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储能系统技术 储能系统 ★ 5.0

先进绝热压缩空气储能系统充电单元的机电建模

Electromechanical modeling of advanced adiabatic compressed air energy storage system compressed charging unit: Incorporating compressor dynamical performance under variable operating conditions

作者 Siyuan Chen · Laijun Chen · Sen Cui · Hanchen Liu · Wei Wei · Shengwei Mei
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
相关度评分 ★★★★★ 5.0 / 5.0
关键词 An electromechanical model of the AA-CAES compression system considering nonlinear coupling of compressors is proposed.
语言:

中文摘要

摘要 大容量和对化石燃料的独立性使得先进绝热压缩空气储能(AA-CAES)成为支持波动性可再生能源集成的一项有前景的技术。当前的AA-CAES模型主要关注于规划层面的问题,例如效率提升。AA-CAES系统的机电动态特性是电力系统运行中控制器设计与稳定性分析的基础,但受到的关注较少,原因在于压缩机气动与机械运行之间在毫秒到秒级时间尺度上发生的复杂且非线性的相互作用,使得建模问题极为复杂——既要保持模型的简洁性以利于控制系统设计,又要准确描述复杂的动态行为。本文提出了一种考虑变工况下压缩机动态性能的AA-CAES充电单元的机电暂态模型。基于质量、动量和角动量守恒原理,压缩机的动态特性被描述为一组非线性常微分方程(ODEs),在精度与复杂度之间实现了合理的平衡。该模型参数可通过实际电站的测量数据或文献中的现有模型进行标定。在Matlab/Simulink平台上开发了充电过程的仿真模块。所提出的暂态模型能够捕捉喘振失稳现象,其表现为一个主频率为7 Hz的极限环。该模型还阐明了驱动转矩、进口导叶(IGVs)以及节流阀调节的暂态动态过程。通过考虑机械-气动耦合作用,模型展示了每一项控制动作如何在毫秒至秒的时间尺度上影响所有状态变量。

English Abstract

Abstract The large capacity and independence of fossil fuels make advanced-adiabatic compressed air energy storage (AA-CAES) a promising technology for supporting the integration of volatile renewable energy resources . Current AA-CAES models mainly focus on planning level problems such as efficiency improvement. The electromechanical dynamics of AA-CAES system underpin controller design and stability analysis, which is the foundation of power system operation , but received less attention, because the intricate and nonlinear interactions between the pneumatic and mechanical operations of the compressor, occurring over milliseconds to seconds, make the modeling problem highly complicated to maintain the simplicity to facilitate the design of the control system while describing complex dynamic behavior. This paper proposes an electromechanical transient model of the charging unit of AA-CAES, considering compressor dynamical performance under variable operating conditions. Based on the conservation of mass , momentum and angular momentum , the compressor dynamics are characterized by a nonlinear ordinary differential equations (ODEs), which achieve a proper balance between accuracy and complexity. The model parameters can be calibrated using measured data of real plants or the existing models in the literature. A simulation module for the charging process is developed in the Matlab/Simulink platform. The proposed transient model can capture the surge instability, which is characterized by a limit cycle at a primary frequency of 7 Hz. The model also elucidates the transient dynamics of driving torque, inlet guide vanes (IGVs) and throttle valve adjustments. By accounting for mechanical-pneumatic coupling, it demonstrates how each control action affects all state variables on a millisecond-to-second timescale.
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SunView 深度解读

该AA-CAES电机械瞬态建模技术对阳光电源ST系列储能变流器及PowerTitan系统具有重要参考价值。论文提出的压缩机动态特性建模方法(毫秒至秒级响应)可借鉴于储能系统功率控制策略优化,特别是喘振不稳定性分析(7Hz特征频率)对PCS过载保护设计有启发意义。其机械-气动耦合建模思路可应用于GFM/VSG控制算法改进,提升大容量储能系统在新能源并网场景下的暂态稳定性。建议将非线性ODE建模方法融入iSolarCloud平台预测性维护模块,增强储能系统动态响应仿真能力。