Method and device for power regulation of an underwater power plant
Abstract
The invention concerns a method for the operation of an underwater power plant with a water turbine to take up kinetic energy from a surrounding flow; and an electrical generator coupled directly to the water turbine; characterized in that the power regulation in the generator mode is done by a control or regulation of the load moment produced by the electrical generator for a freely adjusting rpm speed of the water turbine, wherein the setpoint value of the load moment in a first, power-optimized operating range is established by a state controller and/or a search mechanism for the power maximum; and in a second, power-limited operating range the assigned load moment is chosen so that an operating point distant from the power optimum results for the water turbine.
Claims
exact text as granted — not AI-modified1 - 17 . (canceled)
18 . A method for the operation of an underwater power plant comprising:
a water turbine to take up kinetic energy from a surrounding flow; and an electrical generator coupled directly to the water turbine; wherein the power regulation in the generator mode is done by a control or regulation of a load moment produced by the electrical generator for a freely adjusting rpm speed of the water turbine; wherein the setpoint value of the load moment in a first, power-optimized operating range is established by a state controller and/or a search mechanism for the power maximum; and wherein in a second, power-limited operating range the assigned load moment is chosen so that an operating point distant from. the power optimum results for the water turbine.
19 . The method according to claim 18 , wherein the search mechanism for the power maximum comprises an MPP regulator, which determines a time-variable setpoint value for the load moment to maximize the output power of the electrical generator.
20 . The method according to claim 18 , wherein the working point in the second, power-limited operating range lies above the power-optimal speed.
21 . The method according to claim 18 , wherein a synchronous machine excited by permanent magnet is used as the electrical generator and the load moment is brought about by a regulation or control of the stator voltage in the 2-axis system of the synchronous machine.
22 . The method according to claim 18 , wherein a frequency converter is coordinated with the electrical generator, which serves to feed electric power into an interconnected grid with fixed frequency, the load moment of the electrical generator being set by the frequency converter.
23 . The method according to claim 22 , wherein the frequency converter comprises a converter at the generator side, an intermediate d.c. voltage circuit and a converter at the grid side, wherein the converters work independently of each other and the converter at the generator side sets the load moment at the electrical generator and the converter at the grid side stabilizes the voltage in the intermediate d.c. voltage circuit.
24 . The method according to claim 23 , wherein one forms the product of the intermediate circuit voltage and the load current in the intermediate d.c. voltage circuit to determine the output power of the electrical generator.
25 . The method according to claim 22 , wherein one forms the product of the generator moment and the generator speed by means of the converter at the generator side to determine the output power of the electrical generator.
26 . The method according to claim 18 , wherein the time-varying load moment has an oscillating load component.
27 . The method according to claim 18 , wherein, in a third operating range serving to activate the underwater power plant from standstill or idling operation, the water turbine is at first run up to speed in a startup phase and accelerated as far as the high-speed range before the transition to the first power-optimized operating range occurs.
28 . The method according to claim 27 , wherein, at the beginning of the startup phase, the water turbine is accelerated by means of the electrical generator in motor mode and upon passing a threshold value for the speed gradient the motor propulsion from the electrical generator ceases and the speed run-up is accomplished exclusively by the hydrodynamic moment taken up by the water turbine.
29 . The method according to claim 28 , wherein the startup phase is maintained for as long as it takes the speed gradient of the high-speed operation accomplished by the hydrodynamic moment to fall below a given minimum value, which is chosen such that the water turbine is brought close to the runaway speed.
30 . The method according to claim 29 , wherein the speed of the water turbine achieved at the end of the startup phase is used to determine a first estimated value for the power-optimal load moment.
31 . The method according to claim 18 , wherein the instance of a load moment chosen too high is diagnosed and then the load moment on the electrical generator is reduced abruptly.
32 . The method according to claim 18 , wherein the method in the first, power-optimized operating range shuts down the plant when the setpoint value of the load moment falls below a given minimum moment.
33 . A device for the power regulation of an underwater power plant, comprising:
a water turbine to take up kinetic energy from a surrounding flow; and an electrical generator coupled directly to the water turbine; wherein a state controller and/or a search mechanism for the power maximum is provided, which is connected to a frequency converter for the electrical generator and puts out a setpoint for a load moment at the electrical generator.
34 . The device according to claim 33 , wherein the search mechanism for the power maximum comprises an MPP regulator, which puts out a setpoint for the load moment, on which a time variation is imposed to maximize the output power of the electrical generator.Join the waitlist — get patent alerts
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