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功率器件技术 GaN器件 ★ 5.0

面向不平衡AC-DC混合配电系统的动态区域化方法及其对分布式电源不确定性的分布鲁棒保障

Dynamic Regionalization for Unbalanced AC-DC Hybrid Distribution Systems With a Distributionally Robust Guarantee Against DG Uncertainty

作者 Qianhao Sun · Yao Zhang · Yidan Zhou · Jiale Wang · Yingjie Zhao · Jianxue Wang
期刊 IEEE Transactions on Power Systems
出版日期 2024年7月
技术分类 功率器件技术
技术标签 GaN器件
相关度评分 ★★★★★ 5.0 / 5.0
关键词 交直流混合配电网 动态分区策略 Wasserstein分布鲁棒优化 软开关点 分布式电源不确定性
语言:

中文摘要

如今,在现代电力电子与信息通信技术的推动下,去中心化组织已成为交直流混合配电系统(DS)的新兴特征。这促使配电系统摒弃集中供电模式,转而将其划分为若干个自足的子网进行运行。本文提出了一种两阶段Wasserstein分布鲁棒优化(WDRO)框架,旨在为不平衡交直流混合配电系统提供动态分区策略。首先,提出了一种基于半定规划的三相动态分区策略,以确定子网的动态内部边界。并且,该分区策略通过利用软开关和相开关装置这两种新兴技术得以实现。然后,考虑到分布式电源的不确定性,建立了WDRO模型,以确保每个子网的自足运行。在改进的IEEE 33节点和141节点交直流配电系统上进行的案例研究验证了所提方法在提供灵活分区、降低功率损耗、减轻不平衡以及保障收敛可靠性方面的有效性。

English Abstract

Nowadays, decentralized organization has become the emerging characteristic for AC-DC hybrid distribution systems (DS) facilitated by modern power electronic and information & communication techniques. This urges the DS to drop the centralized power supplying mode. In substitution, the DS is divided and operated as several self-adequacy subnetworks. In this paper, a two-stage Wasserstein distributionally robust optimization (WDRO) framework is proposed to provide a dynamic regionalization strategy for unbalanced AC-DC hybrid DSs. First, a semi-definite programing-based three-phase dynamic regionalization strategy is proposed to determine dynamic inner boundaries of subnetwork. And, the regionalization strategy is realized through utilizing two emerging techniques, i.e., soft open points and phase switch devices. Then, considering the uncertainty of distributed generation, the WDRO model is developed to ensure self-adequacy operation of each subnetwork. Case studies on modified IEEE 33-bus and 141-bus AC-DC DSs verify the effectiveness of our proposed method for offering flexible regionalization, power loss reduction, imbalance mitigation and convergence reliability.
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SunView 深度解读

该研究提出的分布鲁棒动态区域化方法对阳光电源的AC-DC混合系统产品具有重要参考价值。特别适用于ST系列储能变流器和PowerTitan大型储能系统的多机并联控制,可提升系统在DG不确定性下的运行稳定性。通过Wasserstein距离建模的分布鲁棒优化方法,可优化SG系列光伏逆变器的MPPT控制策略,提高光储混合系统的经济性。该技术还可应用于iSolarCloud平台的智能调度算法,实现区域化电力电子设备的协调控制,对提升阳光电源产品在大规模新能源接入场景下的竞争力具有积极意义。