Variable-parameter capacitance compensation equivalent modeling method for wind power station of constant-speed wind power unit at fluctuating air speed
A wind turbine, wind speed fluctuation technology, applied in electrical digital data processing, special data processing applications, instruments, etc., can solve the problems of variable parameter capacitance difficult to calculate, reactive power error and other problems
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specific Embodiment approach 1
[0044] Specific implementation mode one: combine figure 1 To illustrate this embodiment, the variable parameter capacitance compensation equivalent modeling method of the fixed-speed wind turbine wind farm under wind speed fluctuations in this embodiment is to regard all the wind turbines in the wind farm as equivalent to one equivalent constant-speed wind turbine. The aerodynamic torque T of the wind turbine at the equivalent constant speed wind turbine is obtained by superimposing the outputs of the first n wind turbine aerodynamic models m_eq , and the wind turbine aerodynamic torque T m_eq Input to the two-mass shafting model, the two-mass shafting model also inputs the electromagnetic torque T output from the equivalent induction motor e_eq , the rotor speed ω output by the two-mass shafting model r_eq Given an equivalent induction motor, at the same time, the rotational speed ω of the n wind turbines output by the two-mass shafting model m_eq For n wind turbine aerody...
specific Embodiment approach 2
[0078] Specific implementation mode two: combination figure 2 Describe this implementation mode. The difference between this implementation mode and specific implementation mode 1 is that it is the case where reactive power compensation at the machine end is controlled by capacitor group switching, which is the same as the wind turbine machine terminal reactive power compensation without control. The parameter compensation capacitor C eq The acquisition method of , the C in formula 9 i It is obtained according to the control law of switching capacitors in groups. Other compositions and connection methods are the same as those in Embodiment 1.
specific Embodiment approach 3
[0079] Specific implementation mode three: combination figure 1 with figure 2 Describe this embodiment, the difference between this embodiment and specific embodiment 1 is that the calculation formulas of the parameters of the equivalent induction motor and the parameters of the equivalent transformer are as follows:
[0080] S eq = Σ i = 1 m S i , P eq = Σ i = 1 m P i , C ...
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