Evaluation method for adequacy of wind generation and energy storage hybrid power system
A hybrid power system and a technology of adequacy, applied in the field of electric power, can solve the problems that the adequacy index is not scientific enough, is not comprehensive enough, fails to take into account the situation of the energy storage battery connected to the system, and achieves the effect of a scientific adequacy index
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Embodiment 1
[0026] figure 1 is a schematic flow chart of an embodiment of the wind-storage hybrid power system adequacy assessment method provided by the present invention, such as figure 1 shown, including steps:
[0027] Step 1: Obtain system data including the number of generators and rated power, energy capacity and power capacity of energy storage batteries, network structure and parameters, and set the number of simulation years.
[0028] Among them, the simulation system adopts the RRBTS6 system, such as figure 2 shown. The wind speed data used in the simulation is obtained from the measured data of the wind farm, and the two-parameter Weibull distribution scale parameter c=7.3273 and shape parameter k=2.1220 can be obtained by fitting. The single-unit capacity of the wind turbine is 2MW, the cut-in, rated and cut-out wind speeds are 3m / s, 12m / s and 22m / s respectively, and the number of connected wind turbines is set to increase to 60 (120MW) in steps of 10 (20MW) ) units, the...
Embodiment 2
[0068] This method is used to evaluate the adequacy of the conventional power system without wind power and energy storage batteries. This method can be used to study the adequacy of the power generation and transmission system, and distinguish between the boundary state and the healthy state according to whether the generation capacity is greater than 10% of the total load . On the basis of the existing RBTS6 node system, the simulation system adds a branch 10 with the same parameters as branch 9 between nodes 5 and 6. The modified system is called the RRBTS6 system, see image 3 . The rated voltage of the system is 220kV, and the system contains 11 generators, 5 bus loads and 10 transmission lines. The peak load of the system is 185MW, and the generating power of conventional units is 240MW.
[0069] Step 1: Read in the RRBTS6 node system data, and the number of sequential Monte Carlo simulations is 200 years.
[0070] Step 2: Consider the forced outage rate of generator ...
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