H02H6/00

METHOD OF MONITORING AN ELECTRICAL MACHINE

A method of monitoring an electrical machine, wherein the method includes: a) obtaining temperature measurement values of the temperature at a plurality of locations of the electrical machine, b) obtaining estimated temperatures at the plurality of locations given by a thermal model of the electrical machine, the thermal model including initial weight parameter values, c) minimizing a difference between the temperature measurement values and the estimated temperatures by finding optimal weight parameter values, d) storing the initial weight parameter values to thereby obtain a storage of used weight parameter values, and updating the optimal weight parameter values as new initial weight parameter values, and repeating steps a)-d) over and over during operation of the electrical machine.

Thermal capacity control for relative temperature-based thermal shutdown

A device includes a relative temperature detector configured to determine a temperature difference between a device temperature sensed near a switch device and an ambient temperature sensed outside the switch device. The relative temperature detector is configured to generate a relative temperature output signal based on comparing the temperature difference to a relative temperature threshold. A power detector is configured to generate a power level signal based on comparing an indication of switch power of the switch device to a power threshold. The power level signal specifies whether the indication of switch power is above or below the power threshold. A thermal capacity control is configured to disable the switch device based on the power level signal specifying that the indication of switch power is above the power threshold and based on the relative temperature output signal indicating the temperature difference is above the relative temperature threshold.

SMART ELECTRONICALLY RESETTABLE FUSE

Examples described herein provide a computer-implemented method that includes monitoring, using a microcontroller, an electric circuit of a vehicle, the electric comprising a battery source and a load. The battery source supplies electric power to the load. The method further includes detecting, using the microcontroller, a high current event in the electric circuit by comparing a current level of a current flowing through the electric circuit to a time-based current threshold. The method further includes responsive to detecting the high current event, controlling a gate driver to cause a switch of an electronically resettable fuse to open the electric circuit to stop the flow of the current through the electric circuit.

Fast overcurrent detection in battery management system

Improved overcurrent detection and mitigation systems, methods, and techniques for a BMS are described herein. A BMS monitor may detect an overcurrent using two different techniques. The first technique may detect an overcurrent based on average power over different, overlapping time periods. The second technique may detect an overcurrent based on determining a modeled junction temperature of a switching device.

FAST OVERCURRENT DETECTION IN BATTERY MANAGEMENT SYSTEM
20220321114 · 2022-10-06 ·

Improved overcurrent detection and mitigation systems, methods, and techniques for a BMS are described herein. A BMS monitor may detect an overcurrent using two different techniques. The first technique may detect an overcurrent based on average power over different, overlapping time periods. The second technique may detect an overcurrent based on determining a modeled junction temperature of a switching device.

ACTIVE SURFACE PROTECTION FOR PORTABLE ELECTRONIC DEVICES
20170355507 · 2017-12-14 ·

A portable electronic device includes one or more bumpers that are operable to transition between a stowed position and a deployed position. In the deployed position, the bumpers may be proud of one or more surfaces of the portable electronic device that the bumpers are not proud of in the stowed position. The bumpers may protect the surfaces from impact when proud of those surfaces if the portable electronic device contacts a surface, such as when the portable electronic device is dropped. The bumpers may form portions of side corners or other portions of the portable electronic device in the stowed position. In transitioning from the stowed position to the deployed position, the bumpers may rotate and/or translate.

Infrared Thermal Monitoring System for Industrial Application
20220357207 · 2022-11-10 ·

A thermal monitoring system includes thermal monitoring devices that generate sensor data including thermal images depicting monitored elements (e.g. of an electrical switchgear system). The sensor data for all monitoring devices installed at a local deployment is collected by a gateway device, and relevant data from multiple local deployments is further aggregated by a cloud management system for further analysis. New event triggering rules determining how the thermal monitoring devices filter or record the sensor data are generated based on the aggregated data during a continuous learning process. The system detects patterns in the sensor data for the monitoring devices and/or local deployments as a whole and tracks deviations from these patterns, improving the accuracy of the event detection over time.

Control device for on-vehicle electric compressor
09806661 · 2017-10-31 · ·

A control device for an on-vehicle electric compressor controls and drives an electric motor arranged in the on-vehicle electric compressor. The control device includes a temperature acquisition unit, a current detector, a threshold current value setting unit, and a motor current controller. The temperature acquisition unit acquires a temperature of the control device. The current detector detects a motor current, which is current that flows through the electric motor. The threshold current value setting unit sets a threshold current value in accordance with the temperature of the control device acquired by the temperature acquisition unit. The motor current controller controls the motor current based on a detection result of the current detector so that the motor current becomes less than or equal to the threshold current value.

Method for operating an electrified motor vehicle and means for its implementation

A method and arrangement for operating a motor vehicle having a vehicle electrical system having a semiconductor switch, which during the vehicle operation is loaded with load events based on at least one load-influencing factor, and for which a service life load relationship is predefined, for a nominal service life for a nominal load, and with which for at least one point in time within the nominal service life a nominal load proportion corresponding to the at least one point in time is ascertainable, and the method for the at least one point in time including ascertaining an actual load of the semiconductor switch based on establishing past load events at the at least one point in time, the ascertaining of the nominal load proportion corresponding to the at least one point in time with the predefined service life load relationship, and comparing of the actual and nominal load proportion at the at least one point in time and the reducing of the at least one load-influencing factor when the actual load exceeds the nominal load proportion by more than a predefined tolerance value at the at least one point in time.

OPERATING METHOD OF A COMPRESSOR OF A REFRIGERATING MACHINE AND COMPRESSOR OF A REFRIGERATING MACHINE
20220049692 · 2022-02-17 ·

Operating method (10) for a compressor (101) of a refrigerating machine (100), said compressor (101) comprising an electric motor (102) and a power supply device (103) configured to modulate a supply voltage (V) and/or current (I) and/or frequency (F) for driving said electric motor (102), said method (10) being characterized in that it involves: —setting (A) a stator resistance calibration N value (Ro) and at least one threshold value (S1, S2, S3, S4) for a control parameter (R), said threshold value (S1, S2, S3, S4) being correlated to said calibration value (Ro); —injecting (B), continuously during operation of said electric motor (102), a disturbance signal (V1, I1) into said electric motor (102) by means of said power supply device (103), said disturbance signal (V1, I1) consisting of a disturbance of said supply voltage (V) and/or current (I); detecting (C) f by means of voltage and current measurements at the phases of said electric motor (102), a resulting voltage signal (V2) and a resulting current signal (I2), corresponding to said perturbation signal (V1, I1); —associating (D) with said control parameter (R) a value calculated as a function of said resulting voltage signal (V2) and a resulting current signal (I2); —regulating or interrupting (E) said supply voltage (V) and/or current (I) and/or frequency (F) depending on said control parameter (R) with respect to said at least one threshold value (S1, S2, S3, S4).