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储能系统技术 储能系统 可靠性分析 ★ 5.0

光伏与储能联合发电对容量充裕性的贡献

Contribution of PV Generation With Embedded Battery Storage to Capacity Adequacy

作者 Pantelis A. Dratsas · Georgios N. Psarros · Stavros A. Papathanassiou
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年11月
技术分类 储能系统技术
技术标签 储能系统 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 光伏储能电站 实时再调度 资源充足性评估 容量价值 蒙特卡罗模型
语言:

中文摘要

本文提出一种实时再调度方法,将光伏-储能电站纳入资源充裕性评估(RAA)研究。该方法兼顾资产的市场运行特性及其在可靠性事件中的响应能力,克服了现有方法仅单维度考虑充裕性贡献或完全忽略该能力的局限。电站初始按市场收益最大化出力,在可靠性事件发生时则调整运行以满足系统需求。该方法通过确定性再调度机制高效嵌入蒙特卡洛RAA模型,并结合序位法计算市场收益,可精确评估不同配置及逆变器负载比下的容量价值(CV)。结果表明,储能容量对CV至关重要,而逆变器容量变化影响较小;且光伏-储能紧密耦合系统中,电池仅由光伏充电时的CV通常低于无充电约束的独立储能。

English Abstract

This paper proposes a real-time redispatch method for including PV-plus-battery plants in resource adequacy assessment (RAA) studies. The method offers the possibility to represent the market operation of the assets, while at the same time considering their response to reliability events, unlike existing methods in the literature that manage such assets in a single-dimensional manner, driven solely by adequacy contribution considerations or entirely ignoring this capability. In the proposed method, while the plant is initially dispatched in a market-oriented manner, i.e., with the objective of maximizing market revenues, its actual operation is adapted to meet system needs when reliability events take place. The method is incorporated into a Monte Carlo (MC) based RAA model in a computationally efficient manner, relying on a deterministic implementation of redispatching that does not impact significantly the computational burden of the RAA model, thus enabling the execution of multiple MC samples to achieve a high stochastic process accuracy. A merit order algorithm is also embedded into the RAA model to evaluate the PV-plus-battery market revenues. The model developed allows a refined calculation of the capacity value (CV) of such assets for different plant configurations and inverter loading ratios, while the upper and lower CV bounds are approximated via application of the adequacy- and market-oriented approaches available in the literature. Results show that the embedded storage energy capacity is crucial for the CV afforded by the assets, while any decrease in the inverter capacity does not significantly impact the CV value. Further, the CV of storage embedded in tightly coupled PV-plus-battery plants, where batteries are exclusively charged by the plant's own PV generation, is generally lower than the value of similar stand-alone storages operating without any charging constraints.
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SunView 深度解读

该研究对阳光电源PowerTitan储能系统与SG系列逆变器的联合配置优化具有重要指导意义。文中提出的实时再调度方法可直接应用于ST系列储能变流器的控制策略,使系统在市场收益最大化与电网可靠性支撑间动态平衡。研究揭示的储能容量对容量价值的关键作用,为PowerTitan系统的容量配置提供量化依据;逆变器负载比分析可优化SG逆变器与储能的功率匹配设计。特别是光储紧密耦合场景下的容量价值评估方法,可嵌入iSolarCloud平台,实现光储电站的智能调度与经济性评估,提升阳光电源光储一体化解决方案的市场竞争力和电网友好性。