Title :
Transmission System Topology Optimization for Large-Scale Offshore Wind Integration
Author :
Ergun, Hakan ; Van Hertem, Dirk ; Belmans, Ronnie
Author_Institution :
Dept. of Electr. Eng. (ESAT/ELECTA), Univ. of Leuven (KU Leuven), Leuven, Belgium
Abstract :
A method to determine the optimal transmission system topology for multiple offshore wind farms is introduced using a rule-based generic algorithm. The methodology is implemented as a software tool determining the best economical and technically feasible offshore transmission solution. The optimization algorithm takes radial, ring shaped, and meshed transmission topologies into consideration. Besides the investments for the offshore grid also new connections or reinforcements in the existing onshore grid are proposed by the algorithm. The developed tool delivers a set of transmission system topologies ranked after their life cycle system costs with their corresponding transmission voltage and technology (HVAC or HVDC), the necessary transmission equipment, and its rating. The optimization results are based on publicly available data. The achieved results are compared with other studies and validated. The developed tool can be used in the planning phase as a guidance for offshore developers with investment decisions and for long-term offshore grid planning, e.g., towards an offshore supergrid.
Keywords :
HVAC; HVDC power transmission; offshore installations; optimisation; power grids; power transmission economics; power transmission planning; wind power plants; HVAC; HVDC; investment decisions; large-scale offshore wind integration; life cycle system costs; long-term offshore grid planning; meshed transmission topology; multiple offshore wind farms; offshore transmission; onshore grid; optimal transmission system topology; planning phase; radial transmission topology; ring shaped transmission topology; rule-based generic algorithm; software tool; transmission equipment; transmission system topology optimization; HVDC transmission; Investments; Optimization; Power transmission; Software algorithms; Topology; Wind farms; HVDC; offshore grid topology; offshore wind; optimization; transmission system investments;
Journal_Title :
Sustainable Energy, IEEE Transactions on
DOI :
10.1109/TSTE.2012.2199341