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

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      https://www.riss.kr/link?id=A102553405

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      다국어 초록 (Multilingual Abstract)

      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...

      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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      목차 (Table of Contents)

      • Abstract
      • 1. Introduction
      • 2. The Research Status Analysis of Distribution Network Reconfiguration
      • 2.1 The Research Status of Distribution Network
      • 2.2 The Development Direction of the Reconfiguration of Power Network Distribution
      • Abstract
      • 1. Introduction
      • 2. The Research Status Analysis of Distribution Network Reconfiguration
      • 2.1 The Research Status of Distribution Network
      • 2.2 The Development Direction of the Reconfiguration of Power Network Distribution
      • 3. Immune Particle Swarm Algorithm
      • 3.1 The basic Principle of Immune Particle Swarm Algorithm
      • 3.2 Data Storage Mode of Power Distribution Network
      • 4. Simulation Experiment of the Reconfiguration of Power Distribution Network
      • 4.1 The Simulation of Static Reconfiguration
      • 4.2 Simulation of Dynamic Reconfiguration
      • 5. Conclusion
      • References
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