Patents by Inventor Michael Dormody

Michael Dormody has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11722593
    Abstract: Determining one or more heights of one or more mobile devices above surfaces. Particular embodiments described herein include machines that retrieve first data (e.g., measurement value(s) determined by sensor(s) of a mobile device or estimated position(s) of the mobile device), determine a location context based on the first data, identify second data (e.g., measurement value(s) determined by sensor(s) of the mobile device or status indicator value(s) of feature(s) of the mobile device) to retrieve for use in determining an estimated height above a surface at which the mobile device is located based on the determined location context, retrieve the second data, and determine an estimated height above a surface at which the mobile device is located based on the retrieved second data.
    Type: Grant
    Filed: December 2, 2021
    Date of Patent: August 8, 2023
    Assignee: NextNav, LLC
    Inventors: William Alberth, Michael Dormody
  • Publication number: 20230221203
    Abstract: An alert indicates that a situation conducive to calibrating a barometric pressure sensor of the user device might have occurred. In response, calibration data is collected for calibrating the barometric pressure sensor. The calibration data is used to perform a calibration process and generate a calibration value for the barometric pressure sensor.
    Type: Application
    Filed: January 10, 2023
    Publication date: July 13, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Deepak Joseph, Badrinath NAGARAJAN, Arun RAGHUPATHY, Frank Yenshaw
  • Publication number: 20230221144
    Abstract: A method involves identifying multiple calibration values and corresponding calibration confidence values of an initial calibration dataset in which one or more calibration values were derived using an atmospheric pressure measurement from a barometric air pressure sensor of a mobile device. A calibration metric is determined for each calibration value. One or more of the calibration values are filtered out from the initial calibration dataset based on the calibration metric to generate a filtered calibration dataset. A filtered calibration value is determined using the filtered calibration dataset. The barometric air pressure sensor of the mobile device is calibrated using the filtered calibration value.
    Type: Application
    Filed: January 6, 2023
    Publication date: July 13, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Guiyuan HAN, Badrinath NAGARAJAN, Arun RAGHUPATHY
  • Patent number: 11674798
    Abstract: Determining calibration values for atmospheric sensors that provide measured pressures used for estimating altitudes of mobile devices. Particular systems and methods determine if any uncalibrated reference-level pressure estimates associated with an unstable pressure sensor should not be used when calibrating the unstable pressure sensor, and calibrate the unstable pressure sensor using all of the uncalibrated reference-level pressure estimates except any uncalibrated reference-level pressure estimate that should not be used when calibrating the unstable pressure sensor.
    Type: Grant
    Filed: February 12, 2021
    Date of Patent: June 13, 2023
    Assignee: NextNav, LLC
    Inventors: Michael Dormody, Guiyuan Han, Badrinath Nagarajan
  • Patent number: 11669170
    Abstract: Determining contexts of mobile devices. Particular embodiments described herein include machines that determine two estimated positions of a mobile device that respectively correspond to first and second locations at first and second times, acquire sets of terrain or structural information for first and second areas that respectively include the first and second estimated positions, use the acquired sets of information and the estimated positions to determine if the mobile device was near or within a structure at the first and second times, determine one or more values that are indicative of vertical movement by the mobile device during a period of time between the first time and the second time, compare the one or more values to one or more threshold conditions, and determine a context of the mobile device based on the comparison.
    Type: Grant
    Filed: December 17, 2021
    Date of Patent: June 6, 2023
    Assignee: NextNav, LLC
    Inventors: Michael Dormody, Arun Raghupathy, Badrinath Nagarajan, Guiyuan Han
  • Publication number: 20230160770
    Abstract: Multiple calibration results for calibrating a barometric pressure sensor based on data received from a device containing the sensor are determined and stored in a table. The table is updated based on rules regarding a relationship between each calibration result and a current calibration value. The calibration results are weighted and combined to determine a combined calibration result. The calibration value for calibrating the sensor is selected from the calibration results, the combined calibration results, or the current calibration value based on a selection criteria.
    Type: Application
    Filed: January 20, 2023
    Publication date: May 25, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Guiyuan HAN, Badrinath NAGARAJAN, Arun RAGHUPATHY
  • Publication number: 20230152489
    Abstract: Field calibration of a pressure device involves collecting simultaneous pressure data or pressure and temperature data at two devices for multiple time points. Pressure differences between pairs of simultaneous data points of the collected pressure data are calculated. A model is fitted to the pressure differences and the temperatures and/or pressures, and model parameters are used to correct measurements from the second device. Alternatively, a pressure gradient is estimated for a region that encompasses the two devices for each time point. A distance is determined between the two devices. A pressure gradient difference is determined between the two devices for each time point. A pressure difference offset is obtained for one of the pairs of simultaneous data points for each time point. An average pressure difference offset is determined between the two devices and is used to correct measurements from one of the devices.
    Type: Application
    Filed: November 7, 2022
    Publication date: May 18, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Guiyuan HAN, Badrinath NAGARAJAN, Wei LIU, Prashant DAVE, Arun RAGHUPATHY
  • Publication number: 20230152490
    Abstract: A method involves determining an estimated position of a mobile device within a region. Atmospheric data measurement stations are identified within the region. A geographical anomaly is identified within the region that physically intervenes between the mobile device and a first atmospheric data measurement station. Based on a positional relationship between the mobile device, the geographical anomaly, and the first atmospheric data measurement station, it is determined that atmospheric pressure measurements collected at the first atmospheric data measurement station should be conditionally used for determining a reference pressure estimate. The reference pressure estimate is determined using a plurality of atmospheric pressure measurements collected at the atmospheric data measurement stations and conditionally using the atmospheric pressure measurements collected at the first atmospheric data measurement station.
    Type: Application
    Filed: November 9, 2022
    Publication date: May 18, 2023
    Applicant: NextNav, LLC
    Inventors: Badrinath NAGARAJAN, Prashant DAVE, Michael DORMODY, Guiyuan HAN, Wei LIU
  • Publication number: 20230138050
    Abstract: A method to identify a problematic 2D position of a mobile device can include: determining a reported 2D position of the mobile device; determining a piece of information about the mobile device; and comparing the reported 2D position and the piece of information about the mobile device. Upon determining that the reported 2D position and the piece of information about the mobile device are consistent with each other, the reported 2D position of the mobile device is used as an estimate of the actual 2D position of the mobile device, or upon determining that the reported 2D position and the piece of information about the mobile device are not consistent with each other, the reported 2D position is determined to be problematic, and the reported 2D position of the mobile device is removed from a list of reported 2D positions of the mobile device.
    Type: Application
    Filed: October 29, 2021
    Publication date: May 4, 2023
    Applicant: NextNav, LLC
    Inventors: Guiyuan HAN, Michael DORMODY, Badrinath NAGARAJAN, Arun RAGHUPATHY
  • Publication number: 20230121848
    Abstract: Determining when an estimated altitude of a mobile device can be used for calibration or location determination. Particular systems and methods determine an area in which the mobile device is expected to reside, determine an altitude value of each section of a plurality of sections in the area, determine if the altitude values meet a threshold condition, and determine that the estimated altitude of the mobile device can be used for determining the position of the mobile device or for calibrating a pressure sensor of the mobile device when the altitude values meet the threshold condition.
    Type: Application
    Filed: December 19, 2022
    Publication date: April 20, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Guiyuan HAN, Badrinath NAGARAJAN
  • Publication number: 20230113234
    Abstract: Pressure-based estimation of a mobile device altitude or calibration of a pressure sensor involves machines that determine if a reference-level pressure value based on one or more measurements of pressure from a network of weather stations should or should not be used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device. If the reference-level pressure value should be used, the reference-level pressure value is used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device. If the reference-level pressure value should not be used, a trend in pressure is determined, an estimated reference-level pressure value based on the trend is determined, and the estimated reference-level pressure value is used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device.
    Type: Application
    Filed: November 23, 2022
    Publication date: April 13, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Badrinath NAGARAJAN, Guiyuan HAN
  • Publication number: 20230075640
    Abstract: A calculated current lapse rate is determined for a geographical area that includes a location of a mobile device. The calculated current lapse rate provides an estimated air temperature variation with respect to altitude variation for the location of the mobile device. An altitude of the mobile device is estimated. An uncertainty of the altitude of the mobile device is estimated based on a reference pressure and a reference temperature for a reference plane that is within the geographical area, a device pressure for the mobile device, and the calculated current lapse rate.
    Type: Application
    Filed: September 7, 2021
    Publication date: March 9, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Badrinath NAGARAJAN, Arun RAGHUPATHY, Guiyuan HAN
  • Patent number: 11579036
    Abstract: Multiple calibration results for calibrating a barometric pressure sensor based on data received from a device containing the sensor are determined and stored in a table. The table is updated based on rules regarding a relationship between each calibration result and a current calibration value. The calibration results are weighted and combined to determine a combined calibration result. The calibration value for calibrating the sensor is selected from the calibration results, the combined calibration results, or the current calibration value based on a selection criteria.
    Type: Grant
    Filed: April 20, 2022
    Date of Patent: February 14, 2023
    Assignee: NextNav, LLC
    Inventors: Michael Dormody, Guiyuan Han, Badrinath Nagarajan, Arun Raghupathy
  • Publication number: 20230028950
    Abstract: A wholistic activity context is used to determine whether to calibrate a barometric pressure sensor of a mobile device. A pair of activity transitions are determined from three activities of the mobile device. A time relationship and a position relationship between the activity transitions is determined. An opportunity to calibrate the barometric pressure sensor occurs between the activity transitions. A calibration of the barometric pressure sensor is performed in response to determining that the time relationship and the position relationship indicate that the wholistic activity context surrounding the opportunity to calibrate the barometric pressure sensor is conducive to calibration.
    Type: Application
    Filed: July 23, 2021
    Publication date: January 26, 2023
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Badrinath NAGARAJAN, Arun RAGHUPATHY, Guiyuan HAN
  • Publication number: 20230026200
    Abstract: Extending the spatial coverage of a reference pressure network. Particular embodiments described herein include machines that initially determine that an estimated position of a mobile device resides outside a coverage area of a network of reference pressure sensors. Reference-level pressures corresponding to reference pressure sensors of the network are determined using measurements of pressure from the network of reference pressure sensors. A pressure pattern for a region that includes the estimated position and an area not included in the coverage area of the network is determined using reference-level pressures that were not determined using measurements of pressure from the network of reference pressure sensors. The reference-level pressures corresponding to reference pressure sensors of the network and the pressure pattern are used to determine a reference-level pressure value for use in calibrating a pressure sensor of the mobile device or for use in estimating an altitude of the mobile device.
    Type: Application
    Filed: October 5, 2022
    Publication date: January 26, 2023
    Applicant: NextNav, LLC
    Inventors: Badrinath NAGARAJAN, Guiyuan HAN, Michael DORMODY
  • Patent number: 11555699
    Abstract: Determining when an estimated altitude of a mobile device can be used for calibration or location determination. Particular systems and methods determine an area in which the mobile device is expected to reside, determine an altitude value of each section of a plurality of sections in the area, determine if the altitude values meet a threshold condition, and determine that the estimated altitude of the mobile device can be used for determining the position of the mobile device or for calibrating a pressure sensor of the mobile device when the altitude values meet the threshold condition.
    Type: Grant
    Filed: March 26, 2019
    Date of Patent: January 17, 2023
    Assignee: NextNav, LLC
    Inventors: Michael Dormody, Guiyuan Han, Badrinath Nagarajan
  • Publication number: 20230003520
    Abstract: Estimating a difference in height between floors in a building for use in estimating a height or an altitude of one of the floors. A height difference is estimated between a first floor and a second floor based on outdoor temperatures of first and second time periods, an indoor temperature of the first or second time period, and first and second estimated differences in height between the first and second floors that is based on measurements of pressure from mobile devices when the mobile devices were on the first and second floors during the first and second time periods.
    Type: Application
    Filed: September 13, 2022
    Publication date: January 5, 2023
    Applicant: NextNav, LLC
    Inventors: Guiyuan HAN, Badrinath NAGARAJAN, Michael DORMODY
  • Patent number: 11536564
    Abstract: Pressure-based estimation of a mobile device altitude or calibration of a pressure sensor involves machines that determine if a reference-level pressure value based on one or more measurements of pressure from a network of weather stations should or should not be used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device. If reference-level pressure value should be used, the reference-level pressure value is used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device. If the reference-level pressure value should not be used, a trend in pressure is determined, an estimated reference-level pressure value based on the trend is determined, and the estimated reference-level pressure value is used to calibrate a pressure sensor of a mobile device or to estimate an altitude of the mobile device.
    Type: Grant
    Filed: May 7, 2019
    Date of Patent: December 27, 2022
    Assignee: NextNav, LLC
    Inventors: Michael Dormody, Badrinath Nagarajan, Guiyuan Han
  • Publication number: 20220377499
    Abstract: A method involves determining, at a mobile device or a service, an uncertainty in height above a reference altitude, an estimated 2D position of the mobile device, and an uncertainty in terrain height above the reference altitude using the estimated 2D position. An uncertainty in height above terrain, of the mobile device, is determined at the mobile device or a server using the uncertainty in height above the reference altitude and the uncertainty in terrain height above the reference altitude.
    Type: Application
    Filed: July 29, 2022
    Publication date: November 24, 2022
    Applicant: NextNav, LLC
    Inventors: Michael DORMODY, Badrinath NAGARAJAN, Guiyuan HAN, Arun RAGHUPATHY
  • Patent number: 11460298
    Abstract: Estimating a difference in height between two floors in a building for use in estimating a height or an altitude of one of the two floors. Particular embodiments estimate a height difference between a first floor and a second floor based on a first outdoor temperature of a first time period, a second outdoor temperature of a second time period, a third temperature that is based on an indoor temperature of the first time period or the second time period, a first estimated difference in height between the first and second floors that is based on measurements of pressure from mobile devices when those mobile devices were on the first and second floors during the first time period, and a second estimated difference in height between the first and second floors that is based on measurements of pressure from mobile devices when those mobile devices were on the first and second floors during the second time period.
    Type: Grant
    Filed: March 26, 2019
    Date of Patent: October 4, 2022
    Assignee: NextNav, LLC
    Inventors: Guiyuan Han, Badrinath Nagarajan, Michael Dormody