Topology optimization of offshore wind power collection system based on genetic DMST
For the automatic optimization layout of offshore wind farm collection grid topology,this paper establishes a mathematical model with the lifecycle cost of the collection grid as the objective function,and the selection of subma-rine cables and avoidance of submarine cable crossings as the main constraints.Additionally,the paper adopts an im-proved genetic algorithm based on dynamic edge-weighted minimum spanning tree algorithm to expand the algorithm's search solution space.This is aimed at solving the optimization problem of the collection system topology in offshore wind farms with better optimization ability,thus enhancing the overall efficiency of offshore wind farms.Case study re-sults of offshore wind farm projects validate the effectiveness and efficiency of the proposed method,providing practical references for the planning and design of offshore wind farm collection systems.
offshore wind powercrossover avoidance of submarine cablestopology optimizationdynamic edge-weighted minimum spanning tree algorithmgenetic algorithmlifecycle cost