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Particle Swarm Optimization for the Minimization of Power Losses in Distribution Networks

机译:分布网络中功率损耗最小化的粒子群优化

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This research utilizes particle swarm optimization (PSO) to minimize the total active power losses in an IEEE 6-bus transmission system. The complexity of the problem lies in integrating Newton-Raphson load flow algorithm, which is used in computing power losses, with PSO algorithm, which is used to minimize these losses. The considered PSO control variables are: the reactive power output of generators, the tap ratios of transformers, and the reactive power output of shunt compensators. PSO was chosen as optimization method due to its popularity as a successful algorithm in solving non-smooth global optimization problems. The proposed PSO algorithm gave very satisfactory simulation results. Power losses were reduced by 13.9% for an initial set of PSO parameters. These parameters were thereafter varied in order to improve PSO performance by further minimizing the power losses. Effectively, we were able to obtain a set of parameters that resulted in a 19.31% reduction in power losses. These successful simulation results confirm the effectiveness of PSO in minimizing distribution networks power losses.
机译:该研究利用粒子群优化(PSO)来最小化IEEE 6总线传输系统中的总有效功率损耗。问题的复杂性在于集成了牛顿 - 拉文载流量算法,该算法用于计算功率损耗,PSO算法用于最小化这些损失。所考虑的PSO控制变量是:发电机的无功功率输出,变压器的抽头比和分流补偿器的无功功率输出。由于其受欢迎程度作为解决非平滑全球优化问题的成功算法,因此选择了PSO作为优化方法。所提出的PSO算法给出了非常令人满意的仿真结果。对于初始PSO参数,功率损耗降低了13.9%。此后,通过进一步最小化功率损耗来改变这些参数以改善PSO性能。有效地,我们能够获得一组参数,导致功率损耗减少19.31%。这些成功的仿真结果证实了PSO在最小化分配网络功率损耗方面的有效性。

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