Abstract
Restoring the de-energized area of power grid system quickly and efficiently is imperative in recent years. Besides, with the trend of deregulation in power grid system, the topology of power grid system will be partitioned into several regions which operate independently, so that the traditional centralized algorithm depends on one computing center won’t be feasible. In this thesis, we propose a team-architecture multi-agent system in order to solve the power restoration problem under deregulation situation. A team is a two level hierarchical organization of agents, consisted of one Leader Agent (LA) and several Member Agents (MAs). We treat the components in the power grid system as the MAs of the team and also define LA as the team that supervises the MAs in the team. From our results, it shows that our approach can reach a feasible solution under any kinds of the partitioned topologies, and also can quickly reach a feasible solution. Besides, we provide some advice of the partition rule in the topology.