STORAGE UNIT FOR ELECTRICAL ENERGY, METHOD FOR MONITORING A STORAGE UNIT OF THIS KIND AND VEHICLE
20210118623 · 2021-04-22
Assignee
Inventors
Cpc classification
H01M10/4257
ELECTRICITY
H01M2010/4271
ELECTRICITY
H02H5/08
ELECTRICITY
Y02T30/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M2220/20
ELECTRICITY
H01M10/482
ELECTRICITY
International classification
H01G11/18
ELECTRICITY
H01M10/48
ELECTRICITY
Abstract
A frequency converter includes a storage element for storing electrical energy and a detector connected to the storage element and including a pressure sensor and a temperature sensor. The detector detects a physical variable hi immediate vicinity of the storage element and provides a signal in accordance with an electrical resistance of the detector when a predefinable change over time of the physical variable is exceeded, with the electrical resistance representing an output of the detector. A housing encloses or substantially encloses the detector and the storage element. Communicating with the detector is an evaluation facility to detect the predefinable change over time of the physical variable. The evaluation facility and/or the detector is/are connected to a higher-level security system designed to decouple and/or to divert the electrical energy from the storage element when the predefinable change over time of the physical variable is exceeded.
Claims
1-11. (canceled)
12. A frequency converter, comprising; a storage unit for electrical energy, said storage unit designed as an intermediate circuit capacitor and including a storage element for storing electrical energy; a detector operably connected to the storage element and including a pressure sensor and a temperature sensor, said detector configured to detect a physical variable in immediate vicinity of the storage element and to provide a signal in accordance with an electrical resistance of the detector when a predefinable change over time of the physical variable is exceeded, with the electrical resistance representing an output of the detector; a housing designed to enclose or substantially enclose the detector and the storage element; an evaluation facility communicating with the detector and configured to detect the predefinable change over time of the physical variable; and a higher-level security system designed as a fire protection system and connected to the evaluation facility and/or the detector, said higher-level security system designed to decouple and/or to divert the electrical energy from the storage element when the predefinable change over time of the physical variable is exceeded.
13. The frequency converter of claim 12, wherein the detector is integrated into the storage element.
14. The frequency converter of claim 12, further comprising a further detector configured to detect a further physical variable and connected to the higher-level security system, wherein the detector when the predefinable change over time is exceeded and the further detector when a predefinable value is exceeded or when a further predefinable change over time is exceeded each have a specified electrical resistance which is detected by the higher-level security system, and wherein the detector and the further detector are electrically connected in parallel.
15. The frequency converter of claim 14, wherein the further physical variable is a temperature.
16. A method for monitoring a frequency converter for a malfunction, in particular a short circuit, said method comprising: detecting by a detector a physical variable in an immediate vicinity of a storage element for storing electrical energy; generating a signal in accordance with an electrical resistance of the detector when a predefinable change over time of the physical variable is exceeded; detecting by a higher-level security system the electrical resistance; interrupting an energy supply of the storage element by the higher-level security system when the signal is received; and discharging the stored energy from the storage element in a controlled manner.
17. The method of claim 16, further comprising detecting by the detector an increase in pressure and/or temperature in the immediate vicinity of the storage element,
18. A vehicle, in particular rail vehicle, comprising a frequency converter, said frequency converter comprising a storage unit for electrical energy, said storage unit designed as an intermediate circuit capacitor and including a storage element for storing electrical energy, a detector operably connected to the storage element and including a pressure sensor and a temperature sensor, said detector configured to detect a physical variable in immediate vicinity of the storage element and to provide a signal when a predefinable change over time of the physical variable is exceeded, wherein the signal is designed in accordance with an electrical resistance of the detector, with the electrical resistance representing an output of the detector, a housing designed to enclose or substantially enclose the detector and the storage element, an evaluation facility communicating with the detector and configured to detect the predefinable change over time of the physical variable, and a higher-level security system designed as a fire protection system and connected to the evaluation facility and/or the detector, said higher-level security system designed to decouple and/or to divert the electrical energy from the storage element when the predefinable change over time of the physical variable is exceeded.
19. The vehicle of claim 18, wherein the detector is integrated into the storage element,
20. The vehicle of claim 19, wherein the frequency converter includes a further detector configured to detect a further physical variable and connected to the higher-level security system, wherein the detector when the predefinable change over time is exceeded and the further detector when a predefinable value is exceeded or when a further predefinable change over time is exceeded each have a specified electrical resistance which is detected by the higher-level security system, and wherein the detector and the further detector are electrically connected in parallel.
21. The vehicle of claim 20, wherein the further physical variable is a temperature.
Description
[0091] The figures show:
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[0098] The means 3 for detecting the physical variable can be designed as a pressure sensor and/or as a temperature sensor. A fastening means 5 is used for fastening the means 3 for detecting the physical variable. The means 3 for detecting the physical variable can also be integrated into the storage element 1, as shown hereinafter.
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[0103] The embodiment shown is preferably arranged in an enclosed housing 11 or an essentially enclosed housing 11.
[0104] In summary, the invention relates to a storage unit 11 for electrical energy and a method for monitoring a storage unit of this kind 11. The storage unit 11 has at least one storage element 1 for the short-term storage of electrical energy, for example a rechargeable battery or a capacitor. A means 3 for detecting physical variables, in particular a pressure p or temperature T, in the immediate vicinity of the storage element 1 is assigned to the storage element 1, wherein the means 3 is designed to detect the physical variable, in particular to detect a change over time of the physical variable, wherein the means 3 for detecting the physical variable is designed to provide a signal when a predefinable change over time of the physical variable is exceeded. Use in an intermediate circuit capacitor in a rail vehicle is one advantageous use of the invention.