Coordinated control method, frequency converter, excitation equipment and static variable frequency starting system
A technology of excitation equipment and coordinated control, which is applied in the fields of frequency converters, excitation equipment and static variable frequency start-up systems, and can solve problems such as unfavorable control, complex coordinated control process, and poor control effect
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Embodiment 1
[0079] Embodiment 1 of the present invention provides a coordinated control method for frequency converters and excitation equipment, the specific flow chart is as follows figure 1 As shown, the specific process is as follows:
[0080] S101: The frequency converter receives the first synchronous motor selection instruction issued by the monitoring system, and returns the first confirmation information to the monitoring system;
[0081] S102: The inverter sends a high-level request command to the excitation equipment corresponding to the synchronous motor through the digital channel, and starts to start and enter the pulse commutation stage after receiving the second confirmation information returned by the excitation equipment;
[0082] S103: After the inverter enters the phase of natural commutation, it will convert the high-level request command sent to the excitation device into a low-level request command, and at the same time send the analog signal (0~20mA) to the excitat...
Embodiment 2
[0091] The same inventive concept as Embodiment 2 of the present invention, Embodiment 2 of the present invention provides a frequency converter, specifically including a first transceiver module, a second transceiver module, a current regulation module, a rotational speed regulation module, and a first receiving module. The function of the module is described in detail:
[0092] The first transceiver module is used to receive the first synchronous motor selection instruction sent by the monitoring system, and return the first confirmation information to the monitoring system;
[0093] The second transceiver module is used to issue a high-level request command to the excitation device corresponding to the synchronous motor through the digital channel, and start to start and enter the pulse commutation stage after receiving the second confirmation information returned by the excitation device;
[0094] The current regulation module is used to convert the high-level request comm...
Embodiment 3
[0104] Embodiment 3 of the present invention provides a method for coordinated control of frequency converters and excitation equipment, the specific process is as follows figure 2 As shown, the specific process is as follows:
[0105] S301: The excitation device receives the second synchronous motor selection instruction issued by the monitoring system, and returns the second confirmation information to the monitoring system;
[0106] S302: After the excitation device receives the high-level signal request command issued by the frequency converter through the digital channel, it returns the second confirmation message to the frequency converter, and starts to enter the independent excitation control mode;
[0107] S303: After receiving the low-level request command sent by the frequency converter, the excitation device enters the analog channel control mode, and receives the analog signal (0-20mA) sent by the frequency converter through the analog channel;
[0108] S304: Af...
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