A Distributed Photovoltaic Acquisition and Estimation Optimization Method Based on Trusted Nodes
A distributed photovoltaic and optimization method technology, applied in transmission systems, electrical components, etc., can solve problems such as waste of sampling resources, complex calculation time-consuming, complex calculation methods, etc., to improve calculation efficiency, ensure calculation accuracy, and reduce calculation complexity degree of effect
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[0068] In the following, a trusted node-based distributed photovoltaic collection distribution and estimation optimization method proposed by the present invention will be described in detail by planning M measurement photovoltaic nodes in an area with a total of N distributed photovoltaic nodes. as attached figure 1 The method shown comprises the steps of,
[0069] S100: Calculate the similarity between each photovoltaic node according to the static data of the distributed photovoltaic nodes in the region;
[0070] S200: Take the M measured photovoltaic nodes in the area as trusted photovoltaic nodes, set their diagonal similarity s(i,i)=V, and set the other N-M photovoltaic nodes as non-measured photovoltaic nodes, set their diagonal similarity Similarity s(i, i)=0, where N is the total number of photovoltaic nodes in the area, M≤N, 1≤i≤N, V>0;
[0071] S300: According to the similarity, with the measured photovoltaic node as the center point, group the non-measured photov...
Embodiment 2
[0102] This embodiment provides a distributed photovoltaic collection layout and output estimation system, as shown in the attached Figure 5 As shown, the distributed photovoltaic collection and distribution and output estimation system includes,
[0103] Similarity calculation unit 100: used to calculate the similarity between each photovoltaic node according to the static data of the distributed photovoltaic nodes in the area;
[0104] Measurement node selection unit 200: Initially, trustworthy nodes in the area are used as measurement nodes, and other photovoltaic nodes are set as non-measurement photovoltaic nodes;
[0105] Node grouping unit 300: used to group non-measured photovoltaic nodes with the measured photovoltaic node as the center point according to the similarity, and to calculate the comprehensive deviation in the region;
[0106] Grouping decision unit 400: used to judge whether the comprehensive deviation is less than the error threshold, if not, used to t...
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