Examples of 'turbine controller' in a sentence

Meaning of "turbine controller"

turbine controller - This phrase typically refers to a device or system used to regulate and control the operation of a turbine. It is commonly associated with machinery, engines, or equipment that utilize turbines to generate power, propulsion, or other forms of energy

How to use "turbine controller" in a sentence

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turbine controller
The turbine controller is disposed in a nacelle or tower.
The apparatus may also include a turbine controller.
Turbine controller sense power increase above set level.
The control algorithm is typically executed by a wind turbine controller.
Wind turbine controller and method for controlling a power production of a wind turbine.
The pitch process is controlled by a wind turbine controller comprising a pitch controller.
This condition is typically indicated by the turbine run state of the turbine controller.
The present invention also relates to a wind turbine controller configured to perform the above method.
A controller can be developed to read the emergency stop code from the turbine controller.
The turbine controller then sends the created pitch angle command to the pitch control unit.
This DC value is set by a turbine controller to set the AC current level.
Figure 7 is a block diagram of one embodiment of a turbine controller.
The PCP will notify the Turbine Controller that a power loss has been detected.
Otherwise, a message is sent to the turbine controller.
Preferably, the turbine controller performs the method on a cyclic basis.

See also

Figure 6 illustrates a schematic view of a wind turbine controller.
Preferably, the turbine controller performs the method on a regular periodic basis, or on a cyclic basis.
Systems, methods and apparatuses for a wind turbine controller.
The turbine controller 6 and the measuring device 7 are electrically connected with each other.
Preferably, the method is carried out by a wind turbine controller.
The turbine controller may be configured to control the first connection and / or the second connection.
Preferably, the training data is preloaded into a wind turbine controller.
For example, a turbine controller may selectively cause a wind turbine to operate above rated levels.
Preferably, a gust risk indicative signal is output to a wind turbine controller.
Accordingly, the parameters of the turbine controller maybe adjust normal operation of the wind turbine.
A method according to claim 1, comprising outputting a gust risk indicative signal to a wind turbine controller.
The arrangement may be comprised in a wind turbine controller and / or a wind park controller.
The user controls may be configured to control the cage controller and / or the turbine controller.
The method may for example be performed by a wind turbine controller and / or a wind park controller.
Preferably, the turbine controller acts to reduce the A-weighting of noise emitted by a wind turbine.
In this discussion, the functionality of one specific wind turbine controller has been described.
A wind turbine controller configured to perform the method of any of claims 1 to 10.
Alternatively, the test unit TU may be comprised by a wind turbine controller of a wind turbine.
In general, the turbine controller 28 may comprise a computer or other suitable processing unit.
Computing device 205 may also be referred to as a wind turbine controller.
A wind turbine controller 124 may be configured to control the processes in a wind turbine.
The wind turbine of claim 5, wherein the variable speed wind turbine controller includes,.
In an embodiment, the wind turbine controller can include a wind turbine power controller 124.
The simulation module 300 may be realized by a separate controller communicating with the turbine controller.
A wind turbine controller 123 provides an overall control of the operation of the wind turbine.
These parameters are compared by the wind turbine controller 202 with prestored values in a lookup table.
Turbine controller 210 analyzes the signals to determine the forces that caused the deflection.
Anemometer 59 typically measures wind speed and wind direction and transmits these data to turbine controller 202.
The wind turbine controller 26 may also include conventional partial-load and full-load control algorithms.
The sensors are typically coupled to wind turbine controller 202.
IMU 900 is coupled to a turbine controller that determines loads based on IMU measurements.
Signal 102 is transmitted from the wind turbine controller.
Additionally, the turbine controller 26 may also be located within the nacelle 16.
The wind turbine is controlled by the wind turbine controller 216.
Further, a wind turbine controller 116 may control the operation of the wind turbine.

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