A system and method for generating power includes a motor assembly, an inertia-assisted, torque-enhanced gearbox, including a flywheel assembly and a clutch assembly, and a generator assembly. The motor assembly is used to drive the flywheel assembly up to the generator's designed operating speed. W
A system and method for generating power includes a motor assembly, an inertia-assisted, torque-enhanced gearbox, including a flywheel assembly and a clutch assembly, and a generator assembly. The motor assembly is used to drive the flywheel assembly up to the generator's designed operating speed. When the flywheel assembly reaches the generator operating speed, the clutch assembly engages and connects the flywheel assembly to the generator assembly. When the flywheel assembly is connected to the generator assembly, it supplies the generator with the starting torque required to start the generator. The motor assembly then supplies the torque necessary to operate the flywheel assembly and the generator assembly at the generator's designed operating speed. When the generator encounters peak loads, the flywheel assembly also supplies peak load torques to the generator assembly. The generator assembly is operable to supply power to a load connected to the generator assembly.
대표청구항▼
What is claimed is: 1. A system for generating power, comprising: a motor assembly; an inertia-assisted, torque-enhanced gearbox coupled to the motor assembly; and a generator assembly coupled to the inertia-assisted, torque-enhanced gearbox, wherein the inertia-assisted, torque-enhanced gearbox in
What is claimed is: 1. A system for generating power, comprising: a motor assembly; an inertia-assisted, torque-enhanced gearbox coupled to the motor assembly; and a generator assembly coupled to the inertia-assisted, torque-enhanced gearbox, wherein the inertia-assisted, torque-enhanced gearbox includes a first flywheel assembly coupled to the motor assembly, and a clutch assembly coupled to the first flywheel assembly and the generator assembly, and wherein the gearbox includes a second flywheel assembly coupled between the clutch assembly and the generator, said clutch assembly being disposed between said first flywheel assembly and said second flywheel assembly for enabling selective disengagement of said second flywheel assembly from said first flywheel assembly. 2. The system of claim 1, wherein: the motor assembly is operable to supply operating torque to the generator assembly; and the flywheel assemblies are operable to supply starting and peak load torques to the generator assembly. 3. The system of claim 2, wherein the gearbox includes: a third flywheel assembly coupled between the first flywheel assembly and the clutch assembly; and a speed decreaser coupled between the first flywheel assembly and the third flywheel assembly. 4. The system of claim 3, wherein the motor assembly includes a motor controller and the generator includes a generator controller. 5. The system of claim 4, wherein: the motor controller is a variable frequency drive; and the generator controller is a soft starter. 6. The system of claim 5, wherein the generator assembly includes a synchronous generator or an asynchronous generator. 7. A The system for generating power according to claim 1, further comprising: a speed increaser coupled to the motor assembly; said first flywheel assembly being coupled to the speed increaser; and a speed decreaser coupled to said first flywheel assembly. 8. The system of claim 7, wherein the speed increaser and the speed decreaser are gear trains having predetermined gear ratios. 9. The system of claim 8, wherein the speed increaser and the speed decreaser are multi-speed transmissions. 10. The system of claim 9, further including a third flywheel assembly coupled between the clutch assembly and the generator assembly. 11. The power generation system according to claim 1, further comprising: a battery pack connected to the motor assembly and the generator assembly, wherein said power generation system supplies power to one of a motorized vehicle and a marine vessel. 12. The system of claim 11, wherein: the motorized vehicle is an automobile; and the system further includes a wheel drive motor connected to the battery pack and a wheel assembly on the automobile. 13. The system of claim 11, wherein: the marine vessel is a boat; and the system further includes a propeller drive motor connected to the battery pack and a propeller on the boat. 14. A power generating system, comprising: a motor assembly; a speed increaser coupled to the motor assembly; a first flywheel assembly coupled to the speed increaser; a first clutch assembly coupled to the first flywheel assembly; a second flywheel assembly coupled to the first clutch assembly; a second clutch assembly coupled to the second flywheel assembly; a third flywheel assembly coupled to the second clutch assembly; a third clutch assembly coupled to the third flywheel assembly; a fourth flywheel assembly coupled to the third clutch assembly; a speed decreaser coupled to the fourth flywheel assembly; a fourth clutch assembly coupled to the speed decreaser assembly; and a generator assembly coupled to the fourth clutch assembly. 15. The system of claim 14, further including a fifth flywheel assembly coupled between the fourth clutch assembly and the generator assembly. 16. The system of claim 15, further including a sixth flywheel assembly coupled between the fourth clutch assembly and the speed decreaser. 17. The system of claim 16, wherein the speed increaser and the speed decreaser are gear trains having predetermined gear ratios. 18. The system of claim 17, wherein the speed increaser and the speed decreaser are multi-speed transmissions.
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이 특허에 인용된 특허 (13)
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