent number: 11568415Abstract: A method includes acquiring, at a node server, blockchain data for a blockchain address on a blockchain network. The blockchain data includes a plurality of transactions for the blockchain address. The method includes generating a local node trust score for the blockchain address based on the blockchain data. The local node trust score indicates a likelihood that the blockchain address is involved in fraudulent activity. The method includes receiving, from a plurality of remote servers, a plurality of additional local trust scores for the blockchain address. The method includes determining a consensus trust score based on the local node trust score and the plurality of additional local trust scores. Additionally, the method includes receiving a trust request for the blockchain address from a requesting device and sending the consensus trust score for the specified blockchain address to the requesting device.Type: GrantFiled: June 3, 2019Date of Patent: January 31, 2023Assignee: STRONG FORCE TX PORTFOLIO 2018, LLCInventors: Eric Bravick, David Kuchar, Malcolm Garland, Harrison Dahme, David Marc Grossblatt
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Patent number: 11567478Abstract: A method for selection and configuration of an automated robotic process includes receiving a temporal biometric measurement of a worker performing a task, receiving a spatial-temporal environmental input provided to the worker, identifying a type of reasoning used when performing the task partially based on the temporal biometric measurement of the worker, selecting a component of an AI solution to replicate the type of reasoning, and configuring the component of the AI solution based on the spatial-temporal environmental input. The temporal biometric measurement includes a set of spatial-temporal imaging data of a brain of the worker and identifying the type of reasoning includes identifying a set of spatial-temporal neocortical activity patterns of the worker, identifying an active area of a neocortex of the worker; and selecting the component of the AI solution partially based on the identified active area of the neocortex.Type: GrantFiled: May 28, 2021Date of Patent: January 31, 2023Assignee: Strong Force TX Portfolio 2018, LLCInventors: Charles Howard Cella, Jenna Lynn Parenti, Taylor D. Charon
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Patent number: 11565787Abstract: The present disclosure defines a morphing airfoil having a dynamic flexible anisotropic skin system that is capable of carrying high level aerodynamic (or fluid) pressure loads over a structural surface. The structural surface can morph and bend in response to control inputs to change a lift force without separate movable control surfaces. The anisotropic skin is attached to underlying active and compliant structures. A control system causes the underlying support structure to move to a desired location which in turn causes the skin to bend and/or flex without exceeding a stress threshold and thus vary the lift profile along a span of the airfoil.Type: GrantFiled: December 22, 2020Date of Patent: January 31, 2023Assignee: United States of America as represented by the Secretary of the Air ForceInventors: Jared Neely, James Joo