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电池储能系统高功率运行的调度方法及其在混合水电站中的应用
Scheduling power-intensive operations of Battery Energy Storage Systems and application to hybrid hydropower plants
| 作者 | Stefano Cassan · Fabrizio Sossa |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 386 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 储能变流器PCS |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Formulation of novel SOC-dependant power constraints for BESS schedulers. |
语言:
中文摘要
摘要 本文提出了一种针对电池储能系统(Battery Energy Storage Systems, BESSs)的新型功率约束集,称为动态功率约束(Dynamic Power Constraints, DPCs),该约束考虑了BESS的电压和电流限制随其荷电状态(State of Charge, SOC)的变化关系。这些约束被设计用于集成到基于优化的BESS调度问题中,相较于传统的静态约束具有显著改进。研究表明,在实际运行中通常满足的温和假设条件下,DPCs可以表示为BESS功率的线性函数,从而可以在不改变现有调度问题可解性特征(即凸性)的前提下实现对原有模型的升级。DPCs将电压和电流约束统一纳入一个框架之中,填补了BESS调度器中使用的简化模型与实时控制器及电池管理系统(Battery Management Systems, BMSs)中更先进模型之间的差距。通过更准确地表征BESS的功率能力,所提出的约束使调度器能够做出更加可靠且可行的决策,尤其是在BESS接近额定功率运行的高功率应用场景下。为了验证DPCs的有效性,本文采用包含230 MW水电站(Hydropower Plant, HPP)和750 kVA/500 kWh BESS的混合系统进行了基于仿真的性能评估。与当前最先进的方法(如静态功率约束以及未包含电压约束的DPC模型)相比,所提方法在实时运行过程中使BESS约束违反情况减少了93%。
English Abstract
Abstract This paper proposes a novel set of power constraints for Battery Energy Storage Systems (BESSs), referred to as Dynamic Power Constraints (DPCs), that account for the voltage and current limits of the BESS as a function of its State of Charge (SOC). These constraints are formulated for integration into optimization-based BESS scheduling problems, providing a significant improvement over traditional static constraints. It is shown that, under mild assumptions typically verified during practical operations, DPCs can be expressed as a linear function of the BESS power, thus making it possible to retrofit existing scheduling problems without altering their tractability property (i.e., convexity). The DCPs unify voltage and current constraints into a single framework, filling a gap between simplified models used in BESS schedulers and more advanced models in real-time controllers and Battery Management Systems (BMSs). By improving the representation of the BESS’s power capability, the proposed constraints enable schedulers to make more reliable and feasible decision, especially in power-intensive applications where the BESS operates near its rated power. To demonstrate the effectiveness of the DPCs, a simulation-based performance evaluation is conducted using a hybrid system comprising a 230 MW Hydropower Plant (HPP) and a 750 kVA/500 kWh BESS. Compared to state-of-the-art formulations such as static power constraints and DPC formulations without voltage constraints the proposed method reduces BESS constraint violations by 93% during real-time operations.
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SunView 深度解读
该动态功率约束技术对阳光电源ST系列储能变流器及PowerTitan系统具有重要应用价值。通过将电池SOC与电压电流限制关联建立线性约束模型,可显著提升储能调度精度,减少93%的实时运行约束违规。该方法可集成至iSolarCloud平台的优化调度算法,增强BMS与PCS协同控制能力,特别适用于水储混合等大功率应用场景。建议在ST系列产品的功率管理策略中引入该动态约束框架,提升额定功率附近运行的可靠性与经济性。