G01P15/02

DETERMINATION OF A MOBILITY CONTEXT FOR A USER CARRYING A DEVICE FITTED WITH INERTIAL SENSORS
20170343577 · 2017-11-30 ·

A method is provided for determining a mobility context for a user carrying a device fitted with inertial sensors. The method includes measuring inertial data from a set of inertial sensors of the device, taken at the time of execution of a reference gesture with the device, comparing the measured inertial data with prerecorded inertial data for various mobility contexts and for this reference gesture, and determining the mobility context according to the result of the comparison. A device and a server are also provided, which are capable of implementing the method described.

DETERMINATION OF A MOBILITY CONTEXT FOR A USER CARRYING A DEVICE FITTED WITH INERTIAL SENSORS
20170343577 · 2017-11-30 ·

A method is provided for determining a mobility context for a user carrying a device fitted with inertial sensors. The method includes measuring inertial data from a set of inertial sensors of the device, taken at the time of execution of a reference gesture with the device, comparing the measured inertial data with prerecorded inertial data for various mobility contexts and for this reference gesture, and determining the mobility context according to the result of the comparison. A device and a server are also provided, which are capable of implementing the method described.

Strain gauge and accelerometer measurement for thrust estimation
09829401 · 2017-11-28 · ·

An improved system, apparatus and method for estimating thrust from an engine, and more specifically, a system for estimating thrust from strain gauge and accelerometer measurements. At least one strain gauge is mounted on an engine mount to measure strain to estimate a constant velocity or steady-state portion of thrust. At least one accelerometer is mounted on the vehicle to measure acceleration to estimate a transient portion of thrust. Steady-state thrust estimation and transient thrust estimation are combined to estimate thrust from the engine. An algorithm provides steps for estimating thrust from strain gauge and accelerometer measurements.

Strain gauge and accelerometer measurement for thrust estimation
09829401 · 2017-11-28 · ·

An improved system, apparatus and method for estimating thrust from an engine, and more specifically, a system for estimating thrust from strain gauge and accelerometer measurements. At least one strain gauge is mounted on an engine mount to measure strain to estimate a constant velocity or steady-state portion of thrust. At least one accelerometer is mounted on the vehicle to measure acceleration to estimate a transient portion of thrust. Steady-state thrust estimation and transient thrust estimation are combined to estimate thrust from the engine. An algorithm provides steps for estimating thrust from strain gauge and accelerometer measurements.

TIRE IRREGULAR WEAR DETECTION SYSTEM AND METHOD
20230173852 · 2023-06-08 ·

An irregular wear detection system for a tire supporting a vehicle includes a sensor unit mounted on the tire. The sensor unit includes a footprint centerline length measurement sensor to measure a centerline length of a footprint of the tire. A processor is in electronic communication with the sensor unit and receives a plurality of measured centerline lengths over time. An analysis module is stored on the processor and receives the measured centerline lengths as inputs. The analysis module detects irregular wear of the tire from the measured footprint centerline lengths. An irregular wear determination is generated by the analysis module when the measured footprint centerline lengths remain the same or increase.

Systems and methods for determining contexts of mobile devices

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.

Systems and methods for determining contexts of mobile devices

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.

Reduced IMU power consumption in a wearable device
11262833 · 2022-03-01 · ·

Systems and methods for detecting touch events with an accelerometer are disclosed. In one aspect, a method includes measuring first accelerometer data at a first rate, detecting a first touch event based on the first accelerometer data, in response to detecting the first touch event, measuring second accelerometer data at a second rate, determining whether a second touch event is detected based on the second accelerometer data, measuring third accelerometer data at the first rate in response to an absence of the second touch event being detecting in the second accelerometer data over a predetermined threshold period of time.

Wearable electronic device accessory interface

Systems and methods are presented for establishing a communication link between two or more electronic devices. A portable eyewear electronic device is configured to communicate with a handheld electronic device, such as a ring, that in turn is retained by an accessory electronic device to establish a wired communication link. The accessory electronic device may be retained or housed by a second accessory electronic device, such as a remote control or wearable device.

Wearable electronic device accessory interface

Systems and methods are presented for establishing a communication link between two or more electronic devices. A portable eyewear electronic device is configured to communicate with a handheld electronic device, such as a ring, that in turn is retained by an accessory electronic device to establish a wired communication link. The accessory electronic device may be retained or housed by a second accessory electronic device, such as a remote control or wearable device.