考虑阀点效应和储能利用的鲸鱼优化算法动态最优潮流

K. Widarsono, A. Soeprijanto, R. S. Wibowo
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引用次数: 1

摘要

针对考虑储能(ES)的阀点效应(VPE)的动态最优潮流(D-OPF)问题,提出了鲸鱼优化算法(WOA)。D-OPF是一种考虑发电机斜坡率的OPF,因为D-OPF在24小时内在线执行发电机优化过程。带VPE的D-OPF使发电成本函数非线性、非光滑。随着系统中储能的存在,本文问题的复杂性也随之增加。为了解决这一问题,本文提出了WOA方法。WOA是一种元启发式方法,主要分为探索和开发两个阶段。这种开发和探索使WOA从局部最优转移到全局最优。此外,本文还重点介绍了直接进行的D-OPF仿真模型(24小时运行直接进行1次仿真,而不是每小时单独进行一次仿真)。这是为了确保在运行第一个小时和运行第二个小时之间存在耦合,等等。1天内电池充电(充放电)次数等于0(零)。这是为了保证电池有足够的能量供下一段时间的运行。WOA算法在ieee9、ieee14两个系统中进行了有效性测试,并与其他算法进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Optimal Power Flow Considering Valve Point Effect And Energy Storage Utilization Using Whale Optimization Algorithm
This paper proposes the Whale optimization Algorithm (WOA) to solve Dynamic Optimal Power Flow (D-OPF) problems with Valve Point Effect (VPE) considering of Energy Storage (ES). D-OPF is an OPF that considers the ramp rate of the generator, because D-OPF performs the generator optimization process online within 24 hours of operation. D-OPF with VPE causes the generation cost function to be non-linear and non-smooth. The complexity of the problems in the paper is increasing with the presence of energy storage in the system. To solve the problems in this paper, the WOA method is proposed. WOA is a metaheuristic method that has 2 main phases, exploration and exploitation. This exploitation and exploration allows WOA to move from the local optimal to the global optimal. In addition, this paper highlights the D-OPF simulation model which is carried out directly (24 hours of operation is carried out in 1 simulation directly, not every hour separately). This is intended to ensure that there is coupling between operating first hours to operating second hours and so on. And the amount of battery charge (charging discharging) in 1 day is equal to 0 (zero). This is to ensure that there is sufficient energy in the battery for the next period of operation. The effectiveness of WOA in this problem was tested in 2 problems, namely the IEEE 9, 14 systems and validated with other algorithm.
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