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考虑配电网影响的新型母线指标实时电压稳定性评估
Real-Time Voltage Stability Assessment With a Novel Bus Index Considering Impact of Connection to Distribution Networks
| 作者 | Sasan Azad · Mohammad Taghi Ameli · Mohammad Mehdi Amiri · Hossein Ameli · Mohammad Reza Shadi · Goran Strbac |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 电力系统 电压稳定性评估 实时指标 配电网建模 指标性能 |
语言:
中文摘要
实际电力系统常运行在电压稳定极限附近,在线评估至关重要。现有指标基于双母线单线路系统,推广到多母线多线路系统缺乏严谨性。现有电压对有功功率灵敏度指标分别考虑各线路影响,未能整体考虑所有线路组合。本文提出新型实时电压稳定评估指标,通过输配电联合建模研究配电系统对电压稳定的影响。在IEEE 118节点系统中,本文指标最大误差3.37%,而现有P指标和L指标误差分别为29.6%和30.75%。配电系统建模使最大有功负荷能力分别降低35.21%和59.27%。
English Abstract
Many real-world power systems operate near voltage stability limits due to rising power demands, limited generation sources, and delays in development projects. Therefore, conducting online voltage stability assessments of power systems is crucial to ensure stable system operation. Various indices have been proposed in recent years to assess voltage stability in this context. One of the main challenges of these indexes for implementation in real-world power systems is their formulation with two-bus and single-line systems and their generalization to multi-bus and multi-line systems, which makes them non-rigorous. In formulating the existing indexes that use the concept of voltage sensitivity to active power, the effect of the lines from which the bus receives active power can be seen separately in evaluating bus voltage stability. At the same time, for accurate evaluation, the set of lines and the received power of all lines should be considered together in formulating the index. To meet this challenge, a new real-time index for voltage stability assessment is introduced in this paper. Furthermore, the effect of distribution systems in voltage stability is investigated in this study using simultaneous modeling transmission and distribution systems. The test results of the proposed index on the power system of the 3-bus system and the IEEE 14, 30, and 118 bus systems show its superior performance compared to the existing index. Specifically, to increase the apparent power loading in the 118-bus system, the maximum error of the proposed index is 3.37%. Meanwhile, for index P and index L, the maximum error is 29.6% and 30.75%, respectively. Finally, the results show that modeling the distribution system in the 3 and 118 bus systems reduces the maximum active power loading by 35.21% and 59.27%, respectively.
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SunView 深度解读
该电压稳定评估技术对阳光电源储能和光伏系统的电网支撑功能优化有重要参考价值。阳光PowerTitan储能系统可根据该指标实时调整无功出力,提供动态电压支撑。阳光SG系列光伏逆变器支持无功调节和电压控制功能,结合该评估算法可实现更精准的电网电压管理。该技术可集成到阳光iSolarCloud平台,实现多站点协同的区域电压稳定性优化控制。