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通过零碳电网推进工业可持续性与经济性
Advancing Industrial Sustainability and Economics Through a Net-Zero Grid
| 作者 | Abdullahi Bamigbade · Francisco de León |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2025年3月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 下垂控制 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 零碳电网 分布式能源资源 有源电力滤波器 功率因数 下垂控制器 |
语言:
中文摘要
本文提出一种面向工业可持续发展的零碳电网设计框架,针对低功率因数和高电流谐波畸变的工业负荷挑战,集成光伏与电池储能作为分布式能源。通过模块化有源滤波器仅抑制负荷谐波电流,减小装置容量以提升经济性;分布式能源利用负荷电流调节功率注入或吸收,优化峰谷电价下的运行效益。结合有功与无功电流下垂控制,实现主网故障时的频率与电压支撑。详述各子系统及参考电流生成算法,验证了系统在电能质量、并网合规性及电网支撑功能方面的有效性。
English Abstract
This article presents a design framework for a net-zero grid aimed at promoting industrial sustainability, specifically addressing challenges posed by industrial loads characterized by low power factor (PF) and high current total harmonic distortion (THD). The net-zero grid integrates photovoltaic (PV) and battery energy storage (BES) as a distributed energy resource (DER), interfaced with industrial loads and the main grid. To enhance the economic viability of the net-zero grid, modular active power filter (APF) design is carried out to mitigate only the load's harmonic current, resulting in a reduced APF size. In turn, the DER regulates the net-zero grid's PF by leveraging the load current to adjust its power injection or absorption to maximize DER economics during peak and off-peak grid demand periods. Furthermore, active and reactive current droop controllers are integrated into the DER controller to provide frequency and voltage support during grid contingencies. Detailed implementations of PV, BES, APF, DER and droop controllers are provided, accompanied by a comprehensive description of the DER reference current generation algorithm. This algorithm helps achieve the objectives mentioned above by enabling seamless coordination among the various subsystems in the net-zero grid. Various test cases are presented to showcase both the high power quality and adherence to grid code requirements in the net-zero grid, as well as the grid support functionalities provided by the DER during frequency and voltage events in the main grid.
S
SunView 深度解读
该零碳电网框架对阳光电源ST储能系统与SG工商业光伏逆变器深度融合具有重要价值。文中模块化有源滤波器设计可直接应用于ST系列储能变流器,通过选择性谐波抑制降低装置容量成本;基于负荷电流的功率调节策略可优化PowerTitan系统在峰谷电价下的充放电经济性;有功无功下垂控制算法可增强SG逆变器的电网支撑能力,提升构网型GFM控制性能。该方案针对工业负荷低功率因数与高谐波畸变的综合治理思路,为阳光电源开发集成光储与电能质量治理的一体化工商业解决方案提供技术路径,可显著提升iSolarCloud平台的智能优化调度能力。