Excitation state analysis-based low-voltage ride-through control method of virtual synchronous power generator
A technology of low voltage ride through and excitation state, applied in reactive power compensation, reactive power adjustment/elimination/compensation, single-grid parallel feeding arrangement, etc. current and other problems, to reduce the transient process, suppress the potential and frequency oscillation, and improve the transient performance.
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Embodiment 1
[0035] Embodiment 1. A virtual synchronous generator low-voltage ride-through control method based on excitation state analysis. Combine below Figure 1 to Figure 6 The method provided in this embodiment will be described in detail.
[0036] see Figure 1 to Figure 6 , a virtual synchronous generator low-voltage ride-through control method based on excitation state analysis, the method comprising:
[0037] S1. Execute the quasi-synchronization algorithm and the pre-synchronization algorithm in the VSG control module, adjust the output voltage of the inverter, and automatically select the grid-connection timing to close the grid-connection switch;
[0038] The pre-synchronization algorithm uses two integral links to cooperate with two droop coefficients to form two PIs to adjust the voltage and frequency, and a new PI is added to adjust the phase. The above quasi-synchronous algorithm is an existing algorithm. For details, please refer to the literature: Yang Liang, Wang Cong,...
Embodiment 2
[0073] Embodiment 2. Virtual synchronous generator low voltage ride through control system based on excitation state analysis. Combine below Figure 1 to Figure 6 The system provided in this embodiment will be described in detail.
[0074] see Figure 1 to Figure 6 , a virtual synchronous generator low voltage ride through control system based on excitation state analysis, said system comprising:
[0075] Inverter module, filter module, grid-connected switch, grid module, quasi-synchronous algorithm module, virtual synchronous generator control module, virtual impedance module, additional current loop module, SVPWM modulation module.
[0076] The inverter module, the filter module, the grid-connected switch and the grid module are electrically connected in sequence.
[0077] Collect the output voltage signal at the front side of the circuit breaker and the voltage signal of the grid module at the rear side of the circuit breaker, and input the two signals into the quasi-syn...
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