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基于多区域多阶段的自愈式配电网规划与运行
Multi-Area-Multi-Stage Based Self-Healing Distribution Network Planning and Operation
| 作者 | Yifan Deng · Wei Jiang · Junjun Xu · Ke Sun · Jialin Yu · Chun Li |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2024年12月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 配电网 主动孤岛技术 自愈 多区域多阶段 恢复区域规划运行协同 |
语言:
中文摘要
地震、洪水或战争等极端事件可能导致配电网严重故障和大规模停电。主动孤岛技术可利用分布式资源、智能配电设备及先进控制方法实现多区域自愈。自愈设施包括继电器、开关、分布式电源及基于电力电子的柔性开断点(SOP),其效果不仅取决于设备位置与功能,还需协同考虑多阶段恢复过程的强耦合性。本文首次提出计及恢复时序的多区域多阶段(MAMS)自愈恢复区规划-运行协同方法,定义了灵活恢复区的多个自愈阶段,建立了时变拓扑与运行约束以表征阶段间耦合关系,并采用混合可控负荷部署策略弥补资源容量限制。算例验证了所提模型的有效性。
English Abstract
Extreme events such as earthquakes, floods, or wars could cause severe grid faults and large-scale outages in the distribution network. The active islanding technology can be used for self-healing of multiple outage areas with distributed resources, smart distribution facilities, and advanced controlling methods. The facilities related to the self-healing consist of relays, switches, distributed resources, and power electronics based soft open points (SOPs). However, the self-healing effect depends on not only the location, capability, and function of these facilities, but also the recovery process should be comprehensively considered and coordinated since the multi-stage recovery strategies are deeply coupled. These recovery stages usually consist of the relaying process, grid partition with smart switches (SSWs), resupply by distributed resources, and interconnection with SOPs. For the first time, this paper proposes a multi-area-multi-stage (MAMS) self-healing recovery area (RA) planning-operation collaborative approach considering the recovery sequence. First, the multiple self-healing stages of flexible RAs are defined and introduced. Second, the time-variant topological and operational constraints are proposed to represent the coupling relationships at different stages. Finally, the hybrid controllable load deployment strategy is used to compensate for the limited resource capacity in RA restoration. The effectiveness of the proposed collaborative model is verified by illustrative case studies.
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SunView 深度解读
该多区域多阶段自愈配电网技术对阳光电源PowerTitan储能系统和SOP柔性开断设备具有重要应用价值。研究提出的时变拓扑与多阶段恢复策略可直接应用于ST系列储能变流器的孤岛运行控制,通过构网型GFM控制实现极端事件下的主动孤岛支撑。多区域协同恢复方法为iSolarCloud平台的智能调度算法提供理论支撑,优化分布式光伏-储能系统的黑启动序列。混合可控负荷策略可集成至ESS能量管理系统,提升储能系统在应急场景下的负荷恢复能力,增强电网韧性服务的商业价值。