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      • The Applied Research on the Optimization of Distribution Network Topological Structure Configuration Model

        Zucheng Huang,Wei Chen,Lixia Chen,Hao Chen 보안공학연구지원센터 2016 International Journal of Grid and Distributed Comp Vol.9 No.12

        With the rapid growth of the economy and the increasing improvement of life, the large electricity consumption gradually intensifies power grid transmission pressure. In order to solve this problem, the paper analyses the trend of tremendous development in computer, electronic and electric power technology and makes a deep related research. Based on the further analysis of key technologies, the author sets constraint conditions, analyzes the supporting effect, and establishes an optimal configuration model with multiple purposes for distribution network topological structure. On the basis of the minimal module ideal point algorithm, the over all planning is conducted through deep consideration to assure the further optimal configuration of the model. Then the value will be calculated by using the POS algorithm. At last, four optimization plans are obtained and the fourth one whose weight value can be adjusted is chosen to achieve automation and the more rationalized and optimal development of the distribution network topological structure. In addition, this optimal plan provides a stronger basis of theory to the practical application of related work and industries.

      • The Research on the Distribution Network Reconfiguration and the Application of Immune Particle Swarm Optimization

        Zucheng Huang,Lixia Chen,Wei Chen,Xiaojun Chen 보안공학연구지원센터 2016 International Journal of Grid and Distributed Comp Vol.9 No.11

        With the rapid development of national economy, the demand for electricity is more intense. There is a new demand for the security, reliability and applicability of the power distribution system. The power distribution system is an important component of power systems. It plays an important role in connecting power production and users. Now the most important problem is nonlinear combinatorial optimization in large-scale mixed lines and how to reconfigure the distribution network. However, by deeply analyzing and studying immune particle swarm optimization, the mathematical model of distribution network reconfiguration is established. By coding the characteristics of closed-loop design and open-loop operation, it aims to reduce the consumption of network, balance the grid load, eliminate the current overload and achieve the ultimate goal of improving the power supply reliability.

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