Layered Partitioned Reactive Voltage Analysis Method Based on Boundary Conditions
A boundary condition, layered and partitioned technology, applied in reactive power compensation, AC network voltage adjustment, etc., can solve the problems of limited reactive power and voltage analysis of the power grid, low efficiency of large power grid analysis, and lack of reactive power and voltage calibration methods. , to achieve the effect of being easy to understand and implement, and improving analysis efficiency
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Embodiment 1
[0033] The present invention is a layered and partitioned reactive voltage analysis method based on boundary conditions, such as figure 1 as shown, figure 1 It is a flow chart of the hierarchical partition reactive voltage analysis method based on boundary conditions, and the specific operation steps include:
[0034] Step 1: Hierarchically partition the grid.
[0035] The specific method used in the hierarchical partitioning is: according to different voltage levels, the power grid of the same voltage level is divided into one layer; in the same layer of the power grid, partitions are carried out according to the geographical location and the load power supply range, and the substation is based on which area the power is supplied to In which area it is divided, substations powered by different areas at the same time are allocated to each area according to the size of the power supply load.
[0036] Step 2: Identify the study area and its boundaries.
[0037] The determinat...
Embodiment 2
[0061] The content of the present invention will be further described below by taking the 2015 Inner Mongolia Chifeng Power Grid as an embodiment of the present invention.
[0062] Firstly, the Chifeng power grid is divided into four layers according to 500kV, 220kV, 66kV, and 10kV; for example, the 66kV level power grid is divided into Zhongjing system, Pingzhuang system, Jinshan system, Chifeng system, Jingouliang system, Lindong system, Tianshan system, Taiben system, Xijiao system, Ningcheng system, hot water system, Wudan system, Daban system, Yuanbaoshan system, Xinhui system, Tongdu system , Chengdong system has a total of 17 regions.
[0063] The research area is determined to be the 66kV Jinshan system, and the wiring diagram of the power grid in the Jinshan area of Chifeng, Inner Mongolia is as follows figure 2 shown.
[0064] The boundary of this area is determined to be 220kV Jinshan Substation, and the boundary conditions include Jinshan Substation 66kV side ...
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