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电动汽车驱动
★ 5.0
基于可行运行区域的含软开断点配电网约束管理
Feasible Operation Region-Based Constraint Management of Distribution Networks With Soft Open Points
| 作者 | Xun Jiang · Yue Zhou · Jianzhong Wu · Wenlong Ming |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年1月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 软开放点 配电网 可行运行区域 最优控制 约束管理 |
语言:
中文摘要
软开关点(SOPs)是安装在配电网正常断点处的电力电子装置。凭借毫秒级的控制能力,SOPs 在应对可再生能源发电和用户行为(如电动汽车出行行为)带来的显著不确定性时,在配电网的约束管理方面具有广阔的应用前景。本文提出了一种基于可行运行区域(FOR)的新型 SOP 优化控制方法。FOR 表示配电网节点功率注入的允许范围,可用于替代传统基于最优潮流(OPF)模型中的潮流方程和网络约束。由于 FOR 边界与热/电压约束之间存在一一对应关系,基于 FOR 的约束管理方法能够适应各种测量条件。此外,FOR 约束可以转换为基于线路潮流和节点电压的形式,从而可以使用这些运行参数的实时测量值,而无需依赖通常无法在线获取的节点功率负荷/发电测量值。所提出的方法在 IEEE 33 节点配电网和 IEEE 123 节点配电网中得到了验证。同时,还将该方法的性能与传统基于 OPF 的控制方法进行了比较。
English Abstract
Soft open points (SOPs) are power electronic devices placed at normally open points of electricity distribution networks. With millisecond-level control, SOPs are promising in constraint management of distribution networks facing the significant uncertainties from renewable power generation and customer behaviors (such as electric vehicle travelling behaviors). This paper develops a novel feasible operation region (FOR)-based method for optimal SOP control. The FOR, denoted as the allowable range of nodal power injections of distribution networks, can be used to replace the power flow equations and network constraints in a conventional optimal power flow (OPF)-based model. Due to the one-to-one correspondence between FOR boundaries and thermal/voltage constraints, FOR-based constraint management method can adapt to various measurement conditions. Moreover, the FOR constraints can be converted into a format based on line flows and node voltages, allowing for the use of real-time measurements of these operating parameters rather than the measurements of nodal power load/generation that are normally not accessible online. The proposed method is validated on the IEEE 33-node distribution network and IEEE 123-node distribution network. The performance of the method is also compared with that of conventional OPF-based control.
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SunView 深度解读
该SOP约束管理技术对阳光电源ST储能系统和PowerTitan大型储能方案具有重要应用价值。SOP的毫秒级有功无功调节能力与储能变流器PCS的快速响应特性高度契合,可行运行区域建模方法可直接应用于储能系统的多约束协调控制,优化电压电流及容量边界管理。该技术可增强ST系列在配电网侧的柔性调节能力,提升电压质量和阻塞管理效果。同时,可行域动态约束策略可融入iSolarCloud平台的智能调度算法,实现储能与光伏逆变器的协同优化,提升新能源接入友好性和系统可靠性,为构建源网荷储一体化解决方案提供技术支撑。