光伏储能供电系统的共享储能方案

Qiying Li, Yumeng Xie, Lei Yang, Kun Yang, Dongsheng Xu, Dongwei Qiao, Shuyuan Wang
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引用次数: 0

摘要

虽然光伏-电池混合并网被认为是提高瞬态稳定性的有效方法,但储能系统高昂的运营和维护成本限制了其在各种运行场景下的可靠性。为了克服这一挑战,本文以光伏-电池子系统在配电网供电场景中的应用为例,对光伏系统在故障条件下的暂态稳定性进行了深入分析。在系统需求无法得到充分满足的情况下,本研究提出了一种基于共享储能的解决方案,以在保持经济可行性的同时增强系统的可支持性。通过合理分配和共享储能容量,系统可以更好地应对突发负载波动和故障情况,确保稳定供电。仿真结果表明,所提出的共享储能解决方案可显著增强光伏系统在故障条件下的瞬态稳定性,有效缓解光伏并网带来的不稳定影响。此外,从经济角度来看,该解决方案还能降低储能运行和维护成本,增强系统的整体可持续性。总之,本研究为光伏系统在配电网中的应用提出了一个可行且有效的支持解决方案,为提高清洁能源的可靠性和可持续性提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shared Energy Storage Scheme for Photovoltaic Energy Storage Power Supply System
While PV-battery hybrid grid integration has been recognized as an effective approach to enhance transient stability, the high operational and maintenance costs of energy storage systems constrain their reliability across various operating scenarios. To overcome this challenge, this paper takes the application of PV-battery subsystems in a distribution grid supply scenario as an example and conducts an in-depth analysis of the transient stability of PV systems during fault conditions. In cases where system demands are not adequately met, this research proposes a solution based on shared energy storage to enhance system supportability while maintaining economic feasibility. By appropriately allocating and sharing energy storage capacity, the system can better respond to sudden load fluctuations and fault conditions, ensuring a stable power supply. Simulation results demonstrate that the proposed shared energy storage solution significantly enhances the transient stability of PV systems during fault conditions, effectively mitigating the destabilizing effects of PV grid integration. Furthermore, from an economic perspective, this solution can reduce energy storage operation and maintenance costs, enhancing overall system sustainability. In conclusion, this study presents a feasible and effective support solution for the application of PV systems in distribution grids, providing valuable insights to advance the reliability and sustainability of clean energy sources.
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