Power supply system and operation method of intelligent peak shifting and valley filling superimposed photovoltaic power generation
A technology of photovoltaic power generation, peak shifting and valley filling, applied in photovoltaic power generation, energy storage, battery circuit devices, etc., can solve problems such as short supply of electricity during the day, unbalanced power consumption of the power grid, hidden dangers of power grid security, etc., to save computer room space and The effect of equipment cost, utilization maximization, and energy saving effect maximization
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Embodiment 1
[0044] see figure 1 Shown is the flow chart of the operation method of the power supply system of intelligent peak shifting and valley filling superimposed photovoltaic power generation in this application. The method includes:
[0045] Step 101. Determine the power generation of the photovoltaic rectification module group, and determine the operating mode of the intelligent peak-shifting and valley-filling superimposed photovoltaic power supply system according to the power generation of the photovoltaic rectification module group:
[0046] Step 102. When the power generation of the photovoltaic rectification module group is zero, the power system of the intelligent peak-shifting and valley-filling superimposed photovoltaic power generation adopts the method of supplying power to the load through the storage battery group during the peak power period, and through the mains rectification module group to supply power to the load during the flat power period. Load power supply, ...
Embodiment 2
[0059] see figure 2 , the present application also provides an intelligent peak-shifting and valley-filling superimposed photovoltaic power supply system 100, which is characterized in that it includes: a control module 10, a photovoltaic rectification module group 20, a photovoltaic detection module 30, a mains power rectification module group 40 and a storage battery Group 50,
[0060] The control module 10 is configured to send detection instructions to the photovoltaic detection module 30, judge the power generation of the photovoltaic rectification module group 20, and determine the power supply system 100 of the intelligent peak-shifting and valley-filling superimposed photovoltaic power generation according to the power generation of the photovoltaic rectification module group 20 The operation mode is also used to calculate the remaining total power of the battery pack 50. When the remaining total power of the battery pack 50 is greater than the preset power, the batte...
Embodiment 3
[0074] The following provides an application example of the power supply system and operation method of the intelligent peak-shifting and valley-filling superimposed photovoltaic power generation of this application, see Figure 4 .
[0075] A communication base station computer room, 48V power supply system, system load current 60A, load average power 3KW, Figure 4 The load in is embodied as communication device 201 . The computer room of the base station is located in the central region, and the electricity price period announced by the local power company is 8 hours for peak power (8:00 to 12:00, 18:00 to 22:00) and 8 hours for flat power (12:00 to 18:00, 22:00 to 24:00 ), valley electricity for 8 hours (0:00 to 8:00).
[0076] The 48V lithium iron phosphate battery pack 51 is configured according to the principle of 8-hour discharge and 2-hour backup, and the total capacity is 48V / 600AH; the photovoltaic module 21 is configured according to the 6-hour average output pow...
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