Wind turbine generator pitch system backup power source charging circuit and control method thereof
A backup power supply and pitch control system technology, applied in battery circuit devices, power network operating system integration, wind power generation, etc., can solve the problems of high charging failure probability and long charging time, shorten charging time, improve charging efficiency, The effect of avoiding the loss of power generation due to downtime
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Embodiment 1
[0048] Such as Figure 1 to Figure 3 As shown, a backup power supply charging circuit for a wind turbine pitch system includes a charger power supply, a backup power supply, n chargers, and n control modules, and the charger power supply, each charger, and the backup power supply are electrically connected in turn to form a branch Each charger is electrically connected to a control module, and n control modules are interconnected; wherein, n is a positive integer and n≥2.
[0049] The n charging branches of the present invention jointly charge the backup power supply; when the capacity of the backup power supply of the pitch control system is greatly increased, the charging time is shortened, so that the pitch control system can quickly enter the ready state; at the same time, safety redundancy is realized, and when there is a charger failure In other cases, the other charger can still charge the backup power supply, and the pitch system can continue to operate, avoiding the l...
Embodiment 2
[0059] Such as Figure 1 to Figure 3 As shown, as a further optimization of Embodiment 1, this embodiment provides the control method for the backup power charging circuit of the wind turbine pitch system:
[0060] A control method for a backup power supply charging circuit of a wind turbine pitch system. When a main charger is in a fault state, a master control module and a slave control module are switched to each other, and the master charger and the slave charger are switched to each other.
[0061] When the main charger is in a failure state, the main and slave charging circuits switch to each other to achieve safety redundancy. When the main charger fails, the slave charger can still charge the backup power supply, and the pitch system can continue to operate, avoiding the loss of power generation due to unit shutdown increase the reliability of the dual-drive pitch system and even wind turbines.
[0062] As a preferred technical solution, when the main charger and the ...
Embodiment 3
[0075] Such as Figure 1 to Figure 3 As shown, as a further optimization of Embodiment 1 and Embodiment 2, this embodiment provides a more detailed implementation manner.
[0076] The invention discloses a backup power supply charging circuit and a control method of a wind turbine pitch system, such as figure 1 As shown, the charging circuit includes at least two charging loops, master / slave. The main charging loop is connected in sequence by the charger power supply, the main charger, the main diode, and the supercapacitor module. The slave charging loop is connected by the charger power supply, the slave charger, The slave diodes and supercapacitor modules are connected sequentially; at the same time, the voltage value of the supercapacitor module is measured in real time by the voltage measurement module and sent to the main control module and the slave control module respectively through analog signals. The voltage of the supercapacitor module and the status of the charge...
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