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Rescheduling-based congestion management scheme using particle swarm optimization with distributed acceleration constants

机译:基于分布式加速常量的粒子群优化的基于重新安排的拥塞管理方案

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Rescheduling-based congestion management schemes are prominent solutions for secure and reliable power flow under deregulated environment. Since the rescheduling process exhibits multimodal behavior by nature, the role of heuristic methods has become crucial. Despite numerous heuristic search algorithms are reported in the literature to address the challenge, this paper attempts to improve Particle Swarm Optimization (PSO), which is a renowned swarm intelligence-based optimization algorithm. Our improved version of PSO intends to determine adaptive acceleration constants based on the particle position and the evaluation it has undergone till the current iteration. Due to the distributed nature of acceleration constant, this paper calls the proposed PSO as PSO with distributed acceleration constant (PSODAC). PSODAC attempts to solve the rescheduling problem in a hybrid electricity market so that congestion is aimed to minimize at best rescheduling cost. An experimental investigation is carried out in IEEE14 bus system under single point as well as multipoint congestion scenarios. Subsequently, the dynamics of the particles are also investigated. The experimental results show that PSODAC is better than PSO in terms of cost-effective congestion mitigation as well as exhibiting high particle dynamics.
机译:基于Rescheduling的拥塞管理方案是解除管制环境下安全可靠的功率流的突出解决方案。由于重新安排过程本质上表现出多峰行为,因此启发式方法的作用变得至关重要。尽管文献中报告了许多启发式搜索算法来解决挑战,但本文试图改善粒子群优化(PSO),这是一种着名的基于群体智能的优化算法。我们改进的PSO版本打算根据粒子位置确定自适应加速常数,并在电流迭代到期后进行评估。由于加速度的分布性,本文称为具有分布式加速度常数(PSODAC)的PSO所提出的PSO。 Psodac试图解决混合电力市场中的重新安排问题,以便拥塞旨在以最佳的重新安排成本最大限度地减少。在单点的IEEE14总线系统中在IEEE14总线系统中进行了实验研究,以及多点拥塞方案。随后,还研究了颗粒的动态。实验结果表明,根据经济高效的拥塞缓解,Psodac优于PSO,以及展示高粒子动态。

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