Power supply scheme auxiliary generation method based on GIS (geographic information system)
A power supply scheme and power grid technology, applied in the generation of power grid power supply schemes, in the field of auxiliary generation of power supply schemes based on GIS, can solve unsolved problems such as automatic formation of reasonable power supply schemes, and achieve the effect of improving distribution network planning decisions and improving levels
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Embodiment 1
[0039] The application user of this embodiment requires dual power supply. The basic steps of the auxiliary generation method of the GIS-based power supply scheme are as follows: figure 1 Shown:
[0040] The first step, according to the address information provided by the applicant, search through the grid GIS platform to determine the specific electricity location;
[0041] The second step is to search for power distribution facilities within a predetermined radius (50m for the first time) with the power use location as the center. If power distribution facilities are found, the open capacity is calculated as follows:
[0042] Openable capacity = (rated capacity of power distribution facility-maximum operating load of power distribution facility) / configuration coefficient The configuration coefficient mainly considers the time period of residential power consumption and the suddenness of non-residential power consumption-residential users take: 0.6, non-residents User take: 0.9, m...
Embodiment 2
[0050] This example figure 2 As shown, it can be considered as a more complete GIS-based auxiliary generation method of power supply scheme. Compared with the above-mentioned embodiment, the content is more comprehensive, and the considerations are more careful, such as dividing user needs into high voltage and low voltage, and then continuing to divide them; whether to use electricity at intervals, and so on. The steps are not difficult to combine according to the above description figure 2 To understand, so I won’t go into details.
[0051] Practice has proved that this embodiment uses the results of business and distribution integration to analyze the topological relationship, interval usage, and open capacity of power grid equipment based on user business expansion application information, production PMS system, and power transmission and transformation system power grid equipment. The power grid equipment is distributed on the GIS map, and the power supply equipment that...
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