Arrangement and method for calibrating high-voltage electronics
High-voltage electronics have a plurality of electronics modules connected in series between terminals of the high-voltage electronics. A system for calibrating the high-voltage electronics includes: a plurality of controllable module switches, wherein for each respective electronics module of the plurality of electronics modules, a respective controllable module switch is configured to shunt the respective electronics module by its closing. The plurality of controllable module switches are configured to be actuated such that: in a first state of the plurality of controllable module switches, no electronics modules are connected to the terminals; in a second state of the plurality of controllable module switches, one electronics module is connected to the terminals; and in a third state of the plurality of controllable module switches, multiple electronics modules are connected to the terminals.
1 . A system for calibrating high-voltage electronics, wherein the high-voltage electronics have a plurality of electronics modules connected in series between terminals of the high-voltage electronics, wherein the system comprises:
a plurality of controllable module switches, wherein for each respective electronics module of the plurality of electronics modules, a respective controllable module switch is configured to shunt the respective electronics module by its closing;
wherein the plurality of controllable module switches are configured to be actuated such that:
in a first state of the plurality of controllable module switches, no electronics modules are connected to the terminals;
in a second state of the plurality of controllable module switches, one electronics module is connected to the terminals; and
in a third state of the plurality of controllable module switches, multiple electronics modules are connected to the terminals;
wherein the high-voltage electronics comprise a battery emulator configured to emulate a high-voltage battery with cells connected in series and to provide a voltage at the terminals of the high-voltage electronics, wherein the cells are the electronics modules:
wherein module current meters are assigned to the cells; and
wherein the system is configured to impress a constant measurement current on the battery emulator via a calibration standard and to make a current measured by a respective module current meter available for calibration.
2 . The system according to claim 1 , wherein the plurality of electronics modules are configured to be calibrated via the terminals.
3 . The system according to claim 1 , wherein the plurality of electronics modules are configured to be calibrated via the calibration standard, wherein the calibration standard has terminals connected to the terminals of the high-voltage electronics.
4 . The system according to claim 3 , further comprising:
a switching device via which the high-voltage electronics are connectable to the calibration standard, wherein the switching device has two connection switches via which respective terminals of the high-voltage electronics are connectable to respective terminals of the calibration standard.
5 . The system according to claim 4 , wherein the connection switches and/or the controllable module switches are electromechanical switches or semiconductor switches.
6 . The system according to claim 1 , wherein module voltage meters are further assigned to the cells.
7 . The system according to claim 6 , wherein the system is further configured to measure a voltage provided by respective cells to be calibrated, via respective module voltage meters of the cells to be calibrated and via the calibration standard, and to make the measured voltage available for calibration.
8 . A method for calibrating high-voltage electronics which have a plurality of electronics modules connected in series between terminals of the high-voltage electronics, wherein the method comprises:
providing, for each respective electronics module of the plurality of electronics modules, a respective controllable module switch; and
shunting one or more respective electronics modules by closing one or more respective controllable module switches, wherein, based on the shunting, no electronics modules, one electronics module, or multiple electronics modules are connected to the terminals of the high-voltage electronics;
wherein the high-voltage electronics comprise a battery emulator which emulates a high-voltage battery having several cells connected in series, wherein the cells are the electronics modules; and
wherein, for calibration of module voltage meters, a voltage provided by each of a plurality of to-be-calibrated cells is measured by a respective module voltage meter and by a calibration standard, and the measured voltages are made available for calibration.
9 . The method according to claim 8 , further comprising:
connecting to-be-calibrated electronics modules to the terminals of the high-voltage electronics.
10 . The method according to claim 8 , further comprising:
for calibration, connecting a first terminal of the calibration standard to a first electronics module and a second terminal of the calibration standard to a last electronics module.
11 . The method according to claim 10 , wherein the connection is made via a switching device.