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Power system restoration, reconfiguration and optimization using Field Programmable Gate Array

机译:使用现场可编程门阵列进行电力系统恢复,重新配置和优化

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The aim of our study is the optimization after restoring and reconfigure the faulted area in a distribution network after locating and isolating the faulted block. Restoration involves changing the switch status to maximize the supply to loads that are left unsupplied after fault removal. After system optimization using reconfiguration, Field Programmable Gate Array (FPGA) is used in order to control the switches by generating the pulses for the stable configuration. In the proposed system restoration and reconfiguration process is achieved in 16 bus system and simultaneously load flow analysis is performed before and after the fault and the same is verified in MATLAB. Optimization using Binary Particle Swarm Optimization (BPSO) is done in order to get the most stable configuration for restoration process by minimizing the LBI (load balancing index).
机译:我们研究的目的是在定位和隔离故障块后恢复和重新配置分发网络中的故障区域之后的优化。恢复涉及更改交换机状态以最大限度地提高对删除故障后留下的负载的电源。在使用重新配置的系统优化之后,使用现场可编程门阵列(FPGA)来通过为稳定配置产生脉冲来控制开关。在所提出的系统恢复和重新配置过程中,在16总线系统中实现,并且在故障之前和之后进行同时进行负载流量分析,并且在MATLAB中验证了相同的情况。使用二进制粒子群优化(BPSO)进行优化,以便通过最小化LBI(负载平衡索引)来获得最稳定的恢复过程配置。

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