A Distributed Power Planning Method Based on Improved Orthogonal Optimization Swarm Intelligence Algorithm
A technology of distributed power supply and swarm intelligence algorithm, applied in the direction of AC network circuits, electrical components, circuit devices, etc., can solve the problem of not fully utilizing the orthogonal design search function, etc., to reduce the amount of optimization search calculation, improve efficiency and usability , The effect of reducing the system voltage offset
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2020-04-24
Smart Images

Figure 1 
Figure 2 
Figure 3
Abstract
Description
technical field
[0001] The invention relates to a distributed power supply planning method based on an improved orthogonal optimization group intelligent algorithm, and relates to the field of micro-grid planning. Background technique
[0002] With the accelerated development of the global economy, energy shortages and environmental pollution have become huge challenges facing society today. Due to the continuous growth of power load, the aging of the power system structure, the bottleneck of energy utilization efficiency, the user's requirements for high-standard power quality, and environmental protection issues, it is urgent to develop clean and non-polluting renewable energy power generation methods as an effective alternative to traditional centralized power generation. Supplementary, distributed power generation technology came into being. Distributed power generation refers to a system in which the power generation system is arranged in a small-scale (small-scale mod...
Examples
Embodiment
[0094] Take the IEEE14 node network system as an example:
[0095] According to the distributed power planning mathematical model proposed by the present invention and the improved orthogonal optimization group intelligence algorithm, the IEEE14 node power distribution system is simulated by MATLAB, and its power distribution network structure is as follows figure 1 As shown, the value per unit is 100MVA, the voltage of each node is 0.97~1.1 times the reference voltage, and the total load of the system is 259.9MW+73.5Mvar. Treat the distributed power supply as an ordinary PQ point, and set node 1 as a balance node. In the fuzzy comprehensive evaluation of the multi-objective model, the weights of active network loss, voltage offset, investment and operating costs are 1 / 2, 3 / 8, and 1 / 8, respectively. The planning of distributed power generation is shown in Table 2.
[0096] Table 2 Distributed power supply installation location and installation capacity
[0097]
[0098] ...