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储能系统技术 储能系统 调峰调频 ★ 5.0

水力发电系统中的一次调频性能:宽范围运行下的精确量化与整体提升

Primary frequency regulation performance in hydropower systems: Precise quantification and holistic enhancement under wide-range operation

作者 Xueding Lu · Chaoshun Li · Hao Chang · He Wang · Zhiwei Zhu · Dong Liu · Xiaoqiang Tan · Rongli Xu
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 389 卷
技术分类 储能系统技术
技术标签 储能系统 调峰调频
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A refined and flexible simulation platform of HTRS is established and verified.
语言:

中文摘要

摘要 随着大量水电机组转向宽范围运行(WRO,即水头变化超过额定水头的7%,功率调节范围超过额定功率的50%),导致其在电网一次调频(PFR)考核中不达标的风险显著增加。为实现PFR性能的精确量化与整体提升,本文首先构建了一个具备模块化子系统切换功能的灵活水轮机调节系统(HTRS)仿真平台,以支持多种工况模拟与对比研究。其次,引入Prony辨识方法确定复杂非线性HTRS的稳定运行范围,相较于传统方法可节省90%以上的计算时间,且精度更高。在此基础上,分析了运行工况及主要非线性因素对系统稳定性的影响。最后,设计了用于评估PFR性能的调节上升时间、稳定时间和综合电量各向同性性能指标,以定量评价宽范围运行条件下的调节品质和考核状态,并进一步实现了控制参数的综合优化。结果表明,在低水头工况下机组发生PFR考核不达标的概率更高,其主要原因为调节速度下降。经过优化后,机组在所有运行工况下均能顺利通过PFR考核,三项性能指标在宽范围运行条件下分别平均提升了12.1%、78.9%和87.8%。本研究为分析和优化水电机组在宽范围运行条件下的调节性能提供了可靠的工具和必要的指导。

English Abstract

Abstract Numerous hydropower units are shifting to wide-range operation (WRO, head variation is over 7 % of the rated head, and power adjustment range is more than 50 % of the rated power.), which increases the risk of failing the primary frequency regulation (PFR) assessments from the power grid. To precisely quantify and holistically enhance the PFR performance. Firstly, a flexible hydro-turbine regulation system (HTRS) simulation platform with modular subsystem switching is established to facilitate various operating conditions and comparative studies. Secondly, Prony identification is introduced to determine the stable range of the complex nonlinear HTRS, which saves more than 90 % calculation time and is more accurate compared to traditional methods. On this basis, the influence of operating conditions and major nonlinear factors on the system stability are analyzed. Finally, the regulation rise time, stable time, and integrated electricity isotropic performance indexes for PFR are designed to quantitatively evaluate the regulating quality and assessment status under WRO, with further integrated optimization of control parameters. Results indicate that the risk of units failing PFR assessments is higher during low-head operation, with the main cause being a decrease in regulation speed. Following optimization, units successfully pass the PFR assessment in all operating conditions, with the three performance indexes improved by an average of 12.1 %, 78.9 %, and 87.8 % under WRO, respectively. This study offers a reliable tool and essential guidance for analyzing and optimizing the regulation performance of hydropower units under WRO.
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SunView 深度解读

该水电一次调频优化技术对阳光电源储能调频系统具有重要借鉴价值。研究中的Prony辨识法可应用于ST系列PCS的宽工况稳定域快速评估,节省90%计算时间;提出的调节上升时间、稳定时间及综合电量等性能指标体系,可直接移植到PowerTitan储能系统的调频性能量化评估中;针对低负荷工况的参数优化策略,对GFM/VSG控制算法在电网弱支撑场景下的自适应参数整定具有指导意义,可提升储能电站全工况调频达标率,优化AGC响应速度与精度。