Engine starting system for rotorcraft in flight
A rotorcraft engine starting system includes a starting system controller in communication with a flight control computer; an electric engine starter; an electronic engine controller in communication with the electric engine starter; an electrical power distributor; and a plurality of power sources coupled to the electrical power distributor; the starting system controller selecting at least one of the plurality of power sources and instructing the electrical power distributor to use the at least one of the plurality of power sources to power the electric engine starter.
1. A rotorcraft engine starting system comprising:
a starting system controller in communication with a flight control computer;
a first electric engine starter-generator for starting a first engine and a second electric engine starter-generator for starting a second engine;
an electrical power distributor; and
a plurality of power sources coupled to the electrical power distributor, the plurality of power sources including a power shaft generator mechanically coupled to an output shaft of the first engine and a main gearbox-mounted generator;
the starting system controller selecting at least one of the power shaft generator and the main gearbox-mounted generator and instructing the electric power distributor to use the at least one of the power shaft generator and the main gearbox-mounted generator to power the second electric engine starter-generator;
wherein when the rotorcraft is in flight and the first engine is running, the starting system controller selects the power shaft generator to power the second electric engine starter-generator;
wherein when the rotorcraft is in flight and the first engine is not running, the starting system controller selects the main gearbox-mounted generator to power the second electric engine starter-generator.
2. The rotorcraft engine starting system of claim 1 wherein:
the starting system controller determines if the rotorcraft is in flight or on the ground.
3. The rotorcraft engine starting system of claim 2 wherein:
the starting system controller determines if the first engine is running.
4. The rotorcraft engine starting system of claim 3 wherein:
when the rotorcraft is on the ground and the first engine is running, the starting system controller selects the power shaft generator to power the second electric engine starter-generator.
5. The rotorcraft engine starting system of claim 3 wherein:
when the rotorcraft is on the ground and the first engine is not running, the starting system controller selects at least one of DC ground power, AC ground power and a battery to power the second electric engine starter-generator.
6. The rotorcraft engine starting system of claim 1 wherein:
prior to selecting the power shaft generator, the starting system controller communicates with a vehicle health monitoring system to determine an ability to start the second engine.
7. The rotorcraft engine starting system of claim 1 wherein:
selecting the power shaft generator includes determining a priority of available power sources.
8. A rotorcraft comprising:
a first engine and a second engine;
a first electric engine starter-generator for starting the first engine and a second electric engine starter-generator for starting the second engine;
a main gearbox transferring force from to a rotor hub;
a flight control computer;
a starting system controller in communication with the flight control computer;
an electric power distributor; and
a plurality of power sources coupled to the electrical power distributor, the plurality of power sources including a power shaft generator mechanically coupled to an output shaft of the first engine and a main gearbox-mounted generator;
the starting system controller selecting at least one of the power shaft generator and the main gearbox-mounted generator to power the second electric engine starter-generator;
wherein when the rotorcraft is in flight and the first engine is running, the starting system controller selects the power shaft generator to power the second electric engine starter-generator;
wherein when the rotorcraft is in flight and the first engine is not running, the starting system controller selects the main gearbox-mounted generator to power the second electric engine starter-generator.
9. The rotorcraft of claim 8 wherein:
the starting system controller determines if the rotorcraft is in flight or on the ground, and selects the power shaft generator in response to the rotorcraft being in-flight or on the ground.
10. The rotorcraft of claim 9 wherein:
the starting system controller determines if the first engine is running.
11. The rotorcraft of claim 10 wherein:
when the rotorcraft is on the ground and the first engine is running, the starting system controller selects the power shaft generator to power the second electric engine starter-generator.
12. The rotorcraft of claim 10 wherein:
when the rotorcraft is on the ground and the first engine is not running, the starting system controller selects at least one of DC ground power, AC ground power and a battery to power the second electric engine starter-generator.
13. The rotorcraft of claim 8 wherein:
prior to selecting the power shaft generator, the starting system controller communicates with a vehicle health monitoring system to determine an ability to start the second engine.
14. The rotorcraft of claim 8 wherein:
selecting the power shaft generator includes determining a priority of available power sources.