Adaptive density wind turbine generator unit torque and rotational speed control method
A wind turbine and rotational speed control technology, which is applied in the control of wind turbines, wind energy power generation, wind turbines, etc., can solve the problem that the set value of the torque control loop of the turbine cannot accurately respond to changes in atmospheric parameters, and achieve the maximum transformation and realization. power, the effect of improving adaptability
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Embodiment 1
[0034] Such as figure 1 figure 2 As shown, first select the wind farm and unit for technical transformation. The wind farm should have sensors for measuring atmospheric pressure and humidity. The measurement accuracy and cycle should meet the control requirements, and the sensor can perform analog-to-digital conversion of physical quantities. The measurement device has corresponding The communication device and interface have channels for uploading variables to other platforms and conducting information interaction with other systems. The large components such as blades and gearboxes of the retrofit unit have no quality defects, each subsystem (such as wind measuring device, pitch and yaw system, etc.) is operating normally, and the communication interface of the unit's main control system is open.
[0035] Collect unit design power curve, reference torque-speed operation curve and corresponding atmospheric parameters (including: atmospheric temperature, pressure, density, humi...
Embodiment 1
[0040] The temperature difference between winter and summer in a wind farm in Ningxia is 30℃, and the typical daily density is 0.937kg / m respectively without considering the humidity. 3 And 1.04kg / m 3 , The density difference is 11%. According to the operating principle of the unit, the torque setting value should be increased by 11% proportionally, and the active power should be increased accordingly. The atmospheric parameters referenced by the original torque-speed operating curve of the unit are the atmospheric parameters of the design conditions, which are very different from the actual atmospheric parameters in winter and summer. The air density in winter is relatively high, and the unit cannot properly increase the torque setting value, resulting in capturing power There is a lot of loss; the air density in summer is too small, the unit torque setting is improper, the speed deviates from the optimal tip speed ratio, and the capture efficiency is low. In order to accuratel...
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