IP Library Granted Patent US 12671242
Granted Patent B2
US 12671242 · App. 18/738,641 · Granted Jun 30, 2026

Power protection system

Inventors: Chandana Gajanayake (Singapore, SG); Anh Vu Ho (Singapore, SG); Mohamed Sathik Mohamed Halick (Singapore, SG)
Assignee: Rolls-Royce Deutschland Ltd & Co KG
H02H3/26H02H1/0007
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Quick Facts
Patent No.
US 12671242
App. No.
18/738,641
Granted
Jun 30, 2026
Kind
B2
Abstract

A power protection system includes a first DC power source, a first load, a first power bus connecting the first power source and the first load, and a first solid state circuit breaker circuit integrated in the first power bus. The first solid state circuit breaker circuit includes a first semiconductor switch, a first capacitor arranged between the high side voltage rail and the low side voltage rail closer to the power source or to the load than the semiconductor switch, and a first inductor located such that current generated by the first capacitor when unloading in case of a short circuit at the power source or at the load passes the first inductor. The controller is configured to measure a voltage change over the first inductor and trigger an actuation signal for the first semiconductor switch if a voltage change surpasses a predetermined threshold voltage.

Claims (38)

1 . A power protection system comprising:

a first direct current (DC) power source having a positive terminal and a negative terminal;

a first load;

a first power bus connecting the first DC power source and the first load, wherein the first power bus comprises a high side voltage rail connected to the positive terminal and a low side voltage rail connected to the negative terminal;

a first solid state circuit breaker circuit integrated in the first power bus; and

a second solid state circuit breaker circuit,

wherein the first solid state circuit breaker circuit is located at a power source side and the second solid state circuit breaker circuit is arranged at a load side of the power protection system,

wherein the first solid state circuit breaker circuit comprises:

a first semiconductor switch arranged in the high side voltage rail or in the low side voltage rail and configured to be controlled by a controller;

a first capacitor arranged between the high side voltage rail and the low side voltage rail, wherein the first capacitor is arranged between the high side voltage rail and the low side voltage rail closer to the power source or to the first load than the first semiconductor switch, and wherein a terminal of the first capacitor is arranged between the first semiconductor switch and the power source or between the first semiconductor switch and the first load; and

a first inductor in the high side voltage rail or the low side voltage rail, wherein the first inductor is positioned such that current generated by the first capacitor when unloading in case of a short circuit at the power source or at the first load passes the first inductor,

wherein the controller is configured to measure a voltage change over the first inductor and trigger an actuation signal for the first semiconductor switch when the voltage change over the first inductor surpasses a predetermined threshold voltage, and

wherein the second solid state circuit breaker circuit comprises a second semiconductor switch, a second capacitor, and a second inductor.

2 . The power protection system of claim 1 , wherein a first bypass diode is arranged in parallel to the first capacitor between the high side voltage rail and the low side voltage rail in a blocking direction.

3 . The power protection system of claim 1 , wherein the first solid state circuit breaker circuit has a bidirectional conductivity and blocking capability.

4 . The power protection system of claim 1 , wherein the first solid state circuit breaker circuit has a unidirectional conductivity and blocking capability.

5 . The power protection system of claim 1 , wherein the first semiconductor switch comprises a transistor and a bypass diode in antiparallel to the transistor, and

wherein the transistor is a metal-oxide-semiconductor field-effect transistor (MOSFET), an insulated-gate bipolar transistor (IGBT), a Gallium Nitride (GaN) transistor, or a Silicon carbide (SiC) transistor.

6 . The power protection system of claim 1 , wherein a transient voltage suppressor device is arranged in parallel to the first semiconductor switch.

7 . The power protection system of claim 1 , wherein at least one mechanical contactor is arranged in series with a solid state circuit breaker circuit of the power protection system.

8 . The power protection system of claim 1 , wherein the first load comprises a capacitive load arranged in parallel with the first capacitor, and

wherein the capacitive load, the first capacitor, and the first inductor form a third order filter.

9 . The power protection system of claim 1 , wherein the controller is configured to measure a voltage over the first inductor, and

wherein the controller is configured turn the first semiconductor switch off when the measured voltage is larger than the predetermined threshold voltage.

10 . The power protection system of claim 1 , further comprising:

a second DC power source having a positive terminal and a negative terminal;

a second load; and

a second power bus connecting the second DC power source and the second load, wherein the second power bus comprises a high side voltage rail connected to a respective positive terminal and a low side voltage rail connected to a respective negative terminal of a respective power source,

wherein the first and second solid state circuit breaker circuits are integrated in the first power bus and a third and a fourth solid state circuit breaker circuit are integrated into the second power bus,

wherein the high side voltage rail of the first power bus and the high side voltage rail of the second power bus are connected, and

wherein the low side voltage rail of the first power bus and the low side voltage rail of the second power bus are connected.

11 . The power protection system of claim 10 , further comprising:

a middle capacitor arranged between the high side voltage rail and the low side voltage rail,

wherein the middle capacitor is arranged between the first solid state circuit breaker circuit located at the power source side and the second solid state circuit breaker circuit located at the load side.

12 . The power protection system of claim 10 , wherein each inductor is associated with a corresponding controller,

wherein each controller is configured to receive an inductor voltage measurement and provide a gate signal to a respective semiconductor switch.

13 . The power protection system of claim 1 , wherein the first load is an inverter.

14 . The power protection system of claim 1 , wherein the first capacitor is sized such that a capacitance of the first capacitor is smaller than a capacitance of a capacitive load.