Large phase modifier start grid-connected control method

A control method and the technology of the regulator, which is applied in the direction of the starting device and the arrangement of single-network parallel feeding, etc., can solve the problems affecting the success rate of grid connection, the shock level, uncertainty and safety hazards of the regulator and the power grid, and reduce the Impact, the effect of ensuring the safety of equipment and power grid

Active Publication Date: 2017-06-13
STATE GRID CORP OF CHINA +1
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Problems solved by technology

[0005] This start-up grid-connection control method mainly relies on the energy stored in the rotating state of the condenser to provide power for boosting grid-connection. There are certain uncertainties and potential safety hazards in the process of starting the excitation and switching from the self-shunt excitation system to the grid.
Factors such as the time when the SFC is disconne

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  • Large phase modifier start grid-connected control method
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  • Large phase modifier start grid-connected control method

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Embodiment Construction

[0044] The technical solutions in the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the present invention.

[0045] like figure 1 As shown, the specific steps of one embodiment of the method for starting and grid-connecting the large-scale condenser of the present invention are as follows: first, close the SFC outlet to the stator outlet switch IPB of the condenser, close the starting excitation device (that is, the excitation regulator) to the rotor switch, and The rotor injects a certain amount of current to detect the initial position of the rotor. Then the SFC injects current into the stator of the condenser according to the detection results, and communicates with the excitation regulator to apply excitation current to the rotor of the condenser to control the two-phase stator winding that generates the maximum positive acceleration torque.

[0046] After start-up and during the low-speed operation of th...

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Abstract

The invention provides a large phase modifier start grid-connected control method, belongs to the technical field of motor controls. The method targets the problems that the large phase modifier when started is dragged by a SFC to a 105% rated speed then gets into the running down state, and boosted grid causes frequency difference and phase angle difference uncontrollable issues, and proposes a control strategy for controlling the SFC removal angle and excitation system at reclosing time, to maximally reduce phase modifier grid-connected impact on the device body and the system. The method can effectively solve the problem that under the condition of unit turning down, the switch of phase modifier start excitation and the self-shunt excitation exciting mode cause grid connecting process to be uncontrollable, the controllability of poor frequency and poor phase angle at grid connection is improved while success rate is ensured, and the impact problem caused by phase modifier grid connection is greatly reduced, the security stability and grid success rate of large phase modifier are improved, the method has significances on the security, efficiency and reliability of running large phase modifier.

Description

technical field [0001] The invention relates to the technical field of motor control, in particular to a method for controlling the start-up and grid-connection of large-scale regulators. Background technique [0002] In high-voltage direct current, especially UHV direct current transmission, whether it is rectification or inverter operation, the converter consumes a large amount of reactive power. In order to ensure the safe and reliable operation of the converter, it is necessary to ensure the supply of reactive power. Insufficient or excess reactive power will directly cause the instability of the AC voltage, which may endanger the safe and stable operation of the entire AC and DC system. Therefore, the flexible, controllable, and fast-response dynamic reactive power adjustment method is of great significance to UHVDC transmission. [0003] As a reactive power generating device, large-scale condensers have unique advantages in improving the short-circuit ratio of the AC ...

Claims

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Application Information

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IPC IPC(8): H02J3/40H02P6/20
CPCH02J3/40H02P6/20
Inventor 崔一铂王庆杜晓磊阮羚陶骞凌在汛蔡万里陈文
Owner STATE GRID CORP OF CHINA
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