IP Library Granted Patent US 11,465,515
Granted Patent B2
US 11,465,515 · App. 15/720,449 · Granted Oct 11, 2022

Vehicle comprising an electricity supply system

Inventors: Konrad Steindorff (Braunschweig, DE); Stefan Schrank (Einbeck, DE)
Assignee: Alstom Transport Technologies
B60L50/72B60L1/06B60L58/33B60L58/34H01M8/04007H01M8/04029H01M8/04164H01M8/04201H01M8/04619H01M8/2475B60K2001/0455B60L2200/26B60L2240/34B60L2240/36H01M8/249H01M2250/20H01M2250/405Y02B90/10Y02P70/50Y02T90/40
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Quick Facts
Patent No.
US 11,465,515
App. No.
15/720,449
Granted
Oct 11, 2022
Kind
B2
Abstract

The invention concerns a vehicle comprising an electricity production unit configured for generating an electrical current, a transformer unit and a fuel storage unit, the production unit comprising at least two fuel cell stacks and a single first electrical connection interface for transmitting the electrical current to the transformer unit. The production unit further comprises a single cooling circuit, an air supply circuit and a single gaseous hydrogen supply circuit for supplying gaseous hydrogen, from the fuel storage unit, to each fuel cell stack. The production unit is separate from the fuel storage unit and connected to the fuel storage unit by a single connection interface, the production unit being removable from the vehicle as an integrated unit independently from the fuel storage unit.

Claims (43)

1. A vehicle comprising an electricity supply system, the electricity supply system comprising:

an electricity production unit generating a first voltage configured to cause a first electrical current to flow;

a transformer unit and a fuel storage unit storing gaseous hydrogen;

wherein the electricity production unit comprises:

at least two fuel cell stacks and comprising a single first electrical connection interface configured to transmit the first electrical current to the transformer unit,

a single common cooling circuit filled with a first fluid cooling each fuel cell stack, and

a common air supply circuit supplying air to each fuel cell stack and a single common gaseous hydrogen supply circuit supplying gaseous hydrogen, from the fuel storage unit, to each fuel cell stack,

wherein the electricity production unit is separate from the fuel storage unit and connected to the fuel storage unit by a single connection interface, and

wherein the electricity production unit being removable from the vehicle as an integrated unit independently from the fuel storage unit,

wherein the vehicle comprises a fluid circulation circuit filled with a second fluid, the fluid circulation circuit being fluidically independent from the cooling circuit and the electricity production unit comprises a first thermal exchanger exchanging heat between the first fluid and the second fluid, and

wherein the electricity production unit further comprising a separable interface configured to transmit the second fluid between the first thermal exchanger and the fluid circulation circuit, the separable interface being configured to physically separate the first thermal exchanger from the fluid circulation circuit when removing the electricity production unit from the vehicle.

2. The vehicle according to claim 1 , wherein the fluid circulation circuit heats a passenger compartment of the vehicle.

3. The vehicle according to claim 1 , wherein the cooling circuit further comprises a second thermal exchanger exchanging heat between the first fluid and air.

4. The vehicle according to claim 1 , wherein the electricity production unit comprises a common exhaust circuit collecting exhaust gases of each fuel cell stacks, the exhaust circuit comprising a water condenser extracting liquid water from the exhaust gases.

5. The vehicle according to claim 1 , wherein the electricity production unit comprises a single common heater heating all fuel stacks.

6. The vehicle according to claim 1 , wherein the transformer unit is configured to generate, from the first current, at least a second voltage different from the first voltage and a third voltage different from the second voltage and the first voltage, the second voltage configured to cause a second current to flow and the third voltage configured to cause a third current to flow, the electricity production unit being removable from the electric vehicle independently from the transformer unit and comprising a second electrical connection interface configured to transmit the second current from the transformer unit to the electricity production unit and a third electrical connection interface configured to transmit the third current from the transformer unit to the electricity production unit.

7. The vehicle according to claim 6 , wherein the second current is an AC current driving at least the cooling circuit and the third current is a DC current.

8. The vehicle according to claim 1 , wherein the vehicle is an electrical vehicle comprising an electrical motor, the electricity supply system further comprising at least an electrical accumulator generating a driving electrical current for driving the motor, the transformer unit generating, from the first current, a charging electrical current charging the accumulator.

9. The vehicle according to claim 1 , wherein the cooling circuit comprises a fluid circulator circulating the first fluid and each fuel cell stack comprises a commuting device electrically connecting the fuel cell stack to the first electrical interface, the production unit further comprising a controller unit controlling the fluid circulator and each commuting device.

10. A vehicle comprising an electricity supply system, the electricity supply system comprising:

an electricity production unit generating a first voltage configured to cause a first electrical current to flow;

a transformer unit and a fuel storage unit storing gaseous hydrogen;

wherein the electricity production unit comprises:

at least two fuel cell stacks and comprising a single first electrical connection interface configured to transmit the first electrical current to the transformer unit;

a single common cooling circuit filled with a first fluid cooling each fuel cell stack,

a common air supply circuit supplying air to each fuel cell stack and a single common gaseous hydrogen supply circuit supplying gaseous hydrogen, from the fuel storage unit, to each fuel cell stack, and

wherein the electricity production unit is separate from the fuel storage unit and connected to the fuel storage unit by a single connection interface,

wherein the electricity production unit being removable from the vehicle as an integrated unit independently from the fuel storage unit, and

wherein when the electricity production unit is removed from the vehicle, a relative movement of each of elements comprised in the electricity production unit with respect to the vehicle is identical and simultaneous to a movement of each other element comprised in the electricity production unit,

wherein the vehicle comprises a fluid circulation circuit filled with a second fluid, the fluid circulation circuit being fluidically independent from the cooling circuit and the electricity production unit comprises a first thermal exchanger exchanging heat between the first fluid and the second fluid, and

wherein the electricity production unit further comprising a separable interface configured to transmit the second fluid between the first thermal exchanger and the fluid circulation circuit, the separable interface being configured to physically separate the first thermal exchanger from the fluid circulation circuit when removing the electricity production unit from the vehicle.

11. A vehicle comprising an electricity supply system, the electricity supply system comprising:

an electricity production unit generating a first voltage configured to cause a first electrical current to flow;

a transformer unit and a fuel storage unit storing gaseous hydrogen;

wherein the electricity production unit comprises:

at least two fuel cell stacks and comprising a single first electrical connection interface configured to transmit the first electrical current to the transformer unit;

a single common cooling circuit filled with a first fluid cooling each fuel cell stack,

a common air supply circuit supplying air to each fuel cell stack and a single common gaseous hydrogen supply circuit supplying gaseous hydrogen, from the fuel storage unit, to each fuel cell stack, and

wherein the electricity production unit is separate from the fuel storage unit and connected to the fuel storage unit by a single connection interface,

wherein the electricity production unit being removable from the vehicle as an integrated unit independently from the fuel storage unit,

wherein the vehicle comprises a fluid circulation circuit filled with a second fluid, the fluid circulation circuit being fluidically independent from the cooling circuit and the electricity production unit comprises a first thermal exchanger exchanging heat between the first fluid and the second fluid,

wherein the electricity production unit further comprising a separable interface configured to transmit the second fluid between the first thermal exchanger and the fluid circulation circuit, the separable interface being configured to physically separate the first thermal exchanger from the fluid circulation circuit when removing the electricity production unit from the vehicle,

wherein the transformer unit generates, from the first current, at least a second voltage different from the first voltage and a third voltage different from the second voltage and the first voltage, the second voltage configured to cause a second current to flow and the third voltage configured to cause a third current to flow, the electricity production unit being removable from the electric vehicle independently from the transformer unit and comprising a second electrical connection interface configured to transmit the second current from the transformer unit to the electricity production unit and a third electrical connection interface configured to transmit the third current from the transformer unit to the electricity production unit.

Assignments (2)
DISSOLUTION AND TRANSFER OF ASSETS Recorded Sep 3, 2024
From: ALSTOM TRANSPORT TECHNOLOGIES
To: ALSTOM HOLDINGS
Reel/Frame 068823/0899 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2017
From: STEINDORFF, KONRAD; SCHRANK, STEFAN
To: ALSTOM TRANSPORT TECHNOLOGIES
Reel/Frame 043778/0336 →
Priority Claims (1)
EP 16306286 · Sep 30, 2016 · regional
Continuity (1)
Related Publication 20180093586A1 · Apr 5, 2018