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高渗透率分布式能源资源下配电馈线电压管理的电压-功率因数控制模式
Volt-PF Control Mode for Distribution Feeder Voltage Management Under High Penetration of Distributed Energy Resources
| 作者 | Madhura Sondharangalla · Dan Moldovan · Raja Ayyanar |
| 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 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电压-功率因数控制 电压-无功功率控制 分布式能源资源 无功支持分配 功率因数 |
语言:
中文摘要
引入电压-功率因数控制并与流行的电压-无功功率控制比较用于馈线电压管理。Volt-VAr控制固有局限是分布式能源资源需要的无功功率仅是端电压函数而非分布式能源资源有功功率函数,导致无功支持负担在分布式能源资源间不公平分配,即产生较低有功功率因而对过电压贡献较少的分布式能源资源可能被要求提供超过其份额的无功支持,工作在很低功率因数。所提电压-功率因数方案中无功支持本质上是电压和分布式能源资源有功功率的函数,确保无功支持负担公平分配并确保所有分布式能源资源工作在高功率因数。通过超高渗透率分布式能源资源的实际大型8000+节点馈线的大量静态和动态仿真验证所提方案性能,描述新商业硬件逆变器中所提方案的实施。
English Abstract
Voltage-power factor (Volt-PF) control is introduced and compared with the popular voltage-reactive power (Volt-VAr) control for feeder voltage management. An inherent limitation of the Volt-VAr control is that the reactive power (Q) demanded from the distributed energy resources (DERs) is only a function of the terminal voltage and not the DER active power (P). This leads to an unfair allocation of the burden of Q support among the DERs, in the sense that those DERs generating lower P, and hence contributing less to overvoltage issues, may be required to provide more than their share of Q support, and operate at a very low power factor (PF). The proposed volt-PF scheme, where the Q support is inherently a function of both the voltage and P of the DERs, ensures fair allocation of the Q support burden and ensures that all the DERs operate at a high PF (0.9 to 1) The performance of the proposed scheme is validated through extensive static and dynamic simulations on a real, large (8000+ nodes) feeder with very high penetration (>200%) of DERs. The implementation of the proposed scheme in new and existing commercial hardware inverters is described.
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SunView 深度解读
该Volt-PF控制策略对阳光电源分布式光伏并网控制具有重要参考价值。阳光SG逆变器在高渗透率光伏电站需要优化无功功率支持策略,该功率因数控制方法可实现更公平的无功分配。阳光可将该算法集成到逆变器并网控制中,根据实际发电功率动态调整无功输出,提升电网电压支撑能力,降低设备无功损耗,延长逆变器寿命,提升电站经济性。