Solar photovoltaic grid-connected system
A solar photovoltaic and photovoltaic technology, applied in the field of solar photovoltaic power generation, can solve the problems of instability, large fluctuation of grid voltage range, lack of power generation system, etc., and achieve the effect of ingenious overall structure design, improved control reliability, convenient maintenance and use
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Embodiment 1
[0018] Example 1: Such as figure 1 As shown, a solar photovoltaic grid-connected system includes a grid-connected power generation unit, a grid-connected inverter, a main controller, a bidirectional electric energy metering device, a power distribution switch, and an isolation transformer. The grid-connected power generation unit and the grid-connected inverter The grid-connected inverter is connected to the two-way electric energy metering device through the power distribution switch, and the two-way electric energy metering device is connected to the AC grid through the isolation transformer, and a safety protection device is installed between the isolation transformer and the AC grid; the grid-connected The power generation unit includes at least two photovoltaic arrays. Each photovoltaic array is equipped with a photovoltaic lightning protection combiner box. The output terminals of all photovoltaic lightning protection combiner boxes are connected to the input terminals ...
Embodiment 2
[0019] Example 2:As an improvement of the present invention, it also includes a grid voltage collector and a comparator. The grid voltage collector is connected to the AC grid interface and is used to collect grid voltage signals. The grid voltage signals include grid voltage amplitude signals and grid voltage signals. Voltage phase signal; the comparator is connected to the grid voltage collector, and is used to correct the phase and frequency of the output voltage of the grid-connected inverter according to the grid voltage signal. The rest of the structures and advantages are exactly the same as in Embodiment 1.
Embodiment 3
[0020] Example 3: As an improvement of the present invention, the main controller adopts a dual-core controller including DSP and FPGA, and the DSP core is responsible for the voltage outer loop control and MPPT control, and the output voltage of the photovoltaic array and The constant current signal is transmitted to the FPGA core at high speed, and the FPGA core sends a pulse drive signal to the grid-connected inverter through the current inner loop control with voltage feedforward and the SPWM drive algorithm. The traditional main controller is designed with a single DSP processor. Since the DSP processor is almost based on software programming to complete the corresponding control functions, once the peripheral circuit structure that cooperates with the DSP is complex, due to the uncertainty of software interrupts , may cause a certain delay to the logic signal, resulting in an increased probability of program failure. The FPGA controller can flexibly configure its inter...
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