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A feasible method for controlled intentional islanding in microgrids based on PSO algorithm

机译:基于PSO算法的微电网中的控制故意群落的可行方法

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Intentional islanding is a suitable approach to increase the system reliability in situations where the electrical connection between the microgrid and the upstream network is lost. In this paper, an innovated two-stage method for the intentional islanding process in microgrids is proposed. The important and practical issues such as the load controllability; load priorities; voltage and the line capacity constraints; reduction of problem solution space and ability to make larger islands are taken into account. In the first stage, the problem is relaxed by considering the problem as an optimization problem known as Tree Knapsack Problem (TKP) solved by Particle Swarm Optimization (PSO). In the second stage, the power flow is calculated and the constraints are verified, then adjusting measures will be taken. The proposed method is conducted on the IEEE 69-bus test system with 6 DGs and the results are compared with other methods. Moreover, for real time verification, the obtained results are simulated by DIgSILENT/Power Factory software package. The simulation results suggest that the proposed algorithm is a valid method for the intentional islanding process.
机译:故意岛是一种适当的方法,可以在微电网和上游网络之间的电连接丢失的情况下提高系统可靠性。本文提出了一种创新的微电网中有意孤岛过程的三阶段方法。负载可控性等重要和实际问题;装载优先级;电压和线路容量约束;减少问题解决方案空间和制作较大岛屿的能力被考虑在内。在第一阶段,通过将问题视为被粒子群优化(PSO)解决的树背包问题(TKP)的优化问题来放松问题。在第二阶段,计算电流并验证约束,然后将采取调整测量。所提出的方法在IEEE 69总线测试系统上进行,具有6 dgs,并将结果与​​其他方法进行比较。此外,对于实时验证,所获得的结果由DigSilent / Power Factory软件包进行模拟。仿真结果表明,所提出的算法是有意孤岛过程的有效方法。

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