Patents Examined by Jeremy Delozier
-
Patent number: 10705255Abstract: There is disclosed a method and a system for creating a weather forecast. The method is implemented on a server. The method comprises: receiving, by the machine learning module, at least one current weather measurement parameter at a measurement time; receiving, by the machine learning module, a first average value of a historical weather parameter for the measurement time; generating, by the machine learning module, a normalized value of the weather measurement parameter based on a difference between the current weather measurement parameter and the first average value of the historical weather parameter for the measurement time; training the machine learning module to create a normalized value of a weather forecasting parameter based on, at least partially, the normalized value of the weather measuring parameter, the normalized value of the weather forecasting parameter being associated with a future forecasting time, the future forecasting time occurring after the measurement time.Type: GrantFiled: March 31, 2017Date of Patent: July 7, 2020Assignee: YANDEX EUROPE AGInventors: Aleksandr Sergeevich Yuzhakov, Pavel Ivanovich Vorobyev, Mikhail Aleksandrovich Royzner, Victor Grigorievich Lamburt, Dmitry Valentinovich Solomentsev, Svetlana Olegovna Pospelova
-
Patent number: 10697827Abstract: Certain implementations of the disclosed technology may include systems and methods for extending a frequency response of a transducer. A method is provided that can include receiving a measurement signal from a transducer, wherein the measurement signal includes distortion due to a resonant frequency of the transducer. The method includes applying a complementary filter to the measurement signal to produce a compensated signal, wherein applying the complementary filter reduces the distortion to less than about +/?1 dB for frequencies ranging from about zero to about 60% or greater of the resonant frequency. The method further includes outputting the compensated signal.Type: GrantFiled: October 30, 2014Date of Patent: June 30, 2020Assignee: Kulite Semiconductor Products, Inc.Inventors: Joe VanDeWeert, Adam Hurst, Joseph Carter, Douglas R. Firth, Alan R. Szary
-
Patent number: 10698399Abstract: A system for predicting HVAC equipment failure includes an actuator and a controller. The actuator is coupled to the HVAC equipment and configured to drive the HVAC equipment between multiple positions. The actuator includes a processing circuit configured to collect internal actuator data characterizing an operation of the actuator and a communications circuit coupled to the processing circuit. The communications circuit is configured to transmit the internal actuator data outside the actuator. The controller is configured to provide control signals to the actuator and receive the internal actuator data from the actuator. The controller includes a failure predictor configured to use the internal actuator data to predict a time at which the HVAC equipment failure will occur.Type: GrantFiled: April 10, 2017Date of Patent: June 30, 2020Assignee: Johnson Controls Technology CompanyInventors: Michael R. Brownie, Gary A. Romanowich, Robert K. Alexander, Nathan J. Vandermause
-
Patent number: 10646278Abstract: A computer-implemented method determines an orientation parameter value of a prosthetic component. The method includes receiving a first desired separation distance between a first prosthetic component and a second prosthetic component at a first flexion position of a flexion joint and estimating a first estimated separation distance between the first prosthetic component and the second prosthetic component at the first flexion position of the joint for at least one potential orientation of the first prosthetic component. The method also includes determining a first orientation parameter value of the first prosthetic component by comparing the first estimated separation distance to the first desired separation distance and outputting the first orientation parameter value via a user interface.Type: GrantFiled: June 7, 2019Date of Patent: May 12, 2020Assignee: MAKO Surgical Corp.Inventors: Milan Ikits, Jason Karl Otto, Carinne Cecile Granchi, Ali Zafar Abbasi
-
Patent number: 10627435Abstract: A method for monitoring capacitance of DC bus capacitor of a power electronic converter is provided, wherein the power electronic converter includes at least one AC/DC conversion circuit and the DC bus capacitor, a power input/output interface of the AC/DC conversion circuit including a first terminal and a second terminal. The first terminal is connected to an AC grid with a frequency of f, the second terminal is connected to the DC bus capacitor, f is any positive real number, and the method includes: measuring a pulsating power with a frequency of 2f flowing through the DC bus capacitor and a voltage on the DC bus capacitor; and calculating the capacitance of the DC bus capacitor based on the pulsating power and the voltage on the DC bus capacitor. An apparatus for monitoring the capacitance of the DC bus capacitor is provided correspondingly.Type: GrantFiled: April 10, 2017Date of Patent: April 21, 2020Assignee: Delta Electronics (Shanghai) CO., LTDInventors: Tao Xia, Cheng Lu
-
Patent number: 10613242Abstract: Event amplitudes associated with a reflector in a subterranean formation are estimated, wherein the events are detected by azimuthally distributed receivers of an acoustic tool in a wellbore penetrating the subterranean formation. The receiver closest to an azimuthal position of the reflector is identified based on the estimated event amplitudes. The azimuthal position of the reflector is determined using data obtained from (1) the receiver identified as closest to the azimuthal position of the reflector, and (2) two others of the receivers that are azimuthally adjacent the receiver identified as closest to the azimuthal position of the reflector.Type: GrantFiled: March 31, 2017Date of Patent: April 7, 2020Assignee: SCHLUMBERGER TECHNOLOGY CORPORATIONInventor: Nobuyasu Hirabayashi
-
Patent number: 10605868Abstract: A method for predicting a performance of an electrical energy storage system includes receiving, as input, time series of data points pertaining to a plurality of operational parameters of the electrical energy storage system. The input time series is provided to a model that simulates dynamics of the electrical energy storage system. A plurality of performance indicators of the electrical energy storage system may be calculated based on the simulated dynamics of the electrical energy storage system.Type: GrantFiled: April 14, 2015Date of Patent: March 31, 2020Assignee: SIEMENS AKTIENGESELLSCHAFTInventors: Joachim Bamberger, Stefan Jessenberger, Spartak Rasov, Jeremy Ralph Wiles, Philipp Wolfrum
-
Patent number: 10598010Abstract: A method for generating a phase envelope log to characterize a subsurface formation includes drilling the borehole with a drill string, circulating a drilling fluid in the borehole, drawing a fluid sample representing a fluid contained in the subsurface formation, estimating a PVT parameter indicative of an in-situ condition of the subsurface formation from the drawn fluid sample, determining at least two phase envelopes at different depths using the estimated PVT parameter, and creating a phase envelope log formed of a continuous series of phase envelopes using the phase envelopes. A related system includes a drill string, a fluid sampling system, and a processor that estimates a PVT parameter indicative of an in-situ condition of the subsurface formation, determines at least two phase envelopes at different depths using the PVT parameter, and creates the phase envelope log.Type: GrantFiled: August 16, 2016Date of Patent: March 24, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Svenja Erdmann, Stefan Wessling, Nicklas J. Ritzmann, Oliver Mohnke, Holger F. Thern
-
Patent number: 10598772Abstract: The present invention achieves a sensor that can be used more efficiently than before. The sensor (1) includes: an operator (11) that accepts a mechanical operation of a user, and generates an operation input value corresponding to the operation; a communication portion (12) that receives a communication input value; and a CPU (14) that changes sensitivity of the sensor (1) according to a later input one of the operation input value and the communication input value.Type: GrantFiled: December 15, 2016Date of Patent: March 24, 2020Assignee: OMRON CorporationInventors: Ryosuke Tsuzuki, Koyo Ozaki, Shoichi Ohnaka, Hikaru Arita
-
Patent number: 10578433Abstract: To eliminate influences of unnecessary reflected light other than a liquid surface in a liquid surface reflection type inclination sensor. In order to attain the object described above, an inclination sensor includes a liquid that forms a liquid surface, an illumination section, a barcode pattern to be illuminated by the illumination section, an optical system that projects the barcode pattern on the liquid surface, a light receiving element that detects the barcode pattern, a storage section that stores a detection image when the liquid surface is removed from an optical path of the optical system, and an arithmetic section that calculates an inclination angle by subtracting the detection image when the liquid surface is removed from a detection image when the liquid surface is present on the optical path of the optical system.Type: GrantFiled: September 28, 2017Date of Patent: March 3, 2020Assignee: TOPCON CORPORATIONInventors: Satoshi Yanobe, Hideyuki Matsumoto
-
Patent number: 10571515Abstract: It is determined that a guard band frequency for a first processor is to be determined. The guard band frequency is associated with a first system configuration. A validation start frequency is determined based, at least in part, on data associated with at least one of the first processor or a second processor. The validation start frequency is between a nominal operating frequency for the first processor and a system maximum operating frequency for the first processor. A guard band frequency for the second processor was previously determined. The guard band frequency for the first processor is determined based, at least in part, on the validation start frequency.Type: GrantFiled: October 3, 2014Date of Patent: February 25, 2020Assignee: International Business Machines CorporationInventors: Robert W. Berry, Jr., Diyanesh B. Chinnakkonda, Prasanna Jayaraman, Tony E. Sawan
-
Patent number: 10571583Abstract: Methods of acquiring and processing seismic data using derivative sensors, such as strain sensors, that facilitate ground roll noise attenuation with seismic interferometry are disclosed. The methods use both seismic data and their spatial derivatives in computing ground-roll noises which are removed from processed seismic data.Type: GrantFiled: March 30, 2012Date of Patent: February 25, 2020Assignee: WESTERNGECO L.L.C.Inventors: David Fraser Halliday, Julian Edward Kragh, Filippo Broggini
-
Patent number: 10561365Abstract: A system for behavioral monitoring for equines, comprising at least one sensor to measure a signal related to the equine, a database to store at least one parameter of the equine as a function of time, and processing means. The sensor is in communication with the equine, and comprises a wireless transmitter which is in communication with the database. The processing means, in communication with the database, is adapted to (i) determine, from at least one signal from the at least one sensor, at least one parameter of the equine as a function of time; (ii) establish normal behavior of the equine based on the parameter; and (iii) identify at least one abnormal behavior of the equine by identifying at least one deviation from normal behavior.Type: GrantFiled: November 30, 2014Date of Patent: February 18, 2020Assignee: SCR ENGINEERS LTDInventor: Elizabeth Newman
-
Patent number: 10554049Abstract: Techniques are described for disaggregation of renewable energy generation on an electricity distribution system. Aggregate power measurements are identified a distribution substation. Active power load of the distribution substation and active power generated by renewable energy sites can be disaggregated from the aggregate power measurements.Type: GrantFiled: March 20, 2017Date of Patent: February 4, 2020Assignee: THE REGENTS OF THE UNIVERSITY OF CALIFORNIAInventors: Emma Mary Stewart, Ciaran Martin Roberts, Emre can Kara, Michaelangelo David Tabone
-
Patent number: 10551430Abstract: A system for diagnosing circuit protection device field issues includes a remote computer system and a diagnostic circuit protection device installed at a customer location, wherein the circuit protection device includes a processor configured to execute a number of routines, a plurality of sensors structured to sense power circuit information, a memory accessible by the processor, and a communications module coupled to the non-volatile memory. The routines are structured to input sensed power circuit information and determine trip information for one or more trip cycles and cause the stored power circuit information and trip information to be transmitted to the remote computer system by the communications module over a network for storage and subsequent access for diagnostic purposes.Type: GrantFiled: March 27, 2019Date of Patent: February 4, 2020Assignee: EATON INTELLIGENT POWER LIMITEDInventors: Kevin Lynn Parker, David Austin Eldridge, Christopher Stuart
-
Patent number: 10539520Abstract: Provided is a sample-analyzing system used for identifying a target sample from its measurement data obtained using a plurality of analyzing devices including at least one device selected from a fluorescent X-ray analyzer, atomic absorption photometer and inductively coupled plasma emission analyzer as well as at least one device selected from an infrared spectrophotometer and Raman spectrophotometer.Type: GrantFiled: April 11, 2017Date of Patent: January 21, 2020Assignee: SHIMADZU CORPORATIONInventor: Sachio Murakami
-
Patent number: 10533889Abstract: A method for limit level monitoring with a radiometric limit switch. A detector measures discrete radiation intensities. Statistical distributions of radiation intensities in a state, free of medium, and in a state, covered by medium, are given by two Poisson distributions.Type: GrantFiled: June 20, 2011Date of Patent: January 14, 2020Assignee: ENDRESS+HAUSER SE+CO.KGInventors: Simon Weidenbruch, Hartmut Damm, Mingzheng Jiang, Robert Schäuble
-
Patent number: 10508535Abstract: A method for drilling a wellbore includes drilling a well along a path substantially along a bedding direction of a selected subsurface formation having at least one substantially vertical fracture therein. A direction of the at least one substantially vertical fracture is determined with respect to a direction of the prior to drilling therethrough. A direction of the path is adjusted so that the well will intersect the at least one substantially vertical fracture substantially perpendicularly to the direction.Type: GrantFiled: October 30, 2014Date of Patent: December 17, 2019Assignee: SCHLUMBERGER TECHNOLOGY CORPORATIONInventor: Peter T. Wu
-
Patent number: 10509124Abstract: A method for estimating a time of flight of an acoustic signal in a hot gas flow path having background noise wherein a plurality of transceivers each generate an acoustic signal. The method includes providing an acoustic signal of interest that travels in a direction opposite a reference acoustic signal on a first acoustic path between a pair of transceivers. The method also includes identifying at least one minimum peak height in the acoustic signal of interest having a peak height that is greater than the background noise. Further, the method includes obtaining time of flight information of other acoustic paths having substantially the same path length as the first path to provide a range of time of flights wherein a time of flight that falls within the time of flight range and is associated with a minimum peak height forms the estimated time of flight.Type: GrantFiled: March 1, 2016Date of Patent: December 17, 2019Assignee: SIEMENS ENERGY, INC.Inventors: Upul P. DeSilva, Heiko Claussen, Karthik Ragunathan
-
Patent number: 10488384Abstract: A system and method for evaluating power transformers is disclosed. The method includes the steps of acquiring data representing one or more parameters of a power transformer, using rules to derive one or more broad physical conditions of the power transformer from the acquired data, and using the broad physical conditions as inputs to compute a plurality of indices. Each index represents a category of failure mechanisms of the power transformer. The method further includes the steps of using the plurality of indices to determine a corrective action and performing the corrective action on the power transformer.Type: GrantFiled: November 6, 2014Date of Patent: November 26, 2019Assignee: ELECTRIC POWER RESEARCH INSTITUTE, INC.Inventors: Bhavin N. Desai, Timothy Raymond