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KUC755AE105 Excitation control system 3BHB005243R0105

KUC755AE105 Excitation control system 3BHB005243R0105

The KUC755AE105 is a type of excitation control system produced by ABB. It is used for synchronous motor excitation control equipment, mainly used to adjust the synchronous motor excitation current, in order to achieve the control and protection of the motor.

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Essential details:KUC755AE105 Excitation control system 3BHB005243R0105

The KUC755AE105 is a type of excitation control system produced by ABB. It is used for synchronous motor excitation control equipment, mainly used to adjust the synchronous motor excitation current, in order to achieve the control and protection of the motor.
3BHB005243R0105 May be the model of a component or accessory of the excitation control system. For specific information, you may need to refer to the product manuals or technical specifications provided by ABB.

KUC755AE105 and 3BHB005243R0105 May be two components of the excitation control system or related devices.

Excitation control system is an important part of synchronous generator, which is used to provide direct current to the excitation winding of the generator to establish or maintain the terminal voltage of the generator. The system usually includes excitation power supply, excitation regulator, magnetic disconnection and overvoltage protection device.

The KUC755AE105 may be an excitation controller or related device, and the 3BHB005243R0105 May be a module or component used in conjunction with the controller. These two devices may have specific functions and performance to meet the needs of the excitation control system.

KUC755AE105-3BHB005243R0105

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KUC755AE105 Excitation control system 3BHB005243R0105

The main functions of the excitation control system include:

The excitation current is adjusted according to the change of the generator load to maintain the terminal voltage at a given value.
Control reactive power distribution among generators running in parallel.
Improve the static stability of generators running in parallel.
Improve the transient stability of generators running in parallel.
When there is a fault inside the generator, the magnetic field is removed to reduce the degree of fault loss.
According to the operation requirements, the maximum excitation limit and the minimum excitation limit of the generator are implemented.
In addition, the excitation system can also suppress the low-frequency oscillation of the power grid.