G01D9/00

Technique for transmitting a measurement taken by a sensor
11788870 · 2023-10-17 · ·

A method for transmitting a measurement taken by a sensor at a current measurement instant, a measurement instant and a measurement forming a measurement point. The method includes: determining a threshold on the basis of measurement points that temporally precede the current measurement point in a collection window; when a slope of a straight line that runs through the current measurement point and the measurement point that immediately precedes it is higher than the threshold, transmitting the measurement upon expiry of a waiting time that corresponds to the minimum time interval between two successive measurement instants in the collection window; when the slope is lower than the threshold, transmitting the measurement upon expiry of a waiting time that corresponds to the maximum time interval between two successive measurement instants in the collection window.

DATA AGGREGATION SYSTEM

A method and a system for data aggregation for human beings is a single point for collection, aggregation, visualization, and selective distribution of quantitative and qualitative data. The quantitative and qualitative data pertains to various domains which include sports, education, music, healthcare, animal data and the like. The system provides development tools and assessment tools for each human being. The system also includes facilitating the plurality of human beings and a plurality of respective stake-holders to enter qualitative and quantitative information on a web-based platform, collecting the qualitative and quantitative information, analyzing the qualitative and quantitative information, aggregating and visualizing the qualitative and quantitative information, and selectively distributing the qualitative and quantitative information to the plurality of human beings and the plurality of stake-holders.

Sensor system

The present invention provides a sensor system with which a change in the state of a workpiece which has occurred in a conveyance process can be detennined. The sensor system comprises: a plurality of sensors positioned along a line and measuring data indicating that a workpiece being conveyed upon the line has passed thereby; a plurality of slave units respectively connected to the plurality of sensors and acquiring the data measured by the plurality of sensors; and a master unit connected to the plurality of slave units. The master unit comprises: a storage part for storing the data in association with information which relates to the timing at which the data was measured; and a determination part for comparing the data transmitted from two or more of the plurality of slave units using the information which relates to the timing, and determining a change in the state of the workpiece.

Method, system, and computer program product for producing accurate IEEE 1588 PTP timestamps in a system with variable PHY latency

Provided is a method for calculating a timestamp associated with a data packet before transcoding of the data packet. The method may include sampling a time of day (TOD) signal to provide a sampled TOD. A previously sampled TOD estimate may be retrieved. An internal TOD estimate may be determined based on the sampled TOD and the previously sampled TOD estimate. A timestamp may be determined based on the internal TOD estimate. A system and computer program product are also disclosed.

Information processing apparatus, control method, and storage medium

[Object] To provide an information processing apparatus, a control method and a storage medium through which emotional values of objects can be numerically expressed on the basis of an interaction between the objects. [Solution] An information processing system including: a detection unit that detects information related to an interaction between a first object and a second object; and a generation unit that is capable of generating an emotion value of the first object and an emotion value of the second object on the basis of the information related to the interaction.

METHODS, SYSTEMS, AND COMPUTER PROGRAM PRODUCTS FOR LOCATING AND TRACKING OBJECTS
20230010742 · 2023-01-12 ·

A system for locating and tracking an object is provided. The system includes a measuring device configured to determine a property of a paving-related material, a locating device configured to determine a location of the measuring device, a tracking system configured to store tracking information associated with the measuring device and one or more properties determined by the measuring device, and a communications system configured to transfer, to a remote device, the location of the measuring device and the tracking information associated with the measuring device.

MACHINE FAULT MODELLING

Systems, methods, non-transitory computer readable media can be configured to access a plurality of sensor logs corresponding to a first machine, each sensor log spanning at least a first period; access first computer readable logs corresponding to the first machine, each computer readable log spanning at least the first period, the computer readable logs comprising a maintenance log comprising a plurality of maintenance task objects, each maintenance task object comprising a time and a maintenance task type; determine a set of statistical metrics derived from the sensor logs; determine a set of log metrics derived from the computer readable logs; and determine, using a risk model that receives the statistical metrics and log metrics as inputs, fault probabilities or risk scores indicative of one or more fault types occurring in the first machine within a second period.

MACHINE FAULT MODELLING

Systems, methods, non-transitory computer readable media can be configured to access a plurality of sensor logs corresponding to a first machine, each sensor log spanning at least a first period; access first computer readable logs corresponding to the first machine, each computer readable log spanning at least the first period, the computer readable logs comprising a maintenance log comprising a plurality of maintenance task objects, each maintenance task object comprising a time and a maintenance task type; determine a set of statistical metrics derived from the sensor logs; determine a set of log metrics derived from the computer readable logs; and determine, using a risk model that receives the statistical metrics and log metrics as inputs, fault probabilities or risk scores indicative of one or more fault types occurring in the first machine within a second period.

BLOCKCHAIN CONTROLLED MULTI-CARRIER AUCTION SYSTEM FOR USAGE-BASED AUTO INSURANCE
20230008881 · 2023-01-12 ·

A system for generating and managing usage-based contracts using blockchains configured to (i) store an insurance contract for a currently occurring or upcoming trip, where the insurance contract is to insure the driver, passenger, and/or vehicle during the trip, where the insurance contract includes terms, conditions, or other clauses (e.g., mileage limitations, limitations on autonomous vehicle operation, etc.) and is in a blockchain structure, and where several nodes store copies of the insurance contract in the blockchain structure; (ii) receive, from the driver and/or (autonomous) vehicle, a requested modification of one or more terms, conditions, or other clauses of the insurance contract, (iii) transmit the requested modification to an insurance auction network, (iv) receive a response to the request from the insurance auction network; and (v) store the response in a new block in the insurance contract (e.g., a smart contract) to facilitate providing trip insurance in a transparent manner.

BLOCKCHAIN CONTROLLED MULTI-CARRIER AUCTION SYSTEM FOR USAGE-BASED AUTO INSURANCE
20230008881 · 2023-01-12 ·

A system for generating and managing usage-based contracts using blockchains configured to (i) store an insurance contract for a currently occurring or upcoming trip, where the insurance contract is to insure the driver, passenger, and/or vehicle during the trip, where the insurance contract includes terms, conditions, or other clauses (e.g., mileage limitations, limitations on autonomous vehicle operation, etc.) and is in a blockchain structure, and where several nodes store copies of the insurance contract in the blockchain structure; (ii) receive, from the driver and/or (autonomous) vehicle, a requested modification of one or more terms, conditions, or other clauses of the insurance contract, (iii) transmit the requested modification to an insurance auction network, (iv) receive a response to the request from the insurance auction network; and (v) store the response in a new block in the insurance contract (e.g., a smart contract) to facilitate providing trip insurance in a transparent manner.