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基于改进多目标均衡优化算法的含碳交易配电网有功-无功功率最优调度
Optimal Active-Reactive Power Dispatch for Distribution Network With Carbon Trading Based on Improved Multi-Objective Equilibrium Optimizer Algorithm
| 作者 | Furong Tu · Sumei Zheng · Kuncan Chen |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 有源无功优化调度 低碳调度模型 动态无功优化策略 改进多目标均衡优化器算法 分布式网络 |
语言:
中文摘要
针对高比例可再生能源接入下配电网有功-无功功率协同调度(OARPD)问题的复杂性,本文提出一种融合分层碳排放交易(CET)机制的低碳调度模型,以最小化运行成本和电压偏差。为应对调度周期内离散设备动作次数约束,引入基于分时运行成本的动态无功优化策略。进一步设计改进的多目标均衡优化器(IMOEO)算法求解该问题,通过Sobol序列初始化、动态调节因子及基于拥挤距离的差异化进化策略,提升种群多样性与全局搜索能力。在改进IEEE-33节点系统上的仿真结果表明,该算法能获得更优的非支配Pareto前沿,有效解决含可再生能源的OARPD问题并提供高质量解。
English Abstract
In distribution networks with a high proportion of renewable energy, the optimal active-reactive power dispatch problem (OARPD) is increasingly complex due to the volatility and randomness of wind and solar output, as well as variations in grid load. This paper proposes a new low-carbon scheduling model that incorporates a tiered carbon emission trading (CET) mechanism, minimizes operating costs, and reduces voltage deviations. Additionally, to address constraints on the number of discrete device actions within the scheduling period, a dynamic reactive power optimization strategy based on tiered operating costs is introduced. Then proposed an improved multi-objective equilibrium optimizer (IMOEO) algorithm for solving the OARPD problem with renewable generators. The IMOEO algorithm incorporates a Sobol sequence initialization method, dynamic adjustment factors, and particles that employ various evolutionary strategies based on the crowding distance. These elements are integrated to enhance population diversity and improve global exploration capabilities. Subsequently, the algorithm is applied to an modified IEEE-33 distribution network, followed by a thorough statistical analysis of the results. The findings indicate that IMOEO outperforms other methods in achieving a superior non-dominated Pareto front, effectively addresses the OARPD problem with renewable energy, and delivers high-quality solutions.
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SunView 深度解读
该有功-无功协同调度技术对阳光电源PowerTitan储能系统和SG系列逆变器具有重要应用价值。研究提出的分层碳交易机制可集成至iSolarCloud平台,实现源网荷储协同优化;动态无功优化策略可直接应用于ST储能变流器的四象限功率控制,减少离散设备动作次数,延长继电器寿命;改进的多目标优化算法可优化光储系统在配电网中的有功无功协调控制,提升电压质量的同时降低碳排放成本。该技术为阳光电源开发面向双碳目标的智能调度算法提供理论支撑,可增强ESS集成方案在高比例新能源场景下的经济性和电网友好性。