FIELD: turbines or turbomachines.
SUBSTANCE: invention relates to gas turbine power plants (GTP) and can be used in development or modernization of GTP automatic control system (ACS) operating in power system in case it is isolated completely or partially to insulated area. Technical problem consists in improvement of reliability of GTP operating in power system at its separation completely or partially to isolated area. Said technical result is achieved as a result of method of frequency correction of standard channel of gas turbine power plants, including steps of increasing the rate of the primary power of the gas turbine when the mains frequency deviates to the maximum permissible level for reliable operation of the power unit, through dead zone in frequency correction channel, which is part of combined speed/power control of gas turbine, difference of values of preset rotor speed n_set. is performed and current value of rotor n_cur., said difference is multiplied by 1, with switched frequency correction channel or by 0 with disconnected, obtained value of rotation frequency signal of rotor is added to simulate deviation of frequency n_im and divide by coefficient k for recalculation into relative units; in the gas turbine frequency correction channel the logic of the differentiating link is added, at which the received signal is supplied to the circuit of new logic, which calculates the difference between the current signal and the delayed signal with the help of an aperiodic link with parameter of 1 s, the received signal passes through the block of dead zone of the circuit of new logic and is multiplied by the coefficient of new logic K, the signal received as a result of this conversion is transmitted to the adder and further to the limiter of limit values.
EFFECT: technical result consists in improvement of reliability of maintenance of power units of steam and gas plant network frequency during isolation to isolated area.
6 cl, 5 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD FOR IMPLEMENTATION OF STATION-WIDE CONTROL LEVEL OF GAS TURBINE POWER STATIONS (GTPS) WITH GAS TURBINE POWER UNITS (GTPU) | 2020 |
|
RU2727539C1 |
METHOD FOR AUTOMATIC DETERMINATION OF FREQUENCY CHARACTERISTIC STEEPNESS OF AN ISOLATED POWER CONNECTION | 2020 |
|
RU2722642C1 |
AUTOMATIC EMERGENCY LOAD CONTROL SYSTEM IN ISOLATED POWER SYSTEM | 2020 |
|
RU2723544C1 |
DEVICE FOR DETECTING SOURCE OF FREQUENCY AND POWER OSCILLATIONS | 2020 |
|
RU2723543C1 |
METHOD AND SYSTEM OF AUTOMATIC REGULATION OF THE CCGT UNIT WITH FORCING IMPACT ON THE CONTROL VALVES OF HIGH AND MEDIUM PRESSURE OF THE STEAM TURBINE | 2017 |
|
RU2671659C1 |
METHOD OF AIR FLOW RATE CONTROL IN A COMPRESSOR OF GAS-TURBINE PLANTS OF A BINARY POWER UNIT AND DEVICE FOR IMPLEMENTATION THEREOF | 2015 |
|
RU2599079C1 |
POWER CONTROL METHOD OF COMBINED-CYCLE PLANTS AND APPARATUS FOR ITS IMPLEMENTATION | 2015 |
|
RU2601320C1 |
METHOD FOR ADJUSTMENT OF ROTATION FREQUENCY OF ROTOR OF JET HYDRAULIC TURBINE, AND PID-CONTROLLER OF ROTATION FREQUENCY OF HEAVY IMPACT | 2021 |
|
RU2781087C1 |
METHOD FOR AUTOMATIC CONTROL OF ROTOR ROTATION FREQUENCY OF SYNCHRONOUS GENERATOR AND CONTROLLER FOR ITS IMPLEMENTATION | 2023 |
|
RU2823536C1 |
METHOD FOR AUTOMATIC REGULATION OF VOLTAGE FREQUENCY, PROGRAMMING AND DISTRIBUTION OF ACTIVE LOAD BETWEEN DIFFERENT TYPES OF POWER SOURCES OF VESSEL | 2019 |
|
RU2753704C2 |
Authors
Dates
2020-07-07—Published
2020-04-08—Filed